Decreto di indizione - elezioni suppletive 2024-28

Array ( [field_titolo_frontend_all] => Array ( [#theme] => field [#weight] => -4 [#title] => Titolo frontend [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_titolo_frontend_all [#field_type] => text_long [#field_translatable] => 0 [#entity_type] => node [#bundle] => allegato [#object] => stdClass Object ( [vid] => 515608 [uid] => 29556 [title] => Decreto di indizione - elezioni suppletive 2024-28 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126914 [type] => allegato [language] => it [created] => 1768482724 [changed] => 1768482724 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768482724 [revision_uid] => 29556 [taxonomy_vocabulary_2] => Array ( ) [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_titolo_frontend_all] => Array ( [und] => Array ( [0] => Array ( [value] => Decreto di indizione [format] => [safe_value] => Decreto di indizione ) ) ) [field_allegato_file] => Array ( [und] => Array ( [0] => Array ( [fid] => 145395 [uid] => 29556 [filename] => DR indizione suppletive aree scientifiche.pdf [uri] => public://2026/DR indizione suppletive aree scientifiche.pdf [filemime] => application/pdf [filesize] => 210932 [status] => 1 [timestamp] => 1768482720 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [name] => jessica.russo [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515608 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => Decreto di indizione [format] => [safe_value] => Decreto di indizione ) ) [#formatter] => text_default [0] => Array ( [#markup] => Decreto di indizione ) ) [field_allegato_file] => Array ( [#theme] => field [#weight] => -3 [#title] => File [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_allegato_file [#field_type] => file [#field_translatable] => 0 [#entity_type] => node [#bundle] => allegato [#object] => stdClass Object ( [vid] => 515608 [uid] => 29556 [title] => Decreto di indizione - elezioni suppletive 2024-28 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126914 [type] => allegato [language] => it [created] => 1768482724 [changed] => 1768482724 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768482724 [revision_uid] => 29556 [taxonomy_vocabulary_2] => Array ( ) [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_titolo_frontend_all] => Array ( [und] => Array ( [0] => Array ( [value] => Decreto di indizione [format] => [safe_value] => Decreto di indizione ) ) ) [field_allegato_file] => Array ( [und] => Array ( [0] => Array ( [fid] => 145395 [uid] => 29556 [filename] => DR indizione suppletive aree scientifiche.pdf [uri] => public://2026/DR indizione suppletive aree scientifiche.pdf [filemime] => application/pdf [filesize] => 210932 [status] => 1 [timestamp] => 1768482720 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [name] => jessica.russo [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515608 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [fid] => 145395 [uid] => 29556 [filename] => DR indizione suppletive aree scientifiche.pdf [uri] => public://2026/DR indizione suppletive aree scientifiche.pdf [filemime] => application/pdf [filesize] => 210932 [status] => 1 [timestamp] => 1768482720 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) [#formatter] => file_default [0] => Array ( [#theme] => file_link [#file] => stdClass Object ( [fid] => 145395 [uid] => 29556 [filename] => DR indizione suppletive aree scientifiche.pdf [uri] => public://2026/DR indizione suppletive aree scientifiche.pdf [filemime] => application/pdf [filesize] => 210932 [status] => 1 [timestamp] => 1768482720 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [links] => Array ( [#theme] => links__node [#pre_render] => Array ( [0] => drupal_pre_render_links ) [#attributes] => Array ( [class] => Array ( [0] => links [1] => inline ) ) [node] => Array ( [#theme] => links__node__node [#links] => Array ( [node-readmore] => Array ( [title] => Read more about Decreto di indizione - elezioni suppletive 2024-28 [href] => node/126914 [html] => 1 [attributes] => Array ( [rel] => tag [title] => Decreto di indizione - elezioni suppletive 2024-28 ) ) ) [#attributes] => Array ( [class] => Array ( [0] => links [1] => inline ) ) ) ) )

2025N63 - Bando di Concorso n. 2025N63 rettificato

Array ( [field_titolo_frontend_all] => Array ( [#theme] => field [#weight] => -4 [#title] => Titolo frontend [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_titolo_frontend_all [#field_type] => text_long [#field_translatable] => 0 [#entity_type] => node [#bundle] => allegato [#object] => stdClass Object ( [vid] => 515606 [uid] => 29556 [title] => 2025N63 - Bando di Concorso n. 2025N63 rettificato [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126913 [type] => allegato [language] => it [created] => 1768482511 [changed] => 1768482511 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768482511 [revision_uid] => 29556 [taxonomy_vocabulary_2] => Array ( ) [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_titolo_frontend_all] => Array ( [und] => Array ( [0] => Array ( [value] => Bando di Concorso n. 2025N63 rettificato [format] => [safe_value] => Bando di Concorso n. 2025N63 rettificato ) ) ) [field_allegato_file] => Array ( [und] => Array ( [0] => Array ( [fid] => 145393 [uid] => 29556 [filename] => 10 Bando 2025N63 rettificato signed.pdf [uri] => public://2026/10 Bando 2025N63 rettificato signed.pdf [filemime] => application/pdf [filesize] => 418387 [status] => 1 [timestamp] => 1768482505 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [name] => jessica.russo [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515606 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => Bando di Concorso n. 2025N63 rettificato [format] => [safe_value] => Bando di Concorso n. 2025N63 rettificato ) ) [#formatter] => text_default [0] => Array ( [#markup] => Bando di Concorso n. 2025N63 rettificato ) ) [field_allegato_file] => Array ( [#theme] => field [#weight] => -3 [#title] => File [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_allegato_file [#field_type] => file [#field_translatable] => 0 [#entity_type] => node [#bundle] => allegato [#object] => stdClass Object ( [vid] => 515606 [uid] => 29556 [title] => 2025N63 - Bando di Concorso n. 2025N63 rettificato [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126913 [type] => allegato [language] => it [created] => 1768482511 [changed] => 1768482511 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768482511 [revision_uid] => 29556 [taxonomy_vocabulary_2] => Array ( ) [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_titolo_frontend_all] => Array ( [und] => Array ( [0] => Array ( [value] => Bando di Concorso n. 2025N63 rettificato [format] => [safe_value] => Bando di Concorso n. 2025N63 rettificato ) ) ) [field_allegato_file] => Array ( [und] => Array ( [0] => Array ( [fid] => 145393 [uid] => 29556 [filename] => 10 Bando 2025N63 rettificato signed.pdf [uri] => public://2026/10 Bando 2025N63 rettificato signed.pdf [filemime] => application/pdf [filesize] => 418387 [status] => 1 [timestamp] => 1768482505 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [name] => jessica.russo [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515606 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [fid] => 145393 [uid] => 29556 [filename] => 10 Bando 2025N63 rettificato signed.pdf [uri] => public://2026/10 Bando 2025N63 rettificato signed.pdf [filemime] => application/pdf [filesize] => 418387 [status] => 1 [timestamp] => 1768482505 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) [#formatter] => file_default [0] => Array ( [#theme] => file_link [#file] => stdClass Object ( [fid] => 145393 [uid] => 29556 [filename] => 10 Bando 2025N63 rettificato signed.pdf [uri] => public://2026/10 Bando 2025N63 rettificato signed.pdf [filemime] => application/pdf [filesize] => 418387 [status] => 1 [timestamp] => 1768482505 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [links] => Array ( [#theme] => links__node [#pre_render] => Array ( [0] => drupal_pre_render_links ) [#attributes] => Array ( [class] => Array ( [0] => links [1] => inline ) ) [node] => Array ( [#theme] => links__node__node [#links] => Array ( [node-readmore] => Array ( [title] => Read more about 2025N63 - Bando di Concorso n. 2025N63 rettificato [href] => node/126913 [html] => 1 [attributes] => Array ( [rel] => tag [title] => 2025N63 - Bando di Concorso n. 2025N63 rettificato ) ) ) [#attributes] => Array ( [class] => Array ( [0] => links [1] => inline ) ) ) ) )

2025N63 - Decreto di rettifica art. 17 Bando di Concorso n. 2025N63

Array ( [field_titolo_frontend_all] => Array ( [#theme] => field [#weight] => -4 [#title] => Titolo frontend [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_titolo_frontend_all [#field_type] => text_long [#field_translatable] => 0 [#entity_type] => node [#bundle] => allegato [#object] => stdClass Object ( [vid] => 515605 [uid] => 29556 [title] => 2025N63 - Decreto di rettifica art. 17 Bando di Concorso n. 2025N63 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126912 [type] => allegato [language] => it [created] => 1768482464 [changed] => 1768482464 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768482464 [revision_uid] => 29556 [taxonomy_vocabulary_2] => Array ( ) [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_titolo_frontend_all] => Array ( [und] => Array ( [0] => Array ( [value] => Decreto di rettifica art. 17 Bando di Concorso n. 2025N63 [format] => [safe_value] => Decreto di rettifica art. 17 Bando di Concorso n. 2025N63 ) ) ) [field_allegato_file] => Array ( [und] => Array ( [0] => Array ( [fid] => 145392 [uid] => 29556 [filename] => 9 Rettifica art. 17 Bando 2025N63 signed.pdf [uri] => public://2026/9 Rettifica art. 17 Bando 2025N63 signed.pdf [filemime] => application/pdf [filesize] => 226269 [status] => 1 [timestamp] => 1768482459 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [name] => jessica.russo [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515605 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => Decreto di rettifica art. 17 Bando di Concorso n. 2025N63 [format] => [safe_value] => Decreto di rettifica art. 17 Bando di Concorso n. 2025N63 ) ) [#formatter] => text_default [0] => Array ( [#markup] => Decreto di rettifica art. 17 Bando di Concorso n. 2025N63 ) ) [field_allegato_file] => Array ( [#theme] => field [#weight] => -3 [#title] => File [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_allegato_file [#field_type] => file [#field_translatable] => 0 [#entity_type] => node [#bundle] => allegato [#object] => stdClass Object ( [vid] => 515605 [uid] => 29556 [title] => 2025N63 - Decreto di rettifica art. 17 Bando di Concorso n. 2025N63 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126912 [type] => allegato [language] => it [created] => 1768482464 [changed] => 1768482464 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768482464 [revision_uid] => 29556 [taxonomy_vocabulary_2] => Array ( ) [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_titolo_frontend_all] => Array ( [und] => Array ( [0] => Array ( [value] => Decreto di rettifica art. 17 Bando di Concorso n. 2025N63 [format] => [safe_value] => Decreto di rettifica art. 17 Bando di Concorso n. 2025N63 ) ) ) [field_allegato_file] => Array ( [und] => Array ( [0] => Array ( [fid] => 145392 [uid] => 29556 [filename] => 9 Rettifica art. 17 Bando 2025N63 signed.pdf [uri] => public://2026/9 Rettifica art. 17 Bando 2025N63 signed.pdf [filemime] => application/pdf [filesize] => 226269 [status] => 1 [timestamp] => 1768482459 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [name] => jessica.russo [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515605 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [fid] => 145392 [uid] => 29556 [filename] => 9 Rettifica art. 17 Bando 2025N63 signed.pdf [uri] => public://2026/9 Rettifica art. 17 Bando 2025N63 signed.pdf [filemime] => application/pdf [filesize] => 226269 [status] => 1 [timestamp] => 1768482459 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) [#formatter] => file_default [0] => Array ( [#theme] => file_link [#file] => stdClass Object ( [fid] => 145392 [uid] => 29556 [filename] => 9 Rettifica art. 17 Bando 2025N63 signed.pdf [uri] => public://2026/9 Rettifica art. 17 Bando 2025N63 signed.pdf [filemime] => application/pdf [filesize] => 226269 [status] => 1 [timestamp] => 1768482459 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [links] => Array ( [#theme] => links__node [#pre_render] => Array ( [0] => drupal_pre_render_links ) [#attributes] => Array ( [class] => Array ( [0] => links [1] => inline ) ) [node] => Array ( [#theme] => links__node__node [#links] => Array ( [node-readmore] => Array ( [title] => Read more about 2025N63 - Decreto di rettifica art. 17 Bando di Concorso n. 2025N63 [href] => node/126912 [html] => 1 [attributes] => Array ( [rel] => tag [title] => 2025N63 - Decreto di rettifica art. 17 Bando di Concorso n. 2025N63 ) ) ) [#attributes] => Array ( [class] => Array ( [0] => links [1] => inline ) ) ) ) )

2025N64 - Bando di Concorso n. 2025N64 rettificato

Array ( [field_titolo_frontend_all] => Array ( [#theme] => field [#weight] => -4 [#title] => Titolo frontend [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_titolo_frontend_all [#field_type] => text_long [#field_translatable] => 0 [#entity_type] => node [#bundle] => allegato [#object] => stdClass Object ( [vid] => 515603 [uid] => 29556 [title] => 2025N64 - Bando di Concorso n. 2025N64 rettificato [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126911 [type] => allegato [language] => it [created] => 1768482331 [changed] => 1769169543 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1769169543 [revision_uid] => 29556 [taxonomy_vocabulary_2] => Array ( ) [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_titolo_frontend_all] => Array ( [und] => Array ( [0] => Array ( [value] => Bando di Concorso n. 2025N64 rettificato [format] => [safe_value] => Bando di Concorso n. 2025N64 rettificato ) ) ) [field_allegato_file] => Array ( [und] => Array ( [0] => Array ( [fid] => 145391 [uid] => 29556 [filename] => 12 Bando 2025N64 rettificato signed.pdf [uri] => public://2026/12 Bando 2025N64 rettificato signed.pdf [filemime] => application/pdf [filesize] => 456388 [status] => 1 [timestamp] => 1768482326 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [name] => jessica.russo [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515603 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => Bando di Concorso n. 2025N64 rettificato [format] => [safe_value] => Bando di Concorso n. 2025N64 rettificato ) ) [#formatter] => text_default [0] => Array ( [#markup] => Bando di Concorso n. 2025N64 rettificato ) ) [field_allegato_file] => Array ( [#theme] => field [#weight] => -3 [#title] => File [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_allegato_file [#field_type] => file [#field_translatable] => 0 [#entity_type] => node [#bundle] => allegato [#object] => stdClass Object ( [vid] => 515603 [uid] => 29556 [title] => 2025N64 - Bando di Concorso n. 2025N64 rettificato [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126911 [type] => allegato [language] => it [created] => 1768482331 [changed] => 1769169543 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1769169543 [revision_uid] => 29556 [taxonomy_vocabulary_2] => Array ( ) [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_titolo_frontend_all] => Array ( [und] => Array ( [0] => Array ( [value] => Bando di Concorso n. 2025N64 rettificato [format] => [safe_value] => Bando di Concorso n. 2025N64 rettificato ) ) ) [field_allegato_file] => Array ( [und] => Array ( [0] => Array ( [fid] => 145391 [uid] => 29556 [filename] => 12 Bando 2025N64 rettificato signed.pdf [uri] => public://2026/12 Bando 2025N64 rettificato signed.pdf [filemime] => application/pdf [filesize] => 456388 [status] => 1 [timestamp] => 1768482326 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [name] => jessica.russo [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515603 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [fid] => 145391 [uid] => 29556 [filename] => 12 Bando 2025N64 rettificato signed.pdf [uri] => public://2026/12 Bando 2025N64 rettificato signed.pdf [filemime] => application/pdf [filesize] => 456388 [status] => 1 [timestamp] => 1768482326 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) [#formatter] => file_default [0] => Array ( [#theme] => file_link [#file] => stdClass Object ( [fid] => 145391 [uid] => 29556 [filename] => 12 Bando 2025N64 rettificato signed.pdf [uri] => public://2026/12 Bando 2025N64 rettificato signed.pdf [filemime] => application/pdf [filesize] => 456388 [status] => 1 [timestamp] => 1768482326 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [links] => Array ( [#theme] => links__node [#pre_render] => Array ( [0] => drupal_pre_render_links ) [#attributes] => Array ( [class] => Array ( [0] => links [1] => inline ) ) [node] => Array ( [#theme] => links__node__node [#links] => Array ( [node-readmore] => Array ( [title] => Read more about 2025N64 - Bando di Concorso n. 2025N64 rettificato [href] => node/126911 [html] => 1 [attributes] => Array ( [rel] => tag [title] => 2025N64 - Bando di Concorso n. 2025N64 rettificato ) ) ) [#attributes] => Array ( [class] => Array ( [0] => links [1] => inline ) ) ) ) )

2025N64 - Decreto di rettifica art. 17 Bando di Concorso n. 2025N64

Array ( [field_titolo_frontend_all] => Array ( [#theme] => field [#weight] => -4 [#title] => Titolo frontend [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_titolo_frontend_all [#field_type] => text_long [#field_translatable] => 0 [#entity_type] => node [#bundle] => allegato [#object] => stdClass Object ( [vid] => 515602 [uid] => 29556 [title] => 2025N64 - Decreto di rettifica art. 17 Bando di Concorso n. 2025N64 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126910 [type] => allegato [language] => it [created] => 1768482281 [changed] => 1769169530 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1769169530 [revision_uid] => 29556 [taxonomy_vocabulary_2] => Array ( ) [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_titolo_frontend_all] => Array ( [und] => Array ( [0] => Array ( [value] => Decreto di rettifica art. 17 Bando di Concorso n. 2025N64 [format] => [safe_value] => Decreto di rettifica art. 17 Bando di Concorso n. 2025N64 ) ) ) [field_allegato_file] => Array ( [und] => Array ( [0] => Array ( [fid] => 145390 [uid] => 29556 [filename] => 11 Rettifica art. 17 Bando 2025N64 signed.pdf [uri] => public://2026/11 Rettifica art. 17 Bando 2025N64 signed.pdf [filemime] => application/pdf [filesize] => 227528 [status] => 1 [timestamp] => 1768482276 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [name] => jessica.russo [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515602 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => Decreto di rettifica art. 17 Bando di Concorso n. 2025N64 [format] => [safe_value] => Decreto di rettifica art. 17 Bando di Concorso n. 2025N64 ) ) [#formatter] => text_default [0] => Array ( [#markup] => Decreto di rettifica art. 17 Bando di Concorso n. 2025N64 ) ) [field_allegato_file] => Array ( [#theme] => field [#weight] => -3 [#title] => File [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_allegato_file [#field_type] => file [#field_translatable] => 0 [#entity_type] => node [#bundle] => allegato [#object] => stdClass Object ( [vid] => 515602 [uid] => 29556 [title] => 2025N64 - Decreto di rettifica art. 17 Bando di Concorso n. 2025N64 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126910 [type] => allegato [language] => it [created] => 1768482281 [changed] => 1769169530 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1769169530 [revision_uid] => 29556 [taxonomy_vocabulary_2] => Array ( ) [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_titolo_frontend_all] => Array ( [und] => Array ( [0] => Array ( [value] => Decreto di rettifica art. 17 Bando di Concorso n. 2025N64 [format] => [safe_value] => Decreto di rettifica art. 17 Bando di Concorso n. 2025N64 ) ) ) [field_allegato_file] => Array ( [und] => Array ( [0] => Array ( [fid] => 145390 [uid] => 29556 [filename] => 11 Rettifica art. 17 Bando 2025N64 signed.pdf [uri] => public://2026/11 Rettifica art. 17 Bando 2025N64 signed.pdf [filemime] => application/pdf [filesize] => 227528 [status] => 1 [timestamp] => 1768482276 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [name] => jessica.russo [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515602 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [fid] => 145390 [uid] => 29556 [filename] => 11 Rettifica art. 17 Bando 2025N64 signed.pdf [uri] => public://2026/11 Rettifica art. 17 Bando 2025N64 signed.pdf [filemime] => application/pdf [filesize] => 227528 [status] => 1 [timestamp] => 1768482276 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) [#formatter] => file_default [0] => Array ( [#theme] => file_link [#file] => stdClass Object ( [fid] => 145390 [uid] => 29556 [filename] => 11 Rettifica art. 17 Bando 2025N64 signed.pdf [uri] => public://2026/11 Rettifica art. 17 Bando 2025N64 signed.pdf [filemime] => application/pdf [filesize] => 227528 [status] => 1 [timestamp] => 1768482276 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [links] => Array ( [#theme] => links__node [#pre_render] => Array ( [0] => drupal_pre_render_links ) [#attributes] => Array ( [class] => Array ( [0] => links [1] => inline ) ) [node] => Array ( [#theme] => links__node__node [#links] => Array ( [node-readmore] => Array ( [title] => Read more about 2025N64 - Decreto di rettifica art. 17 Bando di Concorso n. 2025N64 [href] => node/126910 [html] => 1 [attributes] => Array ( [rel] => tag [title] => 2025N64 - Decreto di rettifica art. 17 Bando di Concorso n. 2025N64 ) ) ) [#attributes] => Array ( [class] => Array ( [0] => links [1] => inline ) ) ) ) )

Gene therapy: promising discoveries against neurodegenerative diseases

Array ( [field_link_esterno_news] => Array ( [#theme] => field [#weight] => -1 [#title] => Link esterno news [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_link_esterno_news [#field_type] => text_long [#field_translatable] => 0 [#entity_type] => node [#bundle] => box_lancio_news [#object] => stdClass Object ( [vid] => 515598 [uid] => 26499 [title] => Gene therapy: promising discoveries against neurodegenerative diseases [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126909 [type] => box_lancio_news [language] => it [created] => 1768480251 [changed] => 1768480251 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768480251 [revision_uid] => 26499 [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

A study by the University of Padua demonstrates that it is possible to restore a key protein in the brain and improve symptoms of frontotemporal dementia (FTD) and neuronal ceroid lipofuscinosis type 11 (CLN11). Gene therapy with autologous haematopoietic stem cells (HSC-GT) represents a promising strategy for treating these diseases, which are caused by mutations in the GRN gene and are characterised by a deficiency of the progranulin protein (PGRN) in the brain.

In the study published in "Science Translational Medicine," researchers collected haematopoietic stem cells, genetically corrected them by inserting a functional copy of the GRN gene, and transplanted them into a mouse model of the two diseases. These cells transformed into microglia-like cells, producing progranulin in a stable manner. "In all experimental conditions, we observed a restoration of PGRN production in the central nervous system," says the corresponding author of the study, Alessandra Biffi, a professor in the Department of Women's and Children's Health at the University of Padua. "This led to a correction of lipid accumulation, a decrease in neuroinflammation (gliosis), and an improvement in behavioural functions, particularly social recognition. Of particular interest is the observation that therapeutic benefits were also achieved when the genetically modified cells settled exclusively in the brain, following intracerebroventricular administration of the treatment."

The study shows how a partial but stable reconstitution of progranulin in the brain over time is sufficient to correct the pathology, opening new perspectives for the development of effective gene therapies for the two severe and currently untreatable neurodegenerative diseases, Frontotemporal Dementia and neuronal ceroid lipofuscinosis type 11.

[summary] => [format] => 2 [safe_value] =>

A study by the University of Padua demonstrates that it is possible to restore a key protein in the brain and improve symptoms of frontotemporal dementia (FTD) and neuronal ceroid lipofuscinosis type 11 (CLN11). Gene therapy with autologous haematopoietic stem cells (HSC-GT) represents a promising strategy for treating these diseases, which are caused by mutations in the GRN gene and are characterised by a deficiency of the progranulin protein (PGRN) in the brain.

In the study published in "Science Translational Medicine," researchers collected haematopoietic stem cells, genetically corrected them by inserting a functional copy of the GRN gene, and transplanted them into a mouse model of the two diseases. These cells transformed into microglia-like cells, producing progranulin in a stable manner. "In all experimental conditions, we observed a restoration of PGRN production in the central nervous system," says the corresponding author of the study, Alessandra Biffi, a professor in the Department of Women's and Children's Health at the University of Padua. "This led to a correction of lipid accumulation, a decrease in neuroinflammation (gliosis), and an improvement in behavioural functions, particularly social recognition. Of particular interest is the observation that therapeutic benefits were also achieved when the genetically modified cells settled exclusively in the brain, following intracerebroventricular administration of the treatment."

The study shows how a partial but stable reconstitution of progranulin in the brain over time is sufficient to correct the pathology, opening new perspectives for the development of effective gene therapies for the two severe and currently untreatable neurodegenerative diseases, Frontotemporal Dementia and neuronal ceroid lipofuscinosis type 11.

[safe_summary] => ) ) ) [field_date_box_lancio_news] => Array ( [und] => Array ( [0] => Array ( [value] => 2026-01-15T00:00:00 [timezone] => Europe/Paris [timezone_db] => Europe/Paris [date_type] => date ) ) ) [field_etichetta_box_lancio_news] => Array ( ) [field_img_box_lancio_news] => Array ( [und] => Array ( [0] => Array ( [fid] => 145386 [uid] => 26499 [filename] => download-1.jpg [uri] => public://download-1_0.jpg [filemime] => image/jpeg [filesize] => 10359 [status] => 1 [timestamp] => 1768471586 [type] => image [field_file_image_alt_text] => Array ( ) [field_file_image_title_text] => Array ( ) [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2048 ) ) ) [metadata] => Array ( [height] => 168 [width] => 299 ) [height] => 168 [width] => 299 [alt] => cranial X-rays [title] => ) ) ) [field_link_alla_news] => Array ( ) [field_link_esterno_news] => Array ( [und] => Array ( [0] => Array ( [value] => [format] => [safe_value] => ) ) ) [field_pagina_associata] => Array ( ) [field_link_etichetta] => Array ( ) [field_abstract_news] => Array ( [und] => Array ( [0] => Array ( [value] => An innovative research study by the University of Padua restores a key protein in the brain, improving symptoms of frontotemporal dementia and neuronal ceroid lipofuscinosis type 11 [format] => [safe_value] => An innovative research study by the University of Padua restores a key protein in the brain, improving symptoms of frontotemporal dementia and neuronal ceroid lipofuscinosis type 11 ) ) ) [field_allegato_news] => Array ( ) [field_categorie_news] => Array ( [und] => Array ( [0] => Array ( [tid] => 2296 ) ) ) [field_pub_date] => Array ( [und] => Array ( [0] => Array ( [value] => 2026-01-15T00:00:00 [value2] => 2027-01-15T00:00:00 [timezone] => Europe/Paris [timezone_db] => Europe/Paris [date_type] => date ) ) ) [field_layout_news] => Array ( [und] => Array ( [0] => Array ( [value] => single ) ) ) [field_testo_opzionale_news] => Array ( ) [field_url_en_page] => Array ( [und] => Array ( [0] => Array ( [value] => https://www.unipd.it/news/terapia-genica-scoperte-promettenti-contro-malattie-neurodegenerative [format] => [safe_value] => https://www.unipd.it/news/terapia-genica-scoperte-promettenti-contro-malattie-neurodegenerative ) ) ) [field_url_en_page_label] => Array ( [und] => Array ( [0] => Array ( [value] => Versione italiana [format] => [safe_value] => Versione italiana ) ) ) [path] => Array ( [pathauto] => 1 ) [name] => rossella.vezzosi [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515598 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => [format] => [safe_value] => ) ) [#formatter] => text_default [0] => Array ( [#markup] => ) ) [body] => Array ( [#theme] => field [#weight] => 0 [#title] => Body [#access] => 1 [#label_display] => hidden [#view_mode] => teaser [#language] => und [#field_name] => body [#field_type] => text_with_summary [#field_translatable] => 0 [#entity_type] => node [#bundle] => box_lancio_news [#object] => stdClass Object ( [vid] => 515598 [uid] => 26499 [title] => Gene therapy: promising discoveries against neurodegenerative diseases [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126909 [type] => box_lancio_news [language] => it [created] => 1768480251 [changed] => 1768480251 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768480251 [revision_uid] => 26499 [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

A study by the University of Padua demonstrates that it is possible to restore a key protein in the brain and improve symptoms of frontotemporal dementia (FTD) and neuronal ceroid lipofuscinosis type 11 (CLN11). Gene therapy with autologous haematopoietic stem cells (HSC-GT) represents a promising strategy for treating these diseases, which are caused by mutations in the GRN gene and are characterised by a deficiency of the progranulin protein (PGRN) in the brain.

In the study published in "Science Translational Medicine," researchers collected haematopoietic stem cells, genetically corrected them by inserting a functional copy of the GRN gene, and transplanted them into a mouse model of the two diseases. These cells transformed into microglia-like cells, producing progranulin in a stable manner. "In all experimental conditions, we observed a restoration of PGRN production in the central nervous system," says the corresponding author of the study, Alessandra Biffi, a professor in the Department of Women's and Children's Health at the University of Padua. "This led to a correction of lipid accumulation, a decrease in neuroinflammation (gliosis), and an improvement in behavioural functions, particularly social recognition. Of particular interest is the observation that therapeutic benefits were also achieved when the genetically modified cells settled exclusively in the brain, following intracerebroventricular administration of the treatment."

The study shows how a partial but stable reconstitution of progranulin in the brain over time is sufficient to correct the pathology, opening new perspectives for the development of effective gene therapies for the two severe and currently untreatable neurodegenerative diseases, Frontotemporal Dementia and neuronal ceroid lipofuscinosis type 11.

[summary] => [format] => 2 [safe_value] =>

A study by the University of Padua demonstrates that it is possible to restore a key protein in the brain and improve symptoms of frontotemporal dementia (FTD) and neuronal ceroid lipofuscinosis type 11 (CLN11). Gene therapy with autologous haematopoietic stem cells (HSC-GT) represents a promising strategy for treating these diseases, which are caused by mutations in the GRN gene and are characterised by a deficiency of the progranulin protein (PGRN) in the brain.

In the study published in "Science Translational Medicine," researchers collected haematopoietic stem cells, genetically corrected them by inserting a functional copy of the GRN gene, and transplanted them into a mouse model of the two diseases. These cells transformed into microglia-like cells, producing progranulin in a stable manner. "In all experimental conditions, we observed a restoration of PGRN production in the central nervous system," says the corresponding author of the study, Alessandra Biffi, a professor in the Department of Women's and Children's Health at the University of Padua. "This led to a correction of lipid accumulation, a decrease in neuroinflammation (gliosis), and an improvement in behavioural functions, particularly social recognition. Of particular interest is the observation that therapeutic benefits were also achieved when the genetically modified cells settled exclusively in the brain, following intracerebroventricular administration of the treatment."

The study shows how a partial but stable reconstitution of progranulin in the brain over time is sufficient to correct the pathology, opening new perspectives for the development of effective gene therapies for the two severe and currently untreatable neurodegenerative diseases, Frontotemporal Dementia and neuronal ceroid lipofuscinosis type 11.

[safe_summary] => ) ) ) [field_date_box_lancio_news] => Array ( [und] => Array ( [0] => Array ( [value] => 2026-01-15T00:00:00 [timezone] => Europe/Paris [timezone_db] => Europe/Paris [date_type] => date ) ) ) [field_etichetta_box_lancio_news] => Array ( ) [field_img_box_lancio_news] => Array ( [und] => Array ( [0] => Array ( [fid] => 145386 [uid] => 26499 [filename] => download-1.jpg [uri] => public://download-1_0.jpg [filemime] => image/jpeg [filesize] => 10359 [status] => 1 [timestamp] => 1768471586 [type] => image [field_file_image_alt_text] => Array ( ) [field_file_image_title_text] => Array ( ) [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2048 ) ) ) [metadata] => Array ( [height] => 168 [width] => 299 ) [height] => 168 [width] => 299 [alt] => cranial X-rays [title] => ) ) ) [field_link_alla_news] => Array ( ) [field_link_esterno_news] => Array ( [und] => Array ( [0] => Array ( [value] => [format] => [safe_value] => ) ) ) [field_pagina_associata] => Array ( ) [field_link_etichetta] => Array ( ) [field_abstract_news] => Array ( [und] => Array ( [0] => Array ( [value] => An innovative research study by the University of Padua restores a key protein in the brain, improving symptoms of frontotemporal dementia and neuronal ceroid lipofuscinosis type 11 [format] => [safe_value] => An innovative research study by the University of Padua restores a key protein in the brain, improving symptoms of frontotemporal dementia and neuronal ceroid lipofuscinosis type 11 ) ) ) [field_allegato_news] => Array ( ) [field_categorie_news] => Array ( [und] => Array ( [0] => Array ( [tid] => 2296 ) ) ) [field_pub_date] => Array ( [und] => Array ( [0] => Array ( [value] => 2026-01-15T00:00:00 [value2] => 2027-01-15T00:00:00 [timezone] => Europe/Paris [timezone_db] => Europe/Paris [date_type] => date ) ) ) [field_layout_news] => Array ( [und] => Array ( [0] => Array ( [value] => single ) ) ) [field_testo_opzionale_news] => Array ( ) [field_url_en_page] => Array ( [und] => Array ( [0] => Array ( [value] => https://www.unipd.it/news/terapia-genica-scoperte-promettenti-contro-malattie-neurodegenerative [format] => [safe_value] => https://www.unipd.it/news/terapia-genica-scoperte-promettenti-contro-malattie-neurodegenerative ) ) ) [field_url_en_page_label] => Array ( [und] => Array ( [0] => Array ( [value] => Versione italiana [format] => [safe_value] => Versione italiana ) ) ) [path] => Array ( [pathauto] => 1 ) [name] => rossella.vezzosi [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515598 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] =>

A study by the University of Padua demonstrates that it is possible to restore a key protein in the brain and improve symptoms of frontotemporal dementia (FTD) and neuronal ceroid lipofuscinosis type 11 (CLN11). Gene therapy with autologous haematopoietic stem cells (HSC-GT) represents a promising strategy for treating these diseases, which are caused by mutations in the GRN gene and are characterised by a deficiency of the progranulin protein (PGRN) in the brain.

In the study published in "Science Translational Medicine," researchers collected haematopoietic stem cells, genetically corrected them by inserting a functional copy of the GRN gene, and transplanted them into a mouse model of the two diseases. These cells transformed into microglia-like cells, producing progranulin in a stable manner. "In all experimental conditions, we observed a restoration of PGRN production in the central nervous system," says the corresponding author of the study, Alessandra Biffi, a professor in the Department of Women's and Children's Health at the University of Padua. "This led to a correction of lipid accumulation, a decrease in neuroinflammation (gliosis), and an improvement in behavioural functions, particularly social recognition. Of particular interest is the observation that therapeutic benefits were also achieved when the genetically modified cells settled exclusively in the brain, following intracerebroventricular administration of the treatment."

The study shows how a partial but stable reconstitution of progranulin in the brain over time is sufficient to correct the pathology, opening new perspectives for the development of effective gene therapies for the two severe and currently untreatable neurodegenerative diseases, Frontotemporal Dementia and neuronal ceroid lipofuscinosis type 11.

[summary] => [format] => 2 [safe_value] =>

A study by the University of Padua demonstrates that it is possible to restore a key protein in the brain and improve symptoms of frontotemporal dementia (FTD) and neuronal ceroid lipofuscinosis type 11 (CLN11). Gene therapy with autologous haematopoietic stem cells (HSC-GT) represents a promising strategy for treating these diseases, which are caused by mutations in the GRN gene and are characterised by a deficiency of the progranulin protein (PGRN) in the brain.

In the study published in "Science Translational Medicine," researchers collected haematopoietic stem cells, genetically corrected them by inserting a functional copy of the GRN gene, and transplanted them into a mouse model of the two diseases. These cells transformed into microglia-like cells, producing progranulin in a stable manner. "In all experimental conditions, we observed a restoration of PGRN production in the central nervous system," says the corresponding author of the study, Alessandra Biffi, a professor in the Department of Women's and Children's Health at the University of Padua. "This led to a correction of lipid accumulation, a decrease in neuroinflammation (gliosis), and an improvement in behavioural functions, particularly social recognition. Of particular interest is the observation that therapeutic benefits were also achieved when the genetically modified cells settled exclusively in the brain, following intracerebroventricular administration of the treatment."

The study shows how a partial but stable reconstitution of progranulin in the brain over time is sufficient to correct the pathology, opening new perspectives for the development of effective gene therapies for the two severe and currently untreatable neurodegenerative diseases, Frontotemporal Dementia and neuronal ceroid lipofuscinosis type 11.

[safe_summary] => ) ) [#formatter] => text_summary_or_trimmed [0] => Array ( [#markup] =>

A study by the University of Padua demonstrates that it is possible to restore a key protein in the brain and improve symptoms of frontotemporal dementia (FTD) and neuronal ceroid lipofuscinosis type 11 (CLN11). Gene therapy with autologous haematopoietic stem cells (HSC-GT) represents a promising strategy for treating these diseases, which are caused by mutations in the GRN gene and are characterised by a deficiency of the progranulin protein (PGRN) in the brain.

) ) [field_img_box_lancio_news] => Array ( [#theme] => field [#weight] => 0 [#title] => Immagine [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_img_box_lancio_news [#field_type] => image [#field_translatable] => 0 [#entity_type] => node [#bundle] => box_lancio_news [#object] => stdClass Object ( [vid] => 515598 [uid] => 26499 [title] => Gene therapy: promising discoveries against neurodegenerative diseases [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126909 [type] => box_lancio_news [language] => it [created] => 1768480251 [changed] => 1768480251 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768480251 [revision_uid] => 26499 [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

A study by the University of Padua demonstrates that it is possible to restore a key protein in the brain and improve symptoms of frontotemporal dementia (FTD) and neuronal ceroid lipofuscinosis type 11 (CLN11). Gene therapy with autologous haematopoietic stem cells (HSC-GT) represents a promising strategy for treating these diseases, which are caused by mutations in the GRN gene and are characterised by a deficiency of the progranulin protein (PGRN) in the brain.

In the study published in "Science Translational Medicine," researchers collected haematopoietic stem cells, genetically corrected them by inserting a functional copy of the GRN gene, and transplanted them into a mouse model of the two diseases. These cells transformed into microglia-like cells, producing progranulin in a stable manner. "In all experimental conditions, we observed a restoration of PGRN production in the central nervous system," says the corresponding author of the study, Alessandra Biffi, a professor in the Department of Women's and Children's Health at the University of Padua. "This led to a correction of lipid accumulation, a decrease in neuroinflammation (gliosis), and an improvement in behavioural functions, particularly social recognition. Of particular interest is the observation that therapeutic benefits were also achieved when the genetically modified cells settled exclusively in the brain, following intracerebroventricular administration of the treatment."

The study shows how a partial but stable reconstitution of progranulin in the brain over time is sufficient to correct the pathology, opening new perspectives for the development of effective gene therapies for the two severe and currently untreatable neurodegenerative diseases, Frontotemporal Dementia and neuronal ceroid lipofuscinosis type 11.

[summary] => [format] => 2 [safe_value] =>

A study by the University of Padua demonstrates that it is possible to restore a key protein in the brain and improve symptoms of frontotemporal dementia (FTD) and neuronal ceroid lipofuscinosis type 11 (CLN11). Gene therapy with autologous haematopoietic stem cells (HSC-GT) represents a promising strategy for treating these diseases, which are caused by mutations in the GRN gene and are characterised by a deficiency of the progranulin protein (PGRN) in the brain.

In the study published in "Science Translational Medicine," researchers collected haematopoietic stem cells, genetically corrected them by inserting a functional copy of the GRN gene, and transplanted them into a mouse model of the two diseases. These cells transformed into microglia-like cells, producing progranulin in a stable manner. "In all experimental conditions, we observed a restoration of PGRN production in the central nervous system," says the corresponding author of the study, Alessandra Biffi, a professor in the Department of Women's and Children's Health at the University of Padua. "This led to a correction of lipid accumulation, a decrease in neuroinflammation (gliosis), and an improvement in behavioural functions, particularly social recognition. Of particular interest is the observation that therapeutic benefits were also achieved when the genetically modified cells settled exclusively in the brain, following intracerebroventricular administration of the treatment."

The study shows how a partial but stable reconstitution of progranulin in the brain over time is sufficient to correct the pathology, opening new perspectives for the development of effective gene therapies for the two severe and currently untreatable neurodegenerative diseases, Frontotemporal Dementia and neuronal ceroid lipofuscinosis type 11.

[safe_summary] => ) ) ) [field_date_box_lancio_news] => Array ( [und] => Array ( [0] => Array ( [value] => 2026-01-15T00:00:00 [timezone] => Europe/Paris [timezone_db] => Europe/Paris [date_type] => date ) ) ) [field_etichetta_box_lancio_news] => Array ( ) [field_img_box_lancio_news] => Array ( [und] => Array ( [0] => Array ( [fid] => 145386 [uid] => 26499 [filename] => download-1.jpg [uri] => public://download-1_0.jpg [filemime] => image/jpeg [filesize] => 10359 [status] => 1 [timestamp] => 1768471586 [type] => image [field_file_image_alt_text] => Array ( ) [field_file_image_title_text] => Array ( ) [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2048 ) ) ) [metadata] => Array ( [height] => 168 [width] => 299 ) [height] => 168 [width] => 299 [alt] => cranial X-rays [title] => ) ) ) [field_link_alla_news] => Array ( ) [field_link_esterno_news] => Array ( [und] => Array ( [0] => Array ( [value] => [format] => [safe_value] => ) ) ) [field_pagina_associata] => Array ( ) [field_link_etichetta] => Array ( ) [field_abstract_news] => Array ( [und] => Array ( [0] => Array ( [value] => An innovative research study by the University of Padua restores a key protein in the brain, improving symptoms of frontotemporal dementia and neuronal ceroid lipofuscinosis type 11 [format] => [safe_value] => An innovative research study by the University of Padua restores a key protein in the brain, improving symptoms of frontotemporal dementia and neuronal ceroid lipofuscinosis type 11 ) ) ) [field_allegato_news] => Array ( ) [field_categorie_news] => Array ( [und] => Array ( [0] => Array ( [tid] => 2296 ) ) ) [field_pub_date] => Array ( [und] => Array ( [0] => Array ( [value] => 2026-01-15T00:00:00 [value2] => 2027-01-15T00:00:00 [timezone] => Europe/Paris [timezone_db] => Europe/Paris [date_type] => date ) ) ) [field_layout_news] => Array ( [und] => Array ( [0] => Array ( [value] => single ) ) ) [field_testo_opzionale_news] => Array ( ) [field_url_en_page] => Array ( [und] => Array ( [0] => Array ( [value] => https://www.unipd.it/news/terapia-genica-scoperte-promettenti-contro-malattie-neurodegenerative [format] => [safe_value] => https://www.unipd.it/news/terapia-genica-scoperte-promettenti-contro-malattie-neurodegenerative ) ) ) [field_url_en_page_label] => Array ( [und] => Array ( [0] => Array ( [value] => Versione italiana [format] => [safe_value] => Versione italiana ) ) ) [path] => Array ( [pathauto] => 1 ) [name] => rossella.vezzosi [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515598 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [fid] => 145386 [uid] => 26499 [filename] => download-1.jpg [uri] => public://download-1_0.jpg [filemime] => image/jpeg [filesize] => 10359 [status] => 1 [timestamp] => 1768471586 [type] => image [field_file_image_alt_text] => Array ( ) [field_file_image_title_text] => Array ( ) [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2048 ) ) ) [metadata] => Array ( [height] => 168 [width] => 299 ) [height] => 168 [width] => 299 [alt] => cranial X-rays [title] => ) ) [#formatter] => image [0] => Array ( [#theme] => image_formatter [#item] => Array ( [fid] => 145386 [uid] => 26499 [filename] => download-1.jpg [uri] => public://download-1_0.jpg [filemime] => image/jpeg [filesize] => 10359 [status] => 1 [timestamp] => 1768471586 [type] => image [field_file_image_alt_text] => Array ( ) [field_file_image_title_text] => Array ( ) [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2048 ) ) ) [metadata] => Array ( [height] => 168 [width] => 299 ) [height] => 168 [width] => 299 [alt] => cranial X-rays [title] => ) [#image_style] => [#path] => ) ) [field_abstract_news] => Array ( [#theme] => field [#weight] => 0 [#title] => Abstract [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_abstract_news [#field_type] => text_long [#field_translatable] => 0 [#entity_type] => node [#bundle] => box_lancio_news [#object] => stdClass Object ( [vid] => 515598 [uid] => 26499 [title] => Gene therapy: promising discoveries against neurodegenerative diseases [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126909 [type] => box_lancio_news [language] => it [created] => 1768480251 [changed] => 1768480251 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768480251 [revision_uid] => 26499 [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

A study by the University of Padua demonstrates that it is possible to restore a key protein in the brain and improve symptoms of frontotemporal dementia (FTD) and neuronal ceroid lipofuscinosis type 11 (CLN11). Gene therapy with autologous haematopoietic stem cells (HSC-GT) represents a promising strategy for treating these diseases, which are caused by mutations in the GRN gene and are characterised by a deficiency of the progranulin protein (PGRN) in the brain.

In the study published in "Science Translational Medicine," researchers collected haematopoietic stem cells, genetically corrected them by inserting a functional copy of the GRN gene, and transplanted them into a mouse model of the two diseases. These cells transformed into microglia-like cells, producing progranulin in a stable manner. "In all experimental conditions, we observed a restoration of PGRN production in the central nervous system," says the corresponding author of the study, Alessandra Biffi, a professor in the Department of Women's and Children's Health at the University of Padua. "This led to a correction of lipid accumulation, a decrease in neuroinflammation (gliosis), and an improvement in behavioural functions, particularly social recognition. Of particular interest is the observation that therapeutic benefits were also achieved when the genetically modified cells settled exclusively in the brain, following intracerebroventricular administration of the treatment."

The study shows how a partial but stable reconstitution of progranulin in the brain over time is sufficient to correct the pathology, opening new perspectives for the development of effective gene therapies for the two severe and currently untreatable neurodegenerative diseases, Frontotemporal Dementia and neuronal ceroid lipofuscinosis type 11.

[summary] => [format] => 2 [safe_value] =>

A study by the University of Padua demonstrates that it is possible to restore a key protein in the brain and improve symptoms of frontotemporal dementia (FTD) and neuronal ceroid lipofuscinosis type 11 (CLN11). Gene therapy with autologous haematopoietic stem cells (HSC-GT) represents a promising strategy for treating these diseases, which are caused by mutations in the GRN gene and are characterised by a deficiency of the progranulin protein (PGRN) in the brain.

In the study published in "Science Translational Medicine," researchers collected haematopoietic stem cells, genetically corrected them by inserting a functional copy of the GRN gene, and transplanted them into a mouse model of the two diseases. These cells transformed into microglia-like cells, producing progranulin in a stable manner. "In all experimental conditions, we observed a restoration of PGRN production in the central nervous system," says the corresponding author of the study, Alessandra Biffi, a professor in the Department of Women's and Children's Health at the University of Padua. "This led to a correction of lipid accumulation, a decrease in neuroinflammation (gliosis), and an improvement in behavioural functions, particularly social recognition. Of particular interest is the observation that therapeutic benefits were also achieved when the genetically modified cells settled exclusively in the brain, following intracerebroventricular administration of the treatment."

The study shows how a partial but stable reconstitution of progranulin in the brain over time is sufficient to correct the pathology, opening new perspectives for the development of effective gene therapies for the two severe and currently untreatable neurodegenerative diseases, Frontotemporal Dementia and neuronal ceroid lipofuscinosis type 11.

[safe_summary] => ) ) ) [field_date_box_lancio_news] => Array ( [und] => Array ( [0] => Array ( [value] => 2026-01-15T00:00:00 [timezone] => Europe/Paris [timezone_db] => Europe/Paris [date_type] => date ) ) ) [field_etichetta_box_lancio_news] => Array ( ) [field_img_box_lancio_news] => Array ( [und] => Array ( [0] => Array ( [fid] => 145386 [uid] => 26499 [filename] => download-1.jpg [uri] => public://download-1_0.jpg [filemime] => image/jpeg [filesize] => 10359 [status] => 1 [timestamp] => 1768471586 [type] => image [field_file_image_alt_text] => Array ( ) [field_file_image_title_text] => Array ( ) [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2048 ) ) ) [metadata] => Array ( [height] => 168 [width] => 299 ) [height] => 168 [width] => 299 [alt] => cranial X-rays [title] => ) ) ) [field_link_alla_news] => Array ( ) [field_link_esterno_news] => Array ( [und] => Array ( [0] => Array ( [value] => [format] => [safe_value] => ) ) ) [field_pagina_associata] => Array ( ) [field_link_etichetta] => Array ( ) [field_abstract_news] => Array ( [und] => Array ( [0] => Array ( [value] => An innovative research study by the University of Padua restores a key protein in the brain, improving symptoms of frontotemporal dementia and neuronal ceroid lipofuscinosis type 11 [format] => [safe_value] => An innovative research study by the University of Padua restores a key protein in the brain, improving symptoms of frontotemporal dementia and neuronal ceroid lipofuscinosis type 11 ) ) ) [field_allegato_news] => Array ( ) [field_categorie_news] => Array ( [und] => Array ( [0] => Array ( [tid] => 2296 ) ) ) [field_pub_date] => Array ( [und] => Array ( [0] => Array ( [value] => 2026-01-15T00:00:00 [value2] => 2027-01-15T00:00:00 [timezone] => Europe/Paris [timezone_db] => Europe/Paris [date_type] => date ) ) ) [field_layout_news] => Array ( [und] => Array ( [0] => Array ( [value] => single ) ) ) [field_testo_opzionale_news] => Array ( ) [field_url_en_page] => Array ( [und] => Array ( [0] => Array ( [value] => https://www.unipd.it/news/terapia-genica-scoperte-promettenti-contro-malattie-neurodegenerative [format] => [safe_value] => https://www.unipd.it/news/terapia-genica-scoperte-promettenti-contro-malattie-neurodegenerative ) ) ) [field_url_en_page_label] => Array ( [und] => Array ( [0] => Array ( [value] => Versione italiana [format] => [safe_value] => Versione italiana ) ) ) [path] => Array ( [pathauto] => 1 ) [name] => rossella.vezzosi [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515598 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => An innovative research study by the University of Padua restores a key protein in the brain, improving symptoms of frontotemporal dementia and neuronal ceroid lipofuscinosis type 11 [format] => [safe_value] => An innovative research study by the University of Padua restores a key protein in the brain, improving symptoms of frontotemporal dementia and neuronal ceroid lipofuscinosis type 11 ) ) [#formatter] => text_default [0] => Array ( [#markup] => An innovative research study by the University of Padua restores a key protein in the brain, improving symptoms of frontotemporal dementia and neuronal ceroid lipofuscinosis type 11 ) ) [links] => Array ( [#theme] => links__node [#pre_render] => Array ( [0] => drupal_pre_render_links ) [#attributes] => Array ( [class] => Array ( [0] => links [1] => inline ) ) [node] => Array ( [#theme] => links__node__node [#links] => Array ( [node-readmore] => Array ( [title] => Read more about Gene therapy: promising discoveries against neurodegenerative diseases [href] => node/126909 [html] => 1 [attributes] => Array ( [rel] => tag [title] => Gene therapy: promising discoveries against neurodegenerative diseases ) ) ) [#attributes] => Array ( [class] => Array ( [0] => links [1] => inline ) ) ) ) [field_date_box_lancio_news] => Array ( [#theme] => field [#weight] => 1 [#title] => Data [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_date_box_lancio_news [#field_type] => date [#field_translatable] => 0 [#entity_type] => node [#bundle] => box_lancio_news [#object] => stdClass Object ( [vid] => 515598 [uid] => 26499 [title] => Gene therapy: promising discoveries against neurodegenerative diseases [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126909 [type] => box_lancio_news [language] => it [created] => 1768480251 [changed] => 1768480251 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768480251 [revision_uid] => 26499 [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

A study by the University of Padua demonstrates that it is possible to restore a key protein in the brain and improve symptoms of frontotemporal dementia (FTD) and neuronal ceroid lipofuscinosis type 11 (CLN11). Gene therapy with autologous haematopoietic stem cells (HSC-GT) represents a promising strategy for treating these diseases, which are caused by mutations in the GRN gene and are characterised by a deficiency of the progranulin protein (PGRN) in the brain.

In the study published in "Science Translational Medicine," researchers collected haematopoietic stem cells, genetically corrected them by inserting a functional copy of the GRN gene, and transplanted them into a mouse model of the two diseases. These cells transformed into microglia-like cells, producing progranulin in a stable manner. "In all experimental conditions, we observed a restoration of PGRN production in the central nervous system," says the corresponding author of the study, Alessandra Biffi, a professor in the Department of Women's and Children's Health at the University of Padua. "This led to a correction of lipid accumulation, a decrease in neuroinflammation (gliosis), and an improvement in behavioural functions, particularly social recognition. Of particular interest is the observation that therapeutic benefits were also achieved when the genetically modified cells settled exclusively in the brain, following intracerebroventricular administration of the treatment."

The study shows how a partial but stable reconstitution of progranulin in the brain over time is sufficient to correct the pathology, opening new perspectives for the development of effective gene therapies for the two severe and currently untreatable neurodegenerative diseases, Frontotemporal Dementia and neuronal ceroid lipofuscinosis type 11.

[summary] => [format] => 2 [safe_value] =>

A study by the University of Padua demonstrates that it is possible to restore a key protein in the brain and improve symptoms of frontotemporal dementia (FTD) and neuronal ceroid lipofuscinosis type 11 (CLN11). Gene therapy with autologous haematopoietic stem cells (HSC-GT) represents a promising strategy for treating these diseases, which are caused by mutations in the GRN gene and are characterised by a deficiency of the progranulin protein (PGRN) in the brain.

In the study published in "Science Translational Medicine," researchers collected haematopoietic stem cells, genetically corrected them by inserting a functional copy of the GRN gene, and transplanted them into a mouse model of the two diseases. These cells transformed into microglia-like cells, producing progranulin in a stable manner. "In all experimental conditions, we observed a restoration of PGRN production in the central nervous system," says the corresponding author of the study, Alessandra Biffi, a professor in the Department of Women's and Children's Health at the University of Padua. "This led to a correction of lipid accumulation, a decrease in neuroinflammation (gliosis), and an improvement in behavioural functions, particularly social recognition. Of particular interest is the observation that therapeutic benefits were also achieved when the genetically modified cells settled exclusively in the brain, following intracerebroventricular administration of the treatment."

The study shows how a partial but stable reconstitution of progranulin in the brain over time is sufficient to correct the pathology, opening new perspectives for the development of effective gene therapies for the two severe and currently untreatable neurodegenerative diseases, Frontotemporal Dementia and neuronal ceroid lipofuscinosis type 11.

[safe_summary] => ) ) ) [field_date_box_lancio_news] => Array ( [und] => Array ( [0] => Array ( [value] => 2026-01-15T00:00:00 [timezone] => Europe/Paris [timezone_db] => Europe/Paris [date_type] => date ) ) ) [field_etichetta_box_lancio_news] => Array ( ) [field_img_box_lancio_news] => Array ( [und] => Array ( [0] => Array ( [fid] => 145386 [uid] => 26499 [filename] => download-1.jpg [uri] => public://download-1_0.jpg [filemime] => image/jpeg [filesize] => 10359 [status] => 1 [timestamp] => 1768471586 [type] => image [field_file_image_alt_text] => Array ( ) [field_file_image_title_text] => Array ( ) [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2048 ) ) ) [metadata] => Array ( [height] => 168 [width] => 299 ) [height] => 168 [width] => 299 [alt] => cranial X-rays [title] => ) ) ) [field_link_alla_news] => Array ( ) [field_link_esterno_news] => Array ( [und] => Array ( [0] => Array ( [value] => [format] => [safe_value] => ) ) ) [field_pagina_associata] => Array ( ) [field_link_etichetta] => Array ( ) [field_abstract_news] => Array ( [und] => Array ( [0] => Array ( [value] => An innovative research study by the University of Padua restores a key protein in the brain, improving symptoms of frontotemporal dementia and neuronal ceroid lipofuscinosis type 11 [format] => [safe_value] => An innovative research study by the University of Padua restores a key protein in the brain, improving symptoms of frontotemporal dementia and neuronal ceroid lipofuscinosis type 11 ) ) ) [field_allegato_news] => Array ( ) [field_categorie_news] => Array ( [und] => Array ( [0] => Array ( [tid] => 2296 ) ) ) [field_pub_date] => Array ( [und] => Array ( [0] => Array ( [value] => 2026-01-15T00:00:00 [value2] => 2027-01-15T00:00:00 [timezone] => Europe/Paris [timezone_db] => Europe/Paris [date_type] => date ) ) ) [field_layout_news] => Array ( [und] => Array ( [0] => Array ( [value] => single ) ) ) [field_testo_opzionale_news] => Array ( ) [field_url_en_page] => Array ( [und] => Array ( [0] => Array ( [value] => https://www.unipd.it/news/terapia-genica-scoperte-promettenti-contro-malattie-neurodegenerative [format] => [safe_value] => https://www.unipd.it/news/terapia-genica-scoperte-promettenti-contro-malattie-neurodegenerative ) ) ) [field_url_en_page_label] => Array ( [und] => Array ( [0] => Array ( [value] => Versione italiana [format] => [safe_value] => Versione italiana ) ) ) [path] => Array ( [pathauto] => 1 ) [name] => rossella.vezzosi [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515598 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => 2026-01-15T00:00:00 [timezone] => Europe/Paris [timezone_db] => Europe/Paris [date_type] => date ) ) [#formatter] => date_default [0] => Array ( [#markup] => Gio, 15/01/2026 ) ) )

Borsa di studio Renato Ugo - Scadenza 30 giugno 2026

Array ( [field_titolo_frontend] => Array ( [#theme] => field [#weight] => -4 [#title] => Titolo frontend [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_titolo_frontend [#field_type] => text_long [#field_translatable] => 0 [#entity_type] => node [#bundle] => elemento_accordion [#object] => stdClass Object ( [vid] => 515592 [uid] => 26499 [title] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126908 [type] => elemento_accordion [language] => it [created] => 1768478206 [changed] => 1768478206 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768478206 [revision_uid] => 26499 [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

La Fondazione Dompé lancia una borsa di studio per sostenere master, dottorati di ricerca e studi post-doc.

La borsa, del valore complessivo di 75.000 dollari, sarà assegnata ogni anno, a partire dall’anno accademico 2025 – 2026, a giovani studentesse e studenti, ricecatrici e e ricercatori impegnati in un percorso di Master, Dottorato di Ricerca (PhD) o Post Dottorato di Ricerca (Post-doc) in Chimica Organica, Chimica Inorganica o Chimica Farmaceutica presso università o centri di ricerca negli Stati Uniti.

La durata massima del finanziamento potrà essere di due anni per Master o Post-doc e di tre anni per un PhD.

Bando e informazioni

[summary] => [format] => 2 [safe_value] =>

La Fondazione Dompé lancia una borsa di studio per sostenere master, dottorati di ricerca e studi post-doc.

La borsa, del valore complessivo di 75.000 dollari, sarà assegnata ogni anno, a partire dall’anno accademico 2025 – 2026, a giovani studentesse e studenti, ricecatrici e e ricercatori impegnati in un percorso di Master, Dottorato di Ricerca (PhD) o Post Dottorato di Ricerca (Post-doc) in Chimica Organica, Chimica Inorganica o Chimica Farmaceutica presso università o centri di ricerca negli Stati Uniti.

La durata massima del finanziamento potrà essere di due anni per Master o Post-doc e di tre anni per un PhD.

Bando e informazioni

[safe_summary] => ) ) ) [field_accordion_state] => Array ( [und] => Array ( [0] => Array ( [value] => chiuso ) ) ) [field_allegato_element] => Array ( ) [field_outline_level] => Array ( [und] => Array ( [0] => Array ( [value] => h3 ) ) ) [field_titolo_frontend] => Array ( [und] => Array ( [0] => Array ( [value] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 [format] => [safe_value] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 ) ) ) [name] => rossella.vezzosi [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515592 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 [format] => [safe_value] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 ) ) [#formatter] => text_default [0] => Array ( [#markup] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 ) ) [body] => Array ( [#theme] => field [#weight] => -3 [#title] => Body [#access] => 1 [#label_display] => hidden [#view_mode] => teaser [#language] => und [#field_name] => body [#field_type] => text_with_summary [#field_translatable] => 0 [#entity_type] => node [#bundle] => elemento_accordion [#object] => stdClass Object ( [vid] => 515592 [uid] => 26499 [title] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126908 [type] => elemento_accordion [language] => it [created] => 1768478206 [changed] => 1768478206 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768478206 [revision_uid] => 26499 [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

La Fondazione Dompé lancia una borsa di studio per sostenere master, dottorati di ricerca e studi post-doc.

La borsa, del valore complessivo di 75.000 dollari, sarà assegnata ogni anno, a partire dall’anno accademico 2025 – 2026, a giovani studentesse e studenti, ricecatrici e e ricercatori impegnati in un percorso di Master, Dottorato di Ricerca (PhD) o Post Dottorato di Ricerca (Post-doc) in Chimica Organica, Chimica Inorganica o Chimica Farmaceutica presso università o centri di ricerca negli Stati Uniti.

La durata massima del finanziamento potrà essere di due anni per Master o Post-doc e di tre anni per un PhD.

Bando e informazioni

[summary] => [format] => 2 [safe_value] =>

La Fondazione Dompé lancia una borsa di studio per sostenere master, dottorati di ricerca e studi post-doc.

La borsa, del valore complessivo di 75.000 dollari, sarà assegnata ogni anno, a partire dall’anno accademico 2025 – 2026, a giovani studentesse e studenti, ricecatrici e e ricercatori impegnati in un percorso di Master, Dottorato di Ricerca (PhD) o Post Dottorato di Ricerca (Post-doc) in Chimica Organica, Chimica Inorganica o Chimica Farmaceutica presso università o centri di ricerca negli Stati Uniti.

La durata massima del finanziamento potrà essere di due anni per Master o Post-doc e di tre anni per un PhD.

Bando e informazioni

[safe_summary] => ) ) ) [field_accordion_state] => Array ( [und] => Array ( [0] => Array ( [value] => chiuso ) ) ) [field_allegato_element] => Array ( ) [field_outline_level] => Array ( [und] => Array ( [0] => Array ( [value] => h3 ) ) ) [field_titolo_frontend] => Array ( [und] => Array ( [0] => Array ( [value] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 [format] => [safe_value] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 ) ) ) [name] => rossella.vezzosi [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515592 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] =>

La Fondazione Dompé lancia una borsa di studio per sostenere master, dottorati di ricerca e studi post-doc.

La borsa, del valore complessivo di 75.000 dollari, sarà assegnata ogni anno, a partire dall’anno accademico 2025 – 2026, a giovani studentesse e studenti, ricecatrici e e ricercatori impegnati in un percorso di Master, Dottorato di Ricerca (PhD) o Post Dottorato di Ricerca (Post-doc) in Chimica Organica, Chimica Inorganica o Chimica Farmaceutica presso università o centri di ricerca negli Stati Uniti.

La durata massima del finanziamento potrà essere di due anni per Master o Post-doc e di tre anni per un PhD.

Bando e informazioni

[summary] => [format] => 2 [safe_value] =>

La Fondazione Dompé lancia una borsa di studio per sostenere master, dottorati di ricerca e studi post-doc.

La borsa, del valore complessivo di 75.000 dollari, sarà assegnata ogni anno, a partire dall’anno accademico 2025 – 2026, a giovani studentesse e studenti, ricecatrici e e ricercatori impegnati in un percorso di Master, Dottorato di Ricerca (PhD) o Post Dottorato di Ricerca (Post-doc) in Chimica Organica, Chimica Inorganica o Chimica Farmaceutica presso università o centri di ricerca negli Stati Uniti.

La durata massima del finanziamento potrà essere di due anni per Master o Post-doc e di tre anni per un PhD.

Bando e informazioni

[safe_summary] => ) ) [#formatter] => text_summary_or_trimmed [0] => Array ( [#markup] =>

La 

) ) [field_accordion_state] => Array ( [#theme] => field [#weight] => -1 [#title] => Aperto/Chiuso [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_accordion_state [#field_type] => list_text [#field_translatable] => 0 [#entity_type] => node [#bundle] => elemento_accordion [#object] => stdClass Object ( [vid] => 515592 [uid] => 26499 [title] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126908 [type] => elemento_accordion [language] => it [created] => 1768478206 [changed] => 1768478206 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768478206 [revision_uid] => 26499 [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

La Fondazione Dompé lancia una borsa di studio per sostenere master, dottorati di ricerca e studi post-doc.

La borsa, del valore complessivo di 75.000 dollari, sarà assegnata ogni anno, a partire dall’anno accademico 2025 – 2026, a giovani studentesse e studenti, ricecatrici e e ricercatori impegnati in un percorso di Master, Dottorato di Ricerca (PhD) o Post Dottorato di Ricerca (Post-doc) in Chimica Organica, Chimica Inorganica o Chimica Farmaceutica presso università o centri di ricerca negli Stati Uniti.

La durata massima del finanziamento potrà essere di due anni per Master o Post-doc e di tre anni per un PhD.

Bando e informazioni

[summary] => [format] => 2 [safe_value] =>

La Fondazione Dompé lancia una borsa di studio per sostenere master, dottorati di ricerca e studi post-doc.

La borsa, del valore complessivo di 75.000 dollari, sarà assegnata ogni anno, a partire dall’anno accademico 2025 – 2026, a giovani studentesse e studenti, ricecatrici e e ricercatori impegnati in un percorso di Master, Dottorato di Ricerca (PhD) o Post Dottorato di Ricerca (Post-doc) in Chimica Organica, Chimica Inorganica o Chimica Farmaceutica presso università o centri di ricerca negli Stati Uniti.

La durata massima del finanziamento potrà essere di due anni per Master o Post-doc e di tre anni per un PhD.

Bando e informazioni

[safe_summary] => ) ) ) [field_accordion_state] => Array ( [und] => Array ( [0] => Array ( [value] => chiuso ) ) ) [field_allegato_element] => Array ( ) [field_outline_level] => Array ( [und] => Array ( [0] => Array ( [value] => h3 ) ) ) [field_titolo_frontend] => Array ( [und] => Array ( [0] => Array ( [value] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 [format] => [safe_value] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 ) ) ) [name] => rossella.vezzosi [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515592 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => chiuso ) ) [#formatter] => text_default [0] => Array ( [#markup] => chiuso ) ) [links] => Array ( [#theme] => links__node [#pre_render] => Array ( [0] => drupal_pre_render_links ) [#attributes] => Array ( [class] => Array ( [0] => links [1] => inline ) ) [node] => Array ( [#theme] => links__node__node [#links] => Array ( [node-readmore] => Array ( [title] => Read more about Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 [href] => node/126908 [html] => 1 [attributes] => Array ( [rel] => tag [title] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 ) ) ) [#attributes] => Array ( [class] => Array ( [0] => links [1] => inline ) ) ) ) [field_outline_level] => Array ( [#theme] => field [#weight] => 31 [#title] => Livello outline [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_outline_level [#field_type] => list_text [#field_translatable] => 0 [#entity_type] => node [#bundle] => elemento_accordion [#object] => stdClass Object ( [vid] => 515592 [uid] => 26499 [title] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126908 [type] => elemento_accordion [language] => it [created] => 1768478206 [changed] => 1768478206 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768478206 [revision_uid] => 26499 [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

La Fondazione Dompé lancia una borsa di studio per sostenere master, dottorati di ricerca e studi post-doc.

La borsa, del valore complessivo di 75.000 dollari, sarà assegnata ogni anno, a partire dall’anno accademico 2025 – 2026, a giovani studentesse e studenti, ricecatrici e e ricercatori impegnati in un percorso di Master, Dottorato di Ricerca (PhD) o Post Dottorato di Ricerca (Post-doc) in Chimica Organica, Chimica Inorganica o Chimica Farmaceutica presso università o centri di ricerca negli Stati Uniti.

La durata massima del finanziamento potrà essere di due anni per Master o Post-doc e di tre anni per un PhD.

Bando e informazioni

[summary] => [format] => 2 [safe_value] =>

La Fondazione Dompé lancia una borsa di studio per sostenere master, dottorati di ricerca e studi post-doc.

La borsa, del valore complessivo di 75.000 dollari, sarà assegnata ogni anno, a partire dall’anno accademico 2025 – 2026, a giovani studentesse e studenti, ricecatrici e e ricercatori impegnati in un percorso di Master, Dottorato di Ricerca (PhD) o Post Dottorato di Ricerca (Post-doc) in Chimica Organica, Chimica Inorganica o Chimica Farmaceutica presso università o centri di ricerca negli Stati Uniti.

La durata massima del finanziamento potrà essere di due anni per Master o Post-doc e di tre anni per un PhD.

Bando e informazioni

[safe_summary] => ) ) ) [field_accordion_state] => Array ( [und] => Array ( [0] => Array ( [value] => chiuso ) ) ) [field_allegato_element] => Array ( ) [field_outline_level] => Array ( [und] => Array ( [0] => Array ( [value] => h3 ) ) ) [field_titolo_frontend] => Array ( [und] => Array ( [0] => Array ( [value] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 [format] => [safe_value] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 ) ) ) [name] => rossella.vezzosi [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515592 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => h3 ) ) [#formatter] => text_default [0] => Array ( [#markup] => h3 ) ) )

Borsa di studio Renato Ugo - Scadenza 30 giugno 2026

Array ( [field_titolo_frontend] => Array ( [#theme] => field [#weight] => -4 [#title] => Titolo frontend [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_titolo_frontend [#field_type] => text_long [#field_translatable] => 0 [#entity_type] => node [#bundle] => elemento_accordion [#object] => stdClass Object ( [vid] => 515587 [uid] => 26499 [title] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126907 [type] => elemento_accordion [language] => it [created] => 1768477768 [changed] => 1768477768 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768477768 [revision_uid] => 26499 [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

La Fondazione Dompé lancia una borsa di studio per sostenere master, dottorati di ricerca e studi post-doc.

La borsa, del valore complessivo di 75.000 dollari, sarà assegnata ogni anno, a partire dall'anno accademico 2025 – 2026, a giovani studentesse e sudenti, ricercatrici e  e ricercatori impegnati in un percorso di Master, Dottorato di Ricerca (PhD) o Post Dottorato di Ricerca (Post-doc) in Chimica Organica, Chimica Inorganica o Chimica Farmaceutica presso università o centri di ricerca negli Stati Uniti.

La durata massima del finanziamento potrà essere di due anni per Master o Post-doc e di tre anni per un PhD.

Bando e informazioni

[summary] => [format] => 2 [safe_value] =>

La Fondazione Dompé lancia una borsa di studio per sostenere master, dottorati di ricerca e studi post-doc.

La borsa, del valore complessivo di 75.000 dollari, sarà assegnata ogni anno, a partire dall'anno accademico 2025 – 2026, a giovani studentesse e sudenti, ricercatrici e  e ricercatori impegnati in un percorso di Master, Dottorato di Ricerca (PhD) o Post Dottorato di Ricerca (Post-doc) in Chimica Organica, Chimica Inorganica o Chimica Farmaceutica presso università o centri di ricerca negli Stati Uniti.

La durata massima del finanziamento potrà essere di due anni per Master o Post-doc e di tre anni per un PhD.

Bando e informazioni

[safe_summary] => ) ) ) [field_accordion_state] => Array ( [und] => Array ( [0] => Array ( [value] => chiuso ) ) ) [field_allegato_element] => Array ( ) [field_outline_level] => Array ( [und] => Array ( [0] => Array ( [value] => h3 ) ) ) [field_titolo_frontend] => Array ( [und] => Array ( [0] => Array ( [value] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 [format] => [safe_value] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 ) ) ) [name] => rossella.vezzosi [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515587 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 [format] => [safe_value] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 ) ) [#formatter] => text_default [0] => Array ( [#markup] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 ) ) [body] => Array ( [#theme] => field [#weight] => -3 [#title] => Body [#access] => 1 [#label_display] => hidden [#view_mode] => teaser [#language] => und [#field_name] => body [#field_type] => text_with_summary [#field_translatable] => 0 [#entity_type] => node [#bundle] => elemento_accordion [#object] => stdClass Object ( [vid] => 515587 [uid] => 26499 [title] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126907 [type] => elemento_accordion [language] => it [created] => 1768477768 [changed] => 1768477768 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768477768 [revision_uid] => 26499 [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

La Fondazione Dompé lancia una borsa di studio per sostenere master, dottorati di ricerca e studi post-doc.

La borsa, del valore complessivo di 75.000 dollari, sarà assegnata ogni anno, a partire dall'anno accademico 2025 – 2026, a giovani studentesse e sudenti, ricercatrici e  e ricercatori impegnati in un percorso di Master, Dottorato di Ricerca (PhD) o Post Dottorato di Ricerca (Post-doc) in Chimica Organica, Chimica Inorganica o Chimica Farmaceutica presso università o centri di ricerca negli Stati Uniti.

La durata massima del finanziamento potrà essere di due anni per Master o Post-doc e di tre anni per un PhD.

Bando e informazioni

[summary] => [format] => 2 [safe_value] =>

La Fondazione Dompé lancia una borsa di studio per sostenere master, dottorati di ricerca e studi post-doc.

La borsa, del valore complessivo di 75.000 dollari, sarà assegnata ogni anno, a partire dall'anno accademico 2025 – 2026, a giovani studentesse e sudenti, ricercatrici e  e ricercatori impegnati in un percorso di Master, Dottorato di Ricerca (PhD) o Post Dottorato di Ricerca (Post-doc) in Chimica Organica, Chimica Inorganica o Chimica Farmaceutica presso università o centri di ricerca negli Stati Uniti.

La durata massima del finanziamento potrà essere di due anni per Master o Post-doc e di tre anni per un PhD.

Bando e informazioni

[safe_summary] => ) ) ) [field_accordion_state] => Array ( [und] => Array ( [0] => Array ( [value] => chiuso ) ) ) [field_allegato_element] => Array ( ) [field_outline_level] => Array ( [und] => Array ( [0] => Array ( [value] => h3 ) ) ) [field_titolo_frontend] => Array ( [und] => Array ( [0] => Array ( [value] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 [format] => [safe_value] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 ) ) ) [name] => rossella.vezzosi [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515587 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] =>

La Fondazione Dompé lancia una borsa di studio per sostenere master, dottorati di ricerca e studi post-doc.

La borsa, del valore complessivo di 75.000 dollari, sarà assegnata ogni anno, a partire dall'anno accademico 2025 – 2026, a giovani studentesse e sudenti, ricercatrici e  e ricercatori impegnati in un percorso di Master, Dottorato di Ricerca (PhD) o Post Dottorato di Ricerca (Post-doc) in Chimica Organica, Chimica Inorganica o Chimica Farmaceutica presso università o centri di ricerca negli Stati Uniti.

La durata massima del finanziamento potrà essere di due anni per Master o Post-doc e di tre anni per un PhD.

Bando e informazioni

[summary] => [format] => 2 [safe_value] =>

La Fondazione Dompé lancia una borsa di studio per sostenere master, dottorati di ricerca e studi post-doc.

La borsa, del valore complessivo di 75.000 dollari, sarà assegnata ogni anno, a partire dall'anno accademico 2025 – 2026, a giovani studentesse e sudenti, ricercatrici e  e ricercatori impegnati in un percorso di Master, Dottorato di Ricerca (PhD) o Post Dottorato di Ricerca (Post-doc) in Chimica Organica, Chimica Inorganica o Chimica Farmaceutica presso università o centri di ricerca negli Stati Uniti.

La durata massima del finanziamento potrà essere di due anni per Master o Post-doc e di tre anni per un PhD.

Bando e informazioni

[safe_summary] => ) ) [#formatter] => text_summary_or_trimmed [0] => Array ( [#markup] =>

La Fondazione Dompé lancia una borsa di studio per sostenere master, dottorati di ricerca e studi post-doc.

La borsa, del valore complessivo di 75.000 dollari, sarà assegnata ogni anno, a partire dall'anno accademico 2025 – 2026, a giovani studentesse e sudenti, ricercatrici e  e ricercatori impegnati in un percorso di Master, Dottorato di Ricerca (PhD) o Post Dottorato di Ricerca (Post-doc) in Chimica Organica, Chimica Inorganica o Chimica Farmaceutica presso università o centri di ricerca negli Stati Uniti.

) ) [field_accordion_state] => Array ( [#theme] => field [#weight] => -1 [#title] => Aperto/Chiuso [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_accordion_state [#field_type] => list_text [#field_translatable] => 0 [#entity_type] => node [#bundle] => elemento_accordion [#object] => stdClass Object ( [vid] => 515587 [uid] => 26499 [title] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126907 [type] => elemento_accordion [language] => it [created] => 1768477768 [changed] => 1768477768 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768477768 [revision_uid] => 26499 [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

La Fondazione Dompé lancia una borsa di studio per sostenere master, dottorati di ricerca e studi post-doc.

La borsa, del valore complessivo di 75.000 dollari, sarà assegnata ogni anno, a partire dall'anno accademico 2025 – 2026, a giovani studentesse e sudenti, ricercatrici e  e ricercatori impegnati in un percorso di Master, Dottorato di Ricerca (PhD) o Post Dottorato di Ricerca (Post-doc) in Chimica Organica, Chimica Inorganica o Chimica Farmaceutica presso università o centri di ricerca negli Stati Uniti.

La durata massima del finanziamento potrà essere di due anni per Master o Post-doc e di tre anni per un PhD.

Bando e informazioni

[summary] => [format] => 2 [safe_value] =>

La Fondazione Dompé lancia una borsa di studio per sostenere master, dottorati di ricerca e studi post-doc.

La borsa, del valore complessivo di 75.000 dollari, sarà assegnata ogni anno, a partire dall'anno accademico 2025 – 2026, a giovani studentesse e sudenti, ricercatrici e  e ricercatori impegnati in un percorso di Master, Dottorato di Ricerca (PhD) o Post Dottorato di Ricerca (Post-doc) in Chimica Organica, Chimica Inorganica o Chimica Farmaceutica presso università o centri di ricerca negli Stati Uniti.

La durata massima del finanziamento potrà essere di due anni per Master o Post-doc e di tre anni per un PhD.

Bando e informazioni

[safe_summary] => ) ) ) [field_accordion_state] => Array ( [und] => Array ( [0] => Array ( [value] => chiuso ) ) ) [field_allegato_element] => Array ( ) [field_outline_level] => Array ( [und] => Array ( [0] => Array ( [value] => h3 ) ) ) [field_titolo_frontend] => Array ( [und] => Array ( [0] => Array ( [value] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 [format] => [safe_value] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 ) ) ) [name] => rossella.vezzosi [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515587 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => chiuso ) ) [#formatter] => text_default [0] => Array ( [#markup] => chiuso ) ) [links] => Array ( [#theme] => links__node [#pre_render] => Array ( [0] => drupal_pre_render_links ) [#attributes] => Array ( [class] => Array ( [0] => links [1] => inline ) ) [node] => Array ( [#theme] => links__node__node [#links] => Array ( [node-readmore] => Array ( [title] => Read more about Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 [href] => node/126907 [html] => 1 [attributes] => Array ( [rel] => tag [title] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 ) ) ) [#attributes] => Array ( [class] => Array ( [0] => links [1] => inline ) ) ) ) [field_outline_level] => Array ( [#theme] => field [#weight] => 31 [#title] => Livello outline [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_outline_level [#field_type] => list_text [#field_translatable] => 0 [#entity_type] => node [#bundle] => elemento_accordion [#object] => stdClass Object ( [vid] => 515587 [uid] => 26499 [title] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126907 [type] => elemento_accordion [language] => it [created] => 1768477768 [changed] => 1768477768 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768477768 [revision_uid] => 26499 [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

La Fondazione Dompé lancia una borsa di studio per sostenere master, dottorati di ricerca e studi post-doc.

La borsa, del valore complessivo di 75.000 dollari, sarà assegnata ogni anno, a partire dall'anno accademico 2025 – 2026, a giovani studentesse e sudenti, ricercatrici e  e ricercatori impegnati in un percorso di Master, Dottorato di Ricerca (PhD) o Post Dottorato di Ricerca (Post-doc) in Chimica Organica, Chimica Inorganica o Chimica Farmaceutica presso università o centri di ricerca negli Stati Uniti.

La durata massima del finanziamento potrà essere di due anni per Master o Post-doc e di tre anni per un PhD.

Bando e informazioni

[summary] => [format] => 2 [safe_value] =>

La Fondazione Dompé lancia una borsa di studio per sostenere master, dottorati di ricerca e studi post-doc.

La borsa, del valore complessivo di 75.000 dollari, sarà assegnata ogni anno, a partire dall'anno accademico 2025 – 2026, a giovani studentesse e sudenti, ricercatrici e  e ricercatori impegnati in un percorso di Master, Dottorato di Ricerca (PhD) o Post Dottorato di Ricerca (Post-doc) in Chimica Organica, Chimica Inorganica o Chimica Farmaceutica presso università o centri di ricerca negli Stati Uniti.

La durata massima del finanziamento potrà essere di due anni per Master o Post-doc e di tre anni per un PhD.

Bando e informazioni

[safe_summary] => ) ) ) [field_accordion_state] => Array ( [und] => Array ( [0] => Array ( [value] => chiuso ) ) ) [field_allegato_element] => Array ( ) [field_outline_level] => Array ( [und] => Array ( [0] => Array ( [value] => h3 ) ) ) [field_titolo_frontend] => Array ( [und] => Array ( [0] => Array ( [value] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 [format] => [safe_value] => Borsa di studio Renato Ugo - Scadenza 30 giugno 2026 ) ) ) [name] => rossella.vezzosi [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515587 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => h3 ) ) [#formatter] => text_default [0] => Array ( [#markup] => h3 ) ) )

Borsa di studio Renato Ugo - Scadenza 31 marzo 2026

Array ( [field_titolo_frontend] => Array ( [#theme] => field [#weight] => -4 [#title] => Titolo frontend [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_titolo_frontend [#field_type] => text_long [#field_translatable] => 0 [#entity_type] => node [#bundle] => elemento_accordion [#object] => stdClass Object ( [vid] => 515584 [uid] => 26499 [title] => Borsa di studio Renato Ugo - Scadenza 31 marzo 2026 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126906 [type] => elemento_accordion [language] => it [created] => 1768477421 [changed] => 1768477970 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768477970 [revision_uid] => 26499 [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

AIRI in collaborazione con i soci Farmindustria e Fondazione Bracco, eroga quattro borse di studio da 5 mila euro ciascuna per la migliore tesi di laurea sperimentale indirizzata alla ricerca industriale.

Le borse di studio sono destinate a giovani laureande e laureandi magistrali o a ciclo unico dei seguenti campi disciplinari:

LM-6 – Biologia; LM-7 – Biotecnologie agrarie; LM-8 – Biotecnologie industriali; LM-9 – Biotecnologie mediche, veterinarie e farmaceutiche; LM-13 – Chimica e tecnologia farmaceutiche / Farmacia e farmacia industriale; LM-21 – Ingegneria biomedica; LM-22 – Ingegneria chimica; LM-53 – Scienza e ingegneria dei materiali; LM-54 – Scienze chimiche; LM-60 – Scienze della natura; LM-71 – Scienze e tecnologie della chimica industriale. 

 Possono presentare la candidatura anche coloro che hanno conseguito la laurea dal 1° settembre 2025 e coloro che la conseguiranno entro il 31 marzo 2026.

Bando e informazioni

[summary] => [format] => 2 [safe_value] =>

AIRI in collaborazione con i soci Farmindustria e Fondazione Bracco, eroga quattro borse di studio da 5 mila euro ciascuna per la migliore tesi di laurea sperimentale indirizzata alla ricerca industriale.

Le borse di studio sono destinate a giovani laureande e laureandi magistrali o a ciclo unico dei seguenti campi disciplinari:

LM-6 – Biologia; LM-7 – Biotecnologie agrarie; LM-8 – Biotecnologie industriali; LM-9 – Biotecnologie mediche, veterinarie e farmaceutiche; LM-13 – Chimica e tecnologia farmaceutiche / Farmacia e farmacia industriale; LM-21 – Ingegneria biomedica; LM-22 – Ingegneria chimica; LM-53 – Scienza e ingegneria dei materiali; LM-54 – Scienze chimiche; LM-60 – Scienze della natura; LM-71 – Scienze e tecnologie della chimica industriale. 

 Possono presentare la candidatura anche coloro che hanno conseguito la laurea dal 1° settembre 2025 e coloro che la conseguiranno entro il 31 marzo 2026.

Bando e informazioni

[safe_summary] => ) ) ) [field_accordion_state] => Array ( [und] => Array ( [0] => Array ( [value] => chiuso ) ) ) [field_allegato_element] => Array ( ) [field_outline_level] => Array ( [und] => Array ( [0] => Array ( [value] => h3 ) ) ) [field_titolo_frontend] => Array ( [und] => Array ( [0] => Array ( [value] => Borsa di studio Renato Ugo - Scadenza 31 marzo 2026 [format] => [safe_value] => Borsa di studio Renato Ugo - Scadenza 31 marzo 2026 ) ) ) [name] => rossella.vezzosi [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515584 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => Borsa di studio Renato Ugo - Scadenza 31 marzo 2026 [format] => [safe_value] => Borsa di studio Renato Ugo - Scadenza 31 marzo 2026 ) ) [#formatter] => text_default [0] => Array ( [#markup] => Borsa di studio Renato Ugo - Scadenza 31 marzo 2026 ) ) [body] => Array ( [#theme] => field [#weight] => -3 [#title] => Body [#access] => 1 [#label_display] => hidden [#view_mode] => teaser [#language] => und [#field_name] => body [#field_type] => text_with_summary [#field_translatable] => 0 [#entity_type] => node [#bundle] => elemento_accordion [#object] => stdClass Object ( [vid] => 515584 [uid] => 26499 [title] => Borsa di studio Renato Ugo - Scadenza 31 marzo 2026 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126906 [type] => elemento_accordion [language] => it [created] => 1768477421 [changed] => 1768477970 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768477970 [revision_uid] => 26499 [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

AIRI in collaborazione con i soci Farmindustria e Fondazione Bracco, eroga quattro borse di studio da 5 mila euro ciascuna per la migliore tesi di laurea sperimentale indirizzata alla ricerca industriale.

Le borse di studio sono destinate a giovani laureande e laureandi magistrali o a ciclo unico dei seguenti campi disciplinari:

LM-6 – Biologia; LM-7 – Biotecnologie agrarie; LM-8 – Biotecnologie industriali; LM-9 – Biotecnologie mediche, veterinarie e farmaceutiche; LM-13 – Chimica e tecnologia farmaceutiche / Farmacia e farmacia industriale; LM-21 – Ingegneria biomedica; LM-22 – Ingegneria chimica; LM-53 – Scienza e ingegneria dei materiali; LM-54 – Scienze chimiche; LM-60 – Scienze della natura; LM-71 – Scienze e tecnologie della chimica industriale. 

 Possono presentare la candidatura anche coloro che hanno conseguito la laurea dal 1° settembre 2025 e coloro che la conseguiranno entro il 31 marzo 2026.

Bando e informazioni

[summary] => [format] => 2 [safe_value] =>

AIRI in collaborazione con i soci Farmindustria e Fondazione Bracco, eroga quattro borse di studio da 5 mila euro ciascuna per la migliore tesi di laurea sperimentale indirizzata alla ricerca industriale.

Le borse di studio sono destinate a giovani laureande e laureandi magistrali o a ciclo unico dei seguenti campi disciplinari:

LM-6 – Biologia; LM-7 – Biotecnologie agrarie; LM-8 – Biotecnologie industriali; LM-9 – Biotecnologie mediche, veterinarie e farmaceutiche; LM-13 – Chimica e tecnologia farmaceutiche / Farmacia e farmacia industriale; LM-21 – Ingegneria biomedica; LM-22 – Ingegneria chimica; LM-53 – Scienza e ingegneria dei materiali; LM-54 – Scienze chimiche; LM-60 – Scienze della natura; LM-71 – Scienze e tecnologie della chimica industriale. 

 Possono presentare la candidatura anche coloro che hanno conseguito la laurea dal 1° settembre 2025 e coloro che la conseguiranno entro il 31 marzo 2026.

Bando e informazioni

[safe_summary] => ) ) ) [field_accordion_state] => Array ( [und] => Array ( [0] => Array ( [value] => chiuso ) ) ) [field_allegato_element] => Array ( ) [field_outline_level] => Array ( [und] => Array ( [0] => Array ( [value] => h3 ) ) ) [field_titolo_frontend] => Array ( [und] => Array ( [0] => Array ( [value] => Borsa di studio Renato Ugo - Scadenza 31 marzo 2026 [format] => [safe_value] => Borsa di studio Renato Ugo - Scadenza 31 marzo 2026 ) ) ) [name] => rossella.vezzosi [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515584 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] =>

AIRI in collaborazione con i soci Farmindustria e Fondazione Bracco, eroga quattro borse di studio da 5 mila euro ciascuna per la migliore tesi di laurea sperimentale indirizzata alla ricerca industriale.

Le borse di studio sono destinate a giovani laureande e laureandi magistrali o a ciclo unico dei seguenti campi disciplinari:

LM-6 – Biologia; LM-7 – Biotecnologie agrarie; LM-8 – Biotecnologie industriali; LM-9 – Biotecnologie mediche, veterinarie e farmaceutiche; LM-13 – Chimica e tecnologia farmaceutiche / Farmacia e farmacia industriale; LM-21 – Ingegneria biomedica; LM-22 – Ingegneria chimica; LM-53 – Scienza e ingegneria dei materiali; LM-54 – Scienze chimiche; LM-60 – Scienze della natura; LM-71 – Scienze e tecnologie della chimica industriale. 

 Possono presentare la candidatura anche coloro che hanno conseguito la laurea dal 1° settembre 2025 e coloro che la conseguiranno entro il 31 marzo 2026.

Bando e informazioni

[summary] => [format] => 2 [safe_value] =>

AIRI in collaborazione con i soci Farmindustria e Fondazione Bracco, eroga quattro borse di studio da 5 mila euro ciascuna per la migliore tesi di laurea sperimentale indirizzata alla ricerca industriale.

Le borse di studio sono destinate a giovani laureande e laureandi magistrali o a ciclo unico dei seguenti campi disciplinari:

LM-6 – Biologia; LM-7 – Biotecnologie agrarie; LM-8 – Biotecnologie industriali; LM-9 – Biotecnologie mediche, veterinarie e farmaceutiche; LM-13 – Chimica e tecnologia farmaceutiche / Farmacia e farmacia industriale; LM-21 – Ingegneria biomedica; LM-22 – Ingegneria chimica; LM-53 – Scienza e ingegneria dei materiali; LM-54 – Scienze chimiche; LM-60 – Scienze della natura; LM-71 – Scienze e tecnologie della chimica industriale. 

 Possono presentare la candidatura anche coloro che hanno conseguito la laurea dal 1° settembre 2025 e coloro che la conseguiranno entro il 31 marzo 2026.

Bando e informazioni

[safe_summary] => ) ) [#formatter] => text_summary_or_trimmed [0] => Array ( [#markup] =>

) ) [field_accordion_state] => Array ( [#theme] => field [#weight] => -1 [#title] => Aperto/Chiuso [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_accordion_state [#field_type] => list_text [#field_translatable] => 0 [#entity_type] => node [#bundle] => elemento_accordion [#object] => stdClass Object ( [vid] => 515584 [uid] => 26499 [title] => Borsa di studio Renato Ugo - Scadenza 31 marzo 2026 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126906 [type] => elemento_accordion [language] => it [created] => 1768477421 [changed] => 1768477970 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768477970 [revision_uid] => 26499 [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

AIRI in collaborazione con i soci Farmindustria e Fondazione Bracco, eroga quattro borse di studio da 5 mila euro ciascuna per la migliore tesi di laurea sperimentale indirizzata alla ricerca industriale.

Le borse di studio sono destinate a giovani laureande e laureandi magistrali o a ciclo unico dei seguenti campi disciplinari:

LM-6 – Biologia; LM-7 – Biotecnologie agrarie; LM-8 – Biotecnologie industriali; LM-9 – Biotecnologie mediche, veterinarie e farmaceutiche; LM-13 – Chimica e tecnologia farmaceutiche / Farmacia e farmacia industriale; LM-21 – Ingegneria biomedica; LM-22 – Ingegneria chimica; LM-53 – Scienza e ingegneria dei materiali; LM-54 – Scienze chimiche; LM-60 – Scienze della natura; LM-71 – Scienze e tecnologie della chimica industriale. 

 Possono presentare la candidatura anche coloro che hanno conseguito la laurea dal 1° settembre 2025 e coloro che la conseguiranno entro il 31 marzo 2026.

Bando e informazioni

[summary] => [format] => 2 [safe_value] =>

AIRI in collaborazione con i soci Farmindustria e Fondazione Bracco, eroga quattro borse di studio da 5 mila euro ciascuna per la migliore tesi di laurea sperimentale indirizzata alla ricerca industriale.

Le borse di studio sono destinate a giovani laureande e laureandi magistrali o a ciclo unico dei seguenti campi disciplinari:

LM-6 – Biologia; LM-7 – Biotecnologie agrarie; LM-8 – Biotecnologie industriali; LM-9 – Biotecnologie mediche, veterinarie e farmaceutiche; LM-13 – Chimica e tecnologia farmaceutiche / Farmacia e farmacia industriale; LM-21 – Ingegneria biomedica; LM-22 – Ingegneria chimica; LM-53 – Scienza e ingegneria dei materiali; LM-54 – Scienze chimiche; LM-60 – Scienze della natura; LM-71 – Scienze e tecnologie della chimica industriale. 

 Possono presentare la candidatura anche coloro che hanno conseguito la laurea dal 1° settembre 2025 e coloro che la conseguiranno entro il 31 marzo 2026.

Bando e informazioni

[safe_summary] => ) ) ) [field_accordion_state] => Array ( [und] => Array ( [0] => Array ( [value] => chiuso ) ) ) [field_allegato_element] => Array ( ) [field_outline_level] => Array ( [und] => Array ( [0] => Array ( [value] => h3 ) ) ) [field_titolo_frontend] => Array ( [und] => Array ( [0] => Array ( [value] => Borsa di studio Renato Ugo - Scadenza 31 marzo 2026 [format] => [safe_value] => Borsa di studio Renato Ugo - Scadenza 31 marzo 2026 ) ) ) [name] => rossella.vezzosi [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515584 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => chiuso ) ) [#formatter] => text_default [0] => Array ( [#markup] => chiuso ) ) [links] => Array ( [#theme] => links__node [#pre_render] => Array ( [0] => drupal_pre_render_links ) [#attributes] => Array ( [class] => Array ( [0] => links [1] => inline ) ) [node] => Array ( [#theme] => links__node__node [#links] => Array ( [node-readmore] => Array ( [title] => Read more about Borsa di studio Renato Ugo - Scadenza 31 marzo 2026 [href] => node/126906 [html] => 1 [attributes] => Array ( [rel] => tag [title] => Borsa di studio Renato Ugo - Scadenza 31 marzo 2026 ) ) ) [#attributes] => Array ( [class] => Array ( [0] => links [1] => inline ) ) ) ) [field_outline_level] => Array ( [#theme] => field [#weight] => 31 [#title] => Livello outline [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_outline_level [#field_type] => list_text [#field_translatable] => 0 [#entity_type] => node [#bundle] => elemento_accordion [#object] => stdClass Object ( [vid] => 515584 [uid] => 26499 [title] => Borsa di studio Renato Ugo - Scadenza 31 marzo 2026 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126906 [type] => elemento_accordion [language] => it [created] => 1768477421 [changed] => 1768477970 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768477970 [revision_uid] => 26499 [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

AIRI in collaborazione con i soci Farmindustria e Fondazione Bracco, eroga quattro borse di studio da 5 mila euro ciascuna per la migliore tesi di laurea sperimentale indirizzata alla ricerca industriale.

Le borse di studio sono destinate a giovani laureande e laureandi magistrali o a ciclo unico dei seguenti campi disciplinari:

LM-6 – Biologia; LM-7 – Biotecnologie agrarie; LM-8 – Biotecnologie industriali; LM-9 – Biotecnologie mediche, veterinarie e farmaceutiche; LM-13 – Chimica e tecnologia farmaceutiche / Farmacia e farmacia industriale; LM-21 – Ingegneria biomedica; LM-22 – Ingegneria chimica; LM-53 – Scienza e ingegneria dei materiali; LM-54 – Scienze chimiche; LM-60 – Scienze della natura; LM-71 – Scienze e tecnologie della chimica industriale. 

 Possono presentare la candidatura anche coloro che hanno conseguito la laurea dal 1° settembre 2025 e coloro che la conseguiranno entro il 31 marzo 2026.

Bando e informazioni

[summary] => [format] => 2 [safe_value] =>

AIRI in collaborazione con i soci Farmindustria e Fondazione Bracco, eroga quattro borse di studio da 5 mila euro ciascuna per la migliore tesi di laurea sperimentale indirizzata alla ricerca industriale.

Le borse di studio sono destinate a giovani laureande e laureandi magistrali o a ciclo unico dei seguenti campi disciplinari:

LM-6 – Biologia; LM-7 – Biotecnologie agrarie; LM-8 – Biotecnologie industriali; LM-9 – Biotecnologie mediche, veterinarie e farmaceutiche; LM-13 – Chimica e tecnologia farmaceutiche / Farmacia e farmacia industriale; LM-21 – Ingegneria biomedica; LM-22 – Ingegneria chimica; LM-53 – Scienza e ingegneria dei materiali; LM-54 – Scienze chimiche; LM-60 – Scienze della natura; LM-71 – Scienze e tecnologie della chimica industriale. 

 Possono presentare la candidatura anche coloro che hanno conseguito la laurea dal 1° settembre 2025 e coloro che la conseguiranno entro il 31 marzo 2026.

Bando e informazioni

[safe_summary] => ) ) ) [field_accordion_state] => Array ( [und] => Array ( [0] => Array ( [value] => chiuso ) ) ) [field_allegato_element] => Array ( ) [field_outline_level] => Array ( [und] => Array ( [0] => Array ( [value] => h3 ) ) ) [field_titolo_frontend] => Array ( [und] => Array ( [0] => Array ( [value] => Borsa di studio Renato Ugo - Scadenza 31 marzo 2026 [format] => [safe_value] => Borsa di studio Renato Ugo - Scadenza 31 marzo 2026 ) ) ) [name] => rossella.vezzosi [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515584 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => h3 ) ) [#formatter] => text_default [0] => Array ( [#markup] => h3 ) ) )

Esito - Premio Pietro Bissacco

Array ( [field_titolo_frontend_all] => Array ( [#theme] => field [#weight] => -4 [#title] => Titolo frontend [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_titolo_frontend_all [#field_type] => text_long [#field_translatable] => 0 [#entity_type] => node [#bundle] => allegato [#object] => stdClass Object ( [vid] => 515577 [uid] => 29556 [title] => Esito - Premio Pietro Bissacco [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126905 [type] => allegato [language] => it [created] => 1768474427 [changed] => 1768474427 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768474427 [revision_uid] => 29556 [taxonomy_vocabulary_2] => Array ( ) [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_titolo_frontend_all] => Array ( [und] => Array ( [0] => Array ( [value] => Esito [format] => [safe_value] => Esito ) ) ) [field_allegato_file] => Array ( [und] => Array ( [0] => Array ( [fid] => 145389 [uid] => 29556 [filename] => Esito premio Bissacco.pdf [uri] => public://2026/Esito premio Bissacco.pdf [filemime] => application/pdf [filesize] => 107294 [status] => 1 [timestamp] => 1768474422 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [name] => jessica.russo [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515577 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => Esito [format] => [safe_value] => Esito ) ) [#formatter] => text_default [0] => Array ( [#markup] => Esito ) ) [field_allegato_file] => Array ( [#theme] => field [#weight] => -3 [#title] => File [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_allegato_file [#field_type] => file [#field_translatable] => 0 [#entity_type] => node [#bundle] => allegato [#object] => stdClass Object ( [vid] => 515577 [uid] => 29556 [title] => Esito - Premio Pietro Bissacco [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 126905 [type] => allegato [language] => it [created] => 1768474427 [changed] => 1768474427 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1768474427 [revision_uid] => 29556 [taxonomy_vocabulary_2] => Array ( ) [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_titolo_frontend_all] => Array ( [und] => Array ( [0] => Array ( [value] => Esito [format] => [safe_value] => Esito ) ) ) [field_allegato_file] => Array ( [und] => Array ( [0] => Array ( [fid] => 145389 [uid] => 29556 [filename] => Esito premio Bissacco.pdf [uri] => public://2026/Esito premio Bissacco.pdf [filemime] => application/pdf [filesize] => 107294 [status] => 1 [timestamp] => 1768474422 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [name] => jessica.russo [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 515577 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [fid] => 145389 [uid] => 29556 [filename] => Esito premio Bissacco.pdf [uri] => public://2026/Esito premio Bissacco.pdf [filemime] => application/pdf [filesize] => 107294 [status] => 1 [timestamp] => 1768474422 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) [#formatter] => file_default [0] => Array ( [#theme] => file_link [#file] => stdClass Object ( [fid] => 145389 [uid] => 29556 [filename] => Esito premio Bissacco.pdf [uri] => public://2026/Esito premio Bissacco.pdf [filemime] => application/pdf [filesize] => 107294 [status] => 1 [timestamp] => 1768474422 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2690 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [links] => Array ( [#theme] => links__node [#pre_render] => Array ( [0] => drupal_pre_render_links ) [#attributes] => Array ( [class] => Array ( [0] => links [1] => inline ) ) [node] => Array ( [#theme] => links__node__node [#links] => Array ( [node-readmore] => Array ( [title] => Read more about Esito - Premio Pietro Bissacco [href] => node/126905 [html] => 1 [attributes] => Array ( [rel] => tag [title] => Esito - Premio Pietro Bissacco ) ) ) [#attributes] => Array ( [class] => Array ( [0] => links [1] => inline ) ) ) ) )

Pagine