2019N52 Avviso Esito della prova

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I candidati che hanno partecipato alla prova di preselezione possono visionare la propria prova e il relativo correttore all'indirizzo http://www.meritoconcorsi.it/accesso-atti-on-line/ tramite il codice CABN e la password forniti il giorno della prova.

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I candidati che hanno partecipato alla prova di preselezione possono visionare la propria prova e il relativo correttore all'indirizzo http://www.meritoconcorsi.it/accesso-atti-on-line/ tramite il codice CABN e la password forniti il giorno della prova.

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I candidati che hanno partecipato alla prova di preselezione possono visionare la propria prova e il relativo correttore all'indirizzo http://www.meritoconcorsi.it/accesso-atti-on-line/ tramite il codice CABN e la password forniti il giorno della prova.

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

I candidati che hanno partecipato alla prova di preselezione possono visionare la propria prova e il relativo correttore all'indirizzo http://www.meritoconcorsi.it/accesso-atti-on-line/ tramite il codice CABN e la password forniti il giorno della prova.

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I candidati che hanno partecipato alla prova di preselezione possono visionare la propria prova e il relativo correttore all'indirizzo http://www.meritoconcorsi.it/accesso-atti-on-line/ tramite il codice CABN e la password forniti il giorno della prova.

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

I candidati che hanno partecipato alla prova di preselezione possono visionare la propria prova e il relativo correttore all'indirizzo http://www.meritoconcorsi.it/accesso-atti-on-line/ tramite il codice CABN e la password forniti il giorno della prova.

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I candidati che hanno partecipato alla prova di preselezione possono visionare la propria prova e il relativo correttore all'indirizzo http://www.meritoconcorsi.it/accesso-atti-on-line/ tramite il codice CABN e la password forniti il giorno della prova.

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2019S70 Graduatoria generale di merito (pubblicata all'albo ufficiale di Ateneo in data 16-12-2019)

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2019N52 Comunicazione data e sede colloquio

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MUSEI SOTTO L'ALBERO. Scienza e bellezza per tutti nelle iniziative dei Musei dell’Ateneo

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Regenerated tissue, thanks to a new gel

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A study by an international group of researchers led by Nicola Elvassore of the University of Padua and Veneto Institute of Molecular Medicine (VIMM) and Paolo De Coppi of the London based Great Ormond Street Institute of Child Health was recently published in Nature Communication. The group based at the University College London (UCL GOS ICH) developed a new gel capable of growing human tissue in the form of organoids that includes a compatible technique to be used for human treatments.

Grown from stem cells, organoids are structures generated in the laboratory that self-organize giving shape and function to tissues. Although the organoids present considerable potential in the replacement and repair of damaged or diseased tissue, the gels currently used for cultivating human organoids have proven to be unsuitable for use in patients.

To combat this issue the international team of researchers developed an extracellular matrix gel (ECM) using decellularized pig intestinal tissue.  This new ECM gel supports organoids cultures for the use in human treatment. The study also opens the idea to develop a wider range of organoids suitable for use in patients.

"The hydrogel ECM of decellularized tissue provides the same level of support to stem cells in the organoid culture of synthetic gels, but can only be obtained in a standardized and controlled way, allowing its use in a clinical environment,” says Nicola Elvassore, last co-author of the research.

"There is enormous potential for organoids to benefit from the sector of regenerative medicine and to improve the way in which we treat complex conditions, says Paolo De Coppi, Consultant Paediatric Surgeon at GOSH and Head of Stem Cells and Regenerative Medicine at UCL ICH.  “Our results open important perspectives on the use of tissues obtained from stem cells for the treatment of patients in different clinical conditions. This study could address new applications of organoids."

The gels used in the development of organoids play an important role in determining the characteristics of the final tissue produced. The researchers found that ECM hydrogel could support cell growth, not only in small intestinal tissue, but also in the liver, stomach, and pancreatic tissue. "The hydrogel ECM is able to reproduce the viscoelastic properties of soft tissues, allowing the expansion and differentiation of organoids.” concludes co-author of the publication, Monica Giomo of the Department of Industrial Engineering of the University of Padua.

Their results mark an important step towards the possibility for doctors to use laboratory-made organoids in the clinical setting. The research was made possible thanks to the University of Padua STARS funding programme and TWINNING program of the Department of Industrial Engineering. As well as the generous support by the Oak Foundation through the Great Ormond Street Hospital Children's Charity, and the Horizon 2020 funding on the INTENS project (INtestinal Tissue ENgineering Solution) for children with Short Bowel Syndrome.

The research was conducted by a team of researchers at VIMM (Veneto Institute of Molecular Medicine), the University of Padua, UCL GOS ICH, Francis Crick Institute, ShanghaiTech University, the Royal Netherlands Academy of Arts and Sciences, the University Medical Center Utrecht, Princess Maxima Center for Pediatric Oncology Netherlands, and the Telethon Institute of Genetics and Medicine

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A study by an international group of researchers led by Nicola Elvassore of the University of Padua and Veneto Institute of Molecular Medicine (VIMM) and Paolo De Coppi of the London based Great Ormond Street Institute of Child Health was recently published in Nature Communication. The group based at the University College London (UCL GOS ICH) developed a new gel capable of growing human tissue in the form of organoids that includes a compatible technique to be used for human treatments.

Grown from stem cells, organoids are structures generated in the laboratory that self-organize giving shape and function to tissues. Although the organoids present considerable potential in the replacement and repair of damaged or diseased tissue, the gels currently used for cultivating human organoids have proven to be unsuitable for use in patients.

To combat this issue the international team of researchers developed an extracellular matrix gel (ECM) using decellularized pig intestinal tissue.  This new ECM gel supports organoids cultures for the use in human treatment. The study also opens the idea to develop a wider range of organoids suitable for use in patients.

"The hydrogel ECM of decellularized tissue provides the same level of support to stem cells in the organoid culture of synthetic gels, but can only be obtained in a standardized and controlled way, allowing its use in a clinical environment,” says Nicola Elvassore, last co-author of the research.

"There is enormous potential for organoids to benefit from the sector of regenerative medicine and to improve the way in which we treat complex conditions, says Paolo De Coppi, Consultant Paediatric Surgeon at GOSH and Head of Stem Cells and Regenerative Medicine at UCL ICH.  “Our results open important perspectives on the use of tissues obtained from stem cells for the treatment of patients in different clinical conditions. This study could address new applications of organoids."

The gels used in the development of organoids play an important role in determining the characteristics of the final tissue produced. The researchers found that ECM hydrogel could support cell growth, not only in small intestinal tissue, but also in the liver, stomach, and pancreatic tissue. "The hydrogel ECM is able to reproduce the viscoelastic properties of soft tissues, allowing the expansion and differentiation of organoids.” concludes co-author of the publication, Monica Giomo of the Department of Industrial Engineering of the University of Padua.

Their results mark an important step towards the possibility for doctors to use laboratory-made organoids in the clinical setting. The research was made possible thanks to the University of Padua STARS funding programme and TWINNING program of the Department of Industrial Engineering. As well as the generous support by the Oak Foundation through the Great Ormond Street Hospital Children's Charity, and the Horizon 2020 funding on the INTENS project (INtestinal Tissue ENgineering Solution) for children with Short Bowel Syndrome.

The research was conducted by a team of researchers at VIMM (Veneto Institute of Molecular Medicine), the University of Padua, UCL GOS ICH, Francis Crick Institute, ShanghaiTech University, the Royal Netherlands Academy of Arts and Sciences, the University Medical Center Utrecht, Princess Maxima Center for Pediatric Oncology Netherlands, and the Telethon Institute of Genetics and Medicine

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A study by an international group of researchers led by Nicola Elvassore of the University of Padua and Veneto Institute of Molecular Medicine (VIMM) and Paolo De Coppi of the London based Great Ormond Street Institute of Child Health was recently published in Nature Communication. The group based at the University College London (UCL GOS ICH) developed a new gel capable of growing human tissue in the form of organoids that includes a compatible technique to be used for human treatments.

Grown from stem cells, organoids are structures generated in the laboratory that self-organize giving shape and function to tissues. Although the organoids present considerable potential in the replacement and repair of damaged or diseased tissue, the gels currently used for cultivating human organoids have proven to be unsuitable for use in patients.

To combat this issue the international team of researchers developed an extracellular matrix gel (ECM) using decellularized pig intestinal tissue.  This new ECM gel supports organoids cultures for the use in human treatment. The study also opens the idea to develop a wider range of organoids suitable for use in patients.

"The hydrogel ECM of decellularized tissue provides the same level of support to stem cells in the organoid culture of synthetic gels, but can only be obtained in a standardized and controlled way, allowing its use in a clinical environment,” says Nicola Elvassore, last co-author of the research.

"There is enormous potential for organoids to benefit from the sector of regenerative medicine and to improve the way in which we treat complex conditions, says Paolo De Coppi, Consultant Paediatric Surgeon at GOSH and Head of Stem Cells and Regenerative Medicine at UCL ICH.  “Our results open important perspectives on the use of tissues obtained from stem cells for the treatment of patients in different clinical conditions. This study could address new applications of organoids."

The gels used in the development of organoids play an important role in determining the characteristics of the final tissue produced. The researchers found that ECM hydrogel could support cell growth, not only in small intestinal tissue, but also in the liver, stomach, and pancreatic tissue. "The hydrogel ECM is able to reproduce the viscoelastic properties of soft tissues, allowing the expansion and differentiation of organoids.” concludes co-author of the publication, Monica Giomo of the Department of Industrial Engineering of the University of Padua.

Their results mark an important step towards the possibility for doctors to use laboratory-made organoids in the clinical setting. The research was made possible thanks to the University of Padua STARS funding programme and TWINNING program of the Department of Industrial Engineering. As well as the generous support by the Oak Foundation through the Great Ormond Street Hospital Children's Charity, and the Horizon 2020 funding on the INTENS project (INtestinal Tissue ENgineering Solution) for children with Short Bowel Syndrome.

The research was conducted by a team of researchers at VIMM (Veneto Institute of Molecular Medicine), the University of Padua, UCL GOS ICH, Francis Crick Institute, ShanghaiTech University, the Royal Netherlands Academy of Arts and Sciences, the University Medical Center Utrecht, Princess Maxima Center for Pediatric Oncology Netherlands, and the Telethon Institute of Genetics and Medicine

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A study by an international group of researchers led by Nicola Elvassore of the University of Padua and Veneto Institute of Molecular Medicine (VIMM) and Paolo De Coppi of the London based Great Ormond Street Institute of Child Health was recently published in Nature Communication. The group based at the University College London (UCL GOS ICH) developed a new gel capable of growing human tissue in the form of organoids that includes a compatible technique to be used for human treatments.

Grown from stem cells, organoids are structures generated in the laboratory that self-organize giving shape and function to tissues. Although the organoids present considerable potential in the replacement and repair of damaged or diseased tissue, the gels currently used for cultivating human organoids have proven to be unsuitable for use in patients.

To combat this issue the international team of researchers developed an extracellular matrix gel (ECM) using decellularized pig intestinal tissue.  This new ECM gel supports organoids cultures for the use in human treatment. The study also opens the idea to develop a wider range of organoids suitable for use in patients.

"The hydrogel ECM of decellularized tissue provides the same level of support to stem cells in the organoid culture of synthetic gels, but can only be obtained in a standardized and controlled way, allowing its use in a clinical environment,” says Nicola Elvassore, last co-author of the research.

"There is enormous potential for organoids to benefit from the sector of regenerative medicine and to improve the way in which we treat complex conditions, says Paolo De Coppi, Consultant Paediatric Surgeon at GOSH and Head of Stem Cells and Regenerative Medicine at UCL ICH.  “Our results open important perspectives on the use of tissues obtained from stem cells for the treatment of patients in different clinical conditions. This study could address new applications of organoids."

The gels used in the development of organoids play an important role in determining the characteristics of the final tissue produced. The researchers found that ECM hydrogel could support cell growth, not only in small intestinal tissue, but also in the liver, stomach, and pancreatic tissue. "The hydrogel ECM is able to reproduce the viscoelastic properties of soft tissues, allowing the expansion and differentiation of organoids.” concludes co-author of the publication, Monica Giomo of the Department of Industrial Engineering of the University of Padua.

Their results mark an important step towards the possibility for doctors to use laboratory-made organoids in the clinical setting. The research was made possible thanks to the University of Padua STARS funding programme and TWINNING program of the Department of Industrial Engineering. As well as the generous support by the Oak Foundation through the Great Ormond Street Hospital Children's Charity, and the Horizon 2020 funding on the INTENS project (INtestinal Tissue ENgineering Solution) for children with Short Bowel Syndrome.

The research was conducted by a team of researchers at VIMM (Veneto Institute of Molecular Medicine), the University of Padua, UCL GOS ICH, Francis Crick Institute, ShanghaiTech University, the Royal Netherlands Academy of Arts and Sciences, the University Medical Center Utrecht, Princess Maxima Center for Pediatric Oncology Netherlands, and the Telethon Institute of Genetics and Medicine

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A study by an international group of researchers led by Nicola Elvassore of the University of Padua and Veneto Institute of Molecular Medicine (VIMM) and Paolo De Coppi of the London based Great Ormond Street Institute of Child Health was recently published in Nature Communication. The group based at the University College London (UCL GOS ICH) developed a new gel capable of growing human tissue in the form of organoids that includes a compatible technique to be used for human treatments.

Grown from stem cells, organoids are structures generated in the laboratory that self-organize giving shape and function to tissues. Although the organoids present considerable potential in the replacement and repair of damaged or diseased tissue, the gels currently used for cultivating human organoids have proven to be unsuitable for use in patients.

To combat this issue the international team of researchers developed an extracellular matrix gel (ECM) using decellularized pig intestinal tissue.  This new ECM gel supports organoids cultures for the use in human treatment. The study also opens the idea to develop a wider range of organoids suitable for use in patients.

"The hydrogel ECM of decellularized tissue provides the same level of support to stem cells in the organoid culture of synthetic gels, but can only be obtained in a standardized and controlled way, allowing its use in a clinical environment,” says Nicola Elvassore, last co-author of the research.

"There is enormous potential for organoids to benefit from the sector of regenerative medicine and to improve the way in which we treat complex conditions, says Paolo De Coppi, Consultant Paediatric Surgeon at GOSH and Head of Stem Cells and Regenerative Medicine at UCL ICH.  “Our results open important perspectives on the use of tissues obtained from stem cells for the treatment of patients in different clinical conditions. This study could address new applications of organoids."

The gels used in the development of organoids play an important role in determining the characteristics of the final tissue produced. The researchers found that ECM hydrogel could support cell growth, not only in small intestinal tissue, but also in the liver, stomach, and pancreatic tissue. "The hydrogel ECM is able to reproduce the viscoelastic properties of soft tissues, allowing the expansion and differentiation of organoids.” concludes co-author of the publication, Monica Giomo of the Department of Industrial Engineering of the University of Padua.

Their results mark an important step towards the possibility for doctors to use laboratory-made organoids in the clinical setting. The research was made possible thanks to the University of Padua STARS funding programme and TWINNING program of the Department of Industrial Engineering. As well as the generous support by the Oak Foundation through the Great Ormond Street Hospital Children's Charity, and the Horizon 2020 funding on the INTENS project (INtestinal Tissue ENgineering Solution) for children with Short Bowel Syndrome.

The research was conducted by a team of researchers at VIMM (Veneto Institute of Molecular Medicine), the University of Padua, UCL GOS ICH, Francis Crick Institute, ShanghaiTech University, the Royal Netherlands Academy of Arts and Sciences, the University Medical Center Utrecht, Princess Maxima Center for Pediatric Oncology Netherlands, and the Telethon Institute of Genetics and Medicine

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A study by an international group of researchers led by Nicola Elvassore of the University of Padua and Veneto Institute of Molecular Medicine (VIMM) and Paolo De Coppi of the London based Great Ormond Street Institute of Child Health was recently published in Nature Communication. The group based at the University College London (UCL GOS ICH) developed a new gel capable of growing human tissue in the form of organoids that includes a compatible technique to be used for human treatments.

Grown from stem cells, organoids are structures generated in the laboratory that self-organize giving shape and function to tissues. Although the organoids present considerable potential in the replacement and repair of damaged or diseased tissue, the gels currently used for cultivating human organoids have proven to be unsuitable for use in patients.

To combat this issue the international team of researchers developed an extracellular matrix gel (ECM) using decellularized pig intestinal tissue.  This new ECM gel supports organoids cultures for the use in human treatment. The study also opens the idea to develop a wider range of organoids suitable for use in patients.

"The hydrogel ECM of decellularized tissue provides the same level of support to stem cells in the organoid culture of synthetic gels, but can only be obtained in a standardized and controlled way, allowing its use in a clinical environment,” says Nicola Elvassore, last co-author of the research.

"There is enormous potential for organoids to benefit from the sector of regenerative medicine and to improve the way in which we treat complex conditions, says Paolo De Coppi, Consultant Paediatric Surgeon at GOSH and Head of Stem Cells and Regenerative Medicine at UCL ICH.  “Our results open important perspectives on the use of tissues obtained from stem cells for the treatment of patients in different clinical conditions. This study could address new applications of organoids."

The gels used in the development of organoids play an important role in determining the characteristics of the final tissue produced. The researchers found that ECM hydrogel could support cell growth, not only in small intestinal tissue, but also in the liver, stomach, and pancreatic tissue. "The hydrogel ECM is able to reproduce the viscoelastic properties of soft tissues, allowing the expansion and differentiation of organoids.” concludes co-author of the publication, Monica Giomo of the Department of Industrial Engineering of the University of Padua.

Their results mark an important step towards the possibility for doctors to use laboratory-made organoids in the clinical setting. The research was made possible thanks to the University of Padua STARS funding programme and TWINNING program of the Department of Industrial Engineering. As well as the generous support by the Oak Foundation through the Great Ormond Street Hospital Children's Charity, and the Horizon 2020 funding on the INTENS project (INtestinal Tissue ENgineering Solution) for children with Short Bowel Syndrome.

The research was conducted by a team of researchers at VIMM (Veneto Institute of Molecular Medicine), the University of Padua, UCL GOS ICH, Francis Crick Institute, ShanghaiTech University, the Royal Netherlands Academy of Arts and Sciences, the University Medical Center Utrecht, Princess Maxima Center for Pediatric Oncology Netherlands, and the Telethon Institute of Genetics and Medicine

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A study by an international group of researchers led by Nicola Elvassore of the University of Padua and Veneto Institute of Molecular Medicine (VIMM) and Paolo De Coppi of the London based Great Ormond Street Institute of Child Health was recently published in Nature Communication.

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A study by an international group of researchers led by Nicola Elvassore of the University of Padua and Veneto Institute of Molecular Medicine (VIMM) and Paolo De Coppi of the London based Great Ormond Street Institute of Child Health was recently published in Nature Communication. The group based at the University College London (UCL GOS ICH) developed a new gel capable of growing human tissue in the form of organoids that includes a compatible technique to be used for human treatments.

Grown from stem cells, organoids are structures generated in the laboratory that self-organize giving shape and function to tissues. Although the organoids present considerable potential in the replacement and repair of damaged or diseased tissue, the gels currently used for cultivating human organoids have proven to be unsuitable for use in patients.

To combat this issue the international team of researchers developed an extracellular matrix gel (ECM) using decellularized pig intestinal tissue.  This new ECM gel supports organoids cultures for the use in human treatment. The study also opens the idea to develop a wider range of organoids suitable for use in patients.

"The hydrogel ECM of decellularized tissue provides the same level of support to stem cells in the organoid culture of synthetic gels, but can only be obtained in a standardized and controlled way, allowing its use in a clinical environment,” says Nicola Elvassore, last co-author of the research.

"There is enormous potential for organoids to benefit from the sector of regenerative medicine and to improve the way in which we treat complex conditions, says Paolo De Coppi, Consultant Paediatric Surgeon at GOSH and Head of Stem Cells and Regenerative Medicine at UCL ICH.  “Our results open important perspectives on the use of tissues obtained from stem cells for the treatment of patients in different clinical conditions. This study could address new applications of organoids."

The gels used in the development of organoids play an important role in determining the characteristics of the final tissue produced. The researchers found that ECM hydrogel could support cell growth, not only in small intestinal tissue, but also in the liver, stomach, and pancreatic tissue. "The hydrogel ECM is able to reproduce the viscoelastic properties of soft tissues, allowing the expansion and differentiation of organoids.” concludes co-author of the publication, Monica Giomo of the Department of Industrial Engineering of the University of Padua.

Their results mark an important step towards the possibility for doctors to use laboratory-made organoids in the clinical setting. The research was made possible thanks to the University of Padua STARS funding programme and TWINNING program of the Department of Industrial Engineering. As well as the generous support by the Oak Foundation through the Great Ormond Street Hospital Children's Charity, and the Horizon 2020 funding on the INTENS project (INtestinal Tissue ENgineering Solution) for children with Short Bowel Syndrome.

The research was conducted by a team of researchers at VIMM (Veneto Institute of Molecular Medicine), the University of Padua, UCL GOS ICH, Francis Crick Institute, ShanghaiTech University, the Royal Netherlands Academy of Arts and Sciences, the University Medical Center Utrecht, Princess Maxima Center for Pediatric Oncology Netherlands, and the Telethon Institute of Genetics and Medicine

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A study by an international group of researchers led by Nicola Elvassore of the University of Padua and Veneto Institute of Molecular Medicine (VIMM) and Paolo De Coppi of the London based Great Ormond Street Institute of Child Health was recently published in Nature Communication. The group based at the University College London (UCL GOS ICH) developed a new gel capable of growing human tissue in the form of organoids that includes a compatible technique to be used for human treatments.

Grown from stem cells, organoids are structures generated in the laboratory that self-organize giving shape and function to tissues. Although the organoids present considerable potential in the replacement and repair of damaged or diseased tissue, the gels currently used for cultivating human organoids have proven to be unsuitable for use in patients.

To combat this issue the international team of researchers developed an extracellular matrix gel (ECM) using decellularized pig intestinal tissue.  This new ECM gel supports organoids cultures for the use in human treatment. The study also opens the idea to develop a wider range of organoids suitable for use in patients.

"The hydrogel ECM of decellularized tissue provides the same level of support to stem cells in the organoid culture of synthetic gels, but can only be obtained in a standardized and controlled way, allowing its use in a clinical environment,” says Nicola Elvassore, last co-author of the research.

"There is enormous potential for organoids to benefit from the sector of regenerative medicine and to improve the way in which we treat complex conditions, says Paolo De Coppi, Consultant Paediatric Surgeon at GOSH and Head of Stem Cells and Regenerative Medicine at UCL ICH.  “Our results open important perspectives on the use of tissues obtained from stem cells for the treatment of patients in different clinical conditions. This study could address new applications of organoids."

The gels used in the development of organoids play an important role in determining the characteristics of the final tissue produced. The researchers found that ECM hydrogel could support cell growth, not only in small intestinal tissue, but also in the liver, stomach, and pancreatic tissue. "The hydrogel ECM is able to reproduce the viscoelastic properties of soft tissues, allowing the expansion and differentiation of organoids.” concludes co-author of the publication, Monica Giomo of the Department of Industrial Engineering of the University of Padua.

Their results mark an important step towards the possibility for doctors to use laboratory-made organoids in the clinical setting. The research was made possible thanks to the University of Padua STARS funding programme and TWINNING program of the Department of Industrial Engineering. As well as the generous support by the Oak Foundation through the Great Ormond Street Hospital Children's Charity, and the Horizon 2020 funding on the INTENS project (INtestinal Tissue ENgineering Solution) for children with Short Bowel Syndrome.

The research was conducted by a team of researchers at VIMM (Veneto Institute of Molecular Medicine), the University of Padua, UCL GOS ICH, Francis Crick Institute, ShanghaiTech University, the Royal Netherlands Academy of Arts and Sciences, the University Medical Center Utrecht, Princess Maxima Center for Pediatric Oncology Netherlands, and the Telethon Institute of Genetics and Medicine

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A study by an international group of researchers led by Nicola Elvassore of the University of Padua and Veneto Institute of Molecular Medicine (VIMM) and Paolo De Coppi of the London based Great Ormond Street Institute of Child Health was recently published in Nature Communication. The group based at the University College London (UCL GOS ICH) developed a new gel capable of growing human tissue in the form of organoids that includes a compatible technique to be used for human treatments.

Grown from stem cells, organoids are structures generated in the laboratory that self-organize giving shape and function to tissues. Although the organoids present considerable potential in the replacement and repair of damaged or diseased tissue, the gels currently used for cultivating human organoids have proven to be unsuitable for use in patients.

To combat this issue the international team of researchers developed an extracellular matrix gel (ECM) using decellularized pig intestinal tissue.  This new ECM gel supports organoids cultures for the use in human treatment. The study also opens the idea to develop a wider range of organoids suitable for use in patients.

"The hydrogel ECM of decellularized tissue provides the same level of support to stem cells in the organoid culture of synthetic gels, but can only be obtained in a standardized and controlled way, allowing its use in a clinical environment,” says Nicola Elvassore, last co-author of the research.

"There is enormous potential for organoids to benefit from the sector of regenerative medicine and to improve the way in which we treat complex conditions, says Paolo De Coppi, Consultant Paediatric Surgeon at GOSH and Head of Stem Cells and Regenerative Medicine at UCL ICH.  “Our results open important perspectives on the use of tissues obtained from stem cells for the treatment of patients in different clinical conditions. This study could address new applications of organoids."

The gels used in the development of organoids play an important role in determining the characteristics of the final tissue produced. The researchers found that ECM hydrogel could support cell growth, not only in small intestinal tissue, but also in the liver, stomach, and pancreatic tissue. "The hydrogel ECM is able to reproduce the viscoelastic properties of soft tissues, allowing the expansion and differentiation of organoids.” concludes co-author of the publication, Monica Giomo of the Department of Industrial Engineering of the University of Padua.

Their results mark an important step towards the possibility for doctors to use laboratory-made organoids in the clinical setting. The research was made possible thanks to the University of Padua STARS funding programme and TWINNING program of the Department of Industrial Engineering. As well as the generous support by the Oak Foundation through the Great Ormond Street Hospital Children's Charity, and the Horizon 2020 funding on the INTENS project (INtestinal Tissue ENgineering Solution) for children with Short Bowel Syndrome.

The research was conducted by a team of researchers at VIMM (Veneto Institute of Molecular Medicine), the University of Padua, UCL GOS ICH, Francis Crick Institute, ShanghaiTech University, the Royal Netherlands Academy of Arts and Sciences, the University Medical Center Utrecht, Princess Maxima Center for Pediatric Oncology Netherlands, and the Telethon Institute of Genetics and Medicine

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A study by an international group of researchers led by Nicola Elvassore of the University of Padua and Veneto Institute of Molecular Medicine (VIMM) and Paolo De Coppi of the London based Great Ormond Street Institute of Child Health was recently published in Nature Communication. The group based at the University College London (UCL GOS ICH) developed a new gel capable of growing human tissue in the form of organoids that includes a compatible technique to be used for human treatments.

Grown from stem cells, organoids are structures generated in the laboratory that self-organize giving shape and function to tissues. Although the organoids present considerable potential in the replacement and repair of damaged or diseased tissue, the gels currently used for cultivating human organoids have proven to be unsuitable for use in patients.

To combat this issue the international team of researchers developed an extracellular matrix gel (ECM) using decellularized pig intestinal tissue.  This new ECM gel supports organoids cultures for the use in human treatment. The study also opens the idea to develop a wider range of organoids suitable for use in patients.

"The hydrogel ECM of decellularized tissue provides the same level of support to stem cells in the organoid culture of synthetic gels, but can only be obtained in a standardized and controlled way, allowing its use in a clinical environment,” says Nicola Elvassore, last co-author of the research.

"There is enormous potential for organoids to benefit from the sector of regenerative medicine and to improve the way in which we treat complex conditions, says Paolo De Coppi, Consultant Paediatric Surgeon at GOSH and Head of Stem Cells and Regenerative Medicine at UCL ICH.  “Our results open important perspectives on the use of tissues obtained from stem cells for the treatment of patients in different clinical conditions. This study could address new applications of organoids."

The gels used in the development of organoids play an important role in determining the characteristics of the final tissue produced. The researchers found that ECM hydrogel could support cell growth, not only in small intestinal tissue, but also in the liver, stomach, and pancreatic tissue. "The hydrogel ECM is able to reproduce the viscoelastic properties of soft tissues, allowing the expansion and differentiation of organoids.” concludes co-author of the publication, Monica Giomo of the Department of Industrial Engineering of the University of Padua.

Their results mark an important step towards the possibility for doctors to use laboratory-made organoids in the clinical setting. The research was made possible thanks to the University of Padua STARS funding programme and TWINNING program of the Department of Industrial Engineering. As well as the generous support by the Oak Foundation through the Great Ormond Street Hospital Children's Charity, and the Horizon 2020 funding on the INTENS project (INtestinal Tissue ENgineering Solution) for children with Short Bowel Syndrome.

The research was conducted by a team of researchers at VIMM (Veneto Institute of Molecular Medicine), the University of Padua, UCL GOS ICH, Francis Crick Institute, ShanghaiTech University, the Royal Netherlands Academy of Arts and Sciences, the University Medical Center Utrecht, Princess Maxima Center for Pediatric Oncology Netherlands, and the Telethon Institute of Genetics and Medicine

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A study by an international group of researchers led by Nicola Elvassore of the University of Padua and Veneto Institute of Molecular Medicine (VIMM) and Paolo De Coppi of the London based Great Ormond Street Institute of Child Health was recently published in Nature Communication. The group based at the University College London (UCL GOS ICH) developed a new gel capable of growing human tissue in the form of organoids that includes a compatible technique to be used for human treatments.

Grown from stem cells, organoids are structures generated in the laboratory that self-organize giving shape and function to tissues. Although the organoids present considerable potential in the replacement and repair of damaged or diseased tissue, the gels currently used for cultivating human organoids have proven to be unsuitable for use in patients.

To combat this issue the international team of researchers developed an extracellular matrix gel (ECM) using decellularized pig intestinal tissue.  This new ECM gel supports organoids cultures for the use in human treatment. The study also opens the idea to develop a wider range of organoids suitable for use in patients.

"The hydrogel ECM of decellularized tissue provides the same level of support to stem cells in the organoid culture of synthetic gels, but can only be obtained in a standardized and controlled way, allowing its use in a clinical environment,” says Nicola Elvassore, last co-author of the research.

"There is enormous potential for organoids to benefit from the sector of regenerative medicine and to improve the way in which we treat complex conditions, says Paolo De Coppi, Consultant Paediatric Surgeon at GOSH and Head of Stem Cells and Regenerative Medicine at UCL ICH.  “Our results open important perspectives on the use of tissues obtained from stem cells for the treatment of patients in different clinical conditions. This study could address new applications of organoids."

The gels used in the development of organoids play an important role in determining the characteristics of the final tissue produced. The researchers found that ECM hydrogel could support cell growth, not only in small intestinal tissue, but also in the liver, stomach, and pancreatic tissue. "The hydrogel ECM is able to reproduce the viscoelastic properties of soft tissues, allowing the expansion and differentiation of organoids.” concludes co-author of the publication, Monica Giomo of the Department of Industrial Engineering of the University of Padua.

Their results mark an important step towards the possibility for doctors to use laboratory-made organoids in the clinical setting. The research was made possible thanks to the University of Padua STARS funding programme and TWINNING program of the Department of Industrial Engineering. As well as the generous support by the Oak Foundation through the Great Ormond Street Hospital Children's Charity, and the Horizon 2020 funding on the INTENS project (INtestinal Tissue ENgineering Solution) for children with Short Bowel Syndrome.

The research was conducted by a team of researchers at VIMM (Veneto Institute of Molecular Medicine), the University of Padua, UCL GOS ICH, Francis Crick Institute, ShanghaiTech University, the Royal Netherlands Academy of Arts and Sciences, the University Medical Center Utrecht, Princess Maxima Center for Pediatric Oncology Netherlands, and the Telethon Institute of Genetics and Medicine

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A study by an international group of researchers led by Nicola Elvassore of the University of Padua and Veneto Institute of Molecular Medicine (VIMM) and Paolo De Coppi of the London based Great Ormond Street Institute of Child Health was recently published in Nature Communication. The group based at the University College London (UCL GOS ICH) developed a new gel capable of growing human tissue in the form of organoids that includes a compatible technique to be used for human treatments.

Grown from stem cells, organoids are structures generated in the laboratory that self-organize giving shape and function to tissues. Although the organoids present considerable potential in the replacement and repair of damaged or diseased tissue, the gels currently used for cultivating human organoids have proven to be unsuitable for use in patients.

To combat this issue the international team of researchers developed an extracellular matrix gel (ECM) using decellularized pig intestinal tissue.  This new ECM gel supports organoids cultures for the use in human treatment. The study also opens the idea to develop a wider range of organoids suitable for use in patients.

"The hydrogel ECM of decellularized tissue provides the same level of support to stem cells in the organoid culture of synthetic gels, but can only be obtained in a standardized and controlled way, allowing its use in a clinical environment,” says Nicola Elvassore, last co-author of the research.

"There is enormous potential for organoids to benefit from the sector of regenerative medicine and to improve the way in which we treat complex conditions, says Paolo De Coppi, Consultant Paediatric Surgeon at GOSH and Head of Stem Cells and Regenerative Medicine at UCL ICH.  “Our results open important perspectives on the use of tissues obtained from stem cells for the treatment of patients in different clinical conditions. This study could address new applications of organoids."

The gels used in the development of organoids play an important role in determining the characteristics of the final tissue produced. The researchers found that ECM hydrogel could support cell growth, not only in small intestinal tissue, but also in the liver, stomach, and pancreatic tissue. "The hydrogel ECM is able to reproduce the viscoelastic properties of soft tissues, allowing the expansion and differentiation of organoids.” concludes co-author of the publication, Monica Giomo of the Department of Industrial Engineering of the University of Padua.

Their results mark an important step towards the possibility for doctors to use laboratory-made organoids in the clinical setting. The research was made possible thanks to the University of Padua STARS funding programme and TWINNING program of the Department of Industrial Engineering. As well as the generous support by the Oak Foundation through the Great Ormond Street Hospital Children's Charity, and the Horizon 2020 funding on the INTENS project (INtestinal Tissue ENgineering Solution) for children with Short Bowel Syndrome.

The research was conducted by a team of researchers at VIMM (Veneto Institute of Molecular Medicine), the University of Padua, UCL GOS ICH, Francis Crick Institute, ShanghaiTech University, the Royal Netherlands Academy of Arts and Sciences, the University Medical Center Utrecht, Princess Maxima Center for Pediatric Oncology Netherlands, and the Telethon Institute of Genetics and Medicine

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Selezioni PTA (formazione e lavoro) modulistica e informazioni

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Il contratto di formazione e lavoro è un contratto a tempo determinato, destinato all’inserimento nel mondo del lavoro di giovani fino ai 32 anni di età. 

Nel corso del rapporto il dipendente assunto con contratto di formazione e lavoro svolge un progetto formativo definito dall'Ateneo e approvato dalla Regione. 

Alla sua conclusione il contratto di formazione e lavoro può essere convertito in contratto di lavoro subordinato a tempo indeterminato, senza necessità di procedere ad un’ulteriore selezione. 

Dichiarazione sostitutiva di certificazione e di atto di notorietà
Modulo per la richiesta di accesso atti

Istruzioni per la compilazione e la presentazione della domanda

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

Il contratto di formazione e lavoro è un contratto a tempo determinato, destinato all’inserimento nel mondo del lavoro di giovani fino ai 32 anni di età. 

Nel corso del rapporto il dipendente assunto con contratto di formazione e lavoro svolge un progetto formativo definito dall'Ateneo e approvato dalla Regione. 

Alla sua conclusione il contratto di formazione e lavoro può essere convertito in contratto di lavoro subordinato a tempo indeterminato, senza necessità di procedere ad un’ulteriore selezione. 

Dichiarazione sostitutiva di certificazione e di atto di notorietà
Modulo per la richiesta di accesso atti

Istruzioni per la compilazione e la presentazione della domanda

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Il contratto di formazione e lavoro è un contratto a tempo determinato, destinato all’inserimento nel mondo del lavoro di giovani fino ai 32 anni di età. 

Nel corso del rapporto il dipendente assunto con contratto di formazione e lavoro svolge un progetto formativo definito dall'Ateneo e approvato dalla Regione. 

Alla sua conclusione il contratto di formazione e lavoro può essere convertito in contratto di lavoro subordinato a tempo indeterminato, senza necessità di procedere ad un’ulteriore selezione. 

Dichiarazione sostitutiva di certificazione e di atto di notorietà
Modulo per la richiesta di accesso atti

Istruzioni per la compilazione e la presentazione della domanda

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

Il contratto di formazione e lavoro è un contratto a tempo determinato, destinato all’inserimento nel mondo del lavoro di giovani fino ai 32 anni di età. 

Nel corso del rapporto il dipendente assunto con contratto di formazione e lavoro svolge un progetto formativo definito dall'Ateneo e approvato dalla Regione. 

Alla sua conclusione il contratto di formazione e lavoro può essere convertito in contratto di lavoro subordinato a tempo indeterminato, senza necessità di procedere ad un’ulteriore selezione. 

Dichiarazione sostitutiva di certificazione e di atto di notorietà
Modulo per la richiesta di accesso atti

Istruzioni per la compilazione e la presentazione della domanda

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Il contratto di formazione e lavoro è un contratto a tempo determinato, destinato all’inserimento nel mondo del lavoro di giovani fino ai 32 anni di età. 

Nel corso del rapporto il dipendente assunto con contratto di formazione e lavoro svolge un progetto formativo definito dall'Ateneo e approvato dalla Regione. 

Alla sua conclusione il contratto di formazione e lavoro può essere convertito in contratto di lavoro subordinato a tempo indeterminato, senza necessità di procedere ad un’ulteriore selezione. 

Dichiarazione sostitutiva di certificazione e di atto di notorietà
Modulo per la richiesta di accesso atti

Istruzioni per la compilazione e la presentazione della domanda

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

Il contratto di formazione e lavoro è un contratto a tempo determinato, destinato all’inserimento nel mondo del lavoro di giovani fino ai 32 anni di età. 

Nel corso del rapporto il dipendente assunto con contratto di formazione e lavoro svolge un progetto formativo definito dall'Ateneo e approvato dalla Regione. 

Alla sua conclusione il contratto di formazione e lavoro può essere convertito in contratto di lavoro subordinato a tempo indeterminato, senza necessità di procedere ad un’ulteriore selezione. 

Dichiarazione sostitutiva di certificazione e di atto di notorietà
Modulo per la richiesta di accesso atti

Istruzioni per la compilazione e la presentazione della domanda

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Selezioni PTA (formazione e lavoro) Info e modulistica

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Il contratto di formazione e lavoro è un contratto a tempo determinato, destinato all’inserimento nel mondo del lavoro di giovani fino ai 32 anni di età. 

Nel corso del rapporto il dipendente assunto con contratto di formazione e lavoro svolge un progetto formativo definito dall'Ateneo e approvato dalla Regione. 

Alla sua conclusione il contratto di formazione e lavoro può essere convertito in contratto di lavoro subordinato a tempo indeterminato, senza necessità di procedere ad un’ulteriore selezione. 

Dichiarazione sostitutiva di certificazione e di atto di notorietà
Modulo per la richiesta di accesso atti

Istruzioni per la compilazione e la presentazione della domanda

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

Il contratto di formazione e lavoro è un contratto a tempo determinato, destinato all’inserimento nel mondo del lavoro di giovani fino ai 32 anni di età. 

Nel corso del rapporto il dipendente assunto con contratto di formazione e lavoro svolge un progetto formativo definito dall'Ateneo e approvato dalla Regione. 

Alla sua conclusione il contratto di formazione e lavoro può essere convertito in contratto di lavoro subordinato a tempo indeterminato, senza necessità di procedere ad un’ulteriore selezione. 

Dichiarazione sostitutiva di certificazione e di atto di notorietà
Modulo per la richiesta di accesso atti

Istruzioni per la compilazione e la presentazione della domanda

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Il contratto di formazione e lavoro è un contratto a tempo determinato, destinato all’inserimento nel mondo del lavoro di giovani fino ai 32 anni di età. 

Nel corso del rapporto il dipendente assunto con contratto di formazione e lavoro svolge un progetto formativo definito dall'Ateneo e approvato dalla Regione. 

Alla sua conclusione il contratto di formazione e lavoro può essere convertito in contratto di lavoro subordinato a tempo indeterminato, senza necessità di procedere ad un’ulteriore selezione. 

Dichiarazione sostitutiva di certificazione e di atto di notorietà
Modulo per la richiesta di accesso atti

Istruzioni per la compilazione e la presentazione della domanda

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

Il contratto di formazione e lavoro è un contratto a tempo determinato, destinato all’inserimento nel mondo del lavoro di giovani fino ai 32 anni di età. 

Nel corso del rapporto il dipendente assunto con contratto di formazione e lavoro svolge un progetto formativo definito dall'Ateneo e approvato dalla Regione. 

Alla sua conclusione il contratto di formazione e lavoro può essere convertito in contratto di lavoro subordinato a tempo indeterminato, senza necessità di procedere ad un’ulteriore selezione. 

Dichiarazione sostitutiva di certificazione e di atto di notorietà
Modulo per la richiesta di accesso atti

Istruzioni per la compilazione e la presentazione della domanda

[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] => Informazioni e modulistica [format] => [safe_value] => Informazioni e modulistica ) ) ) [name] => simonetta.capparotto [picture] => 0 [data] => a:2:{s:13:"form_build_id";s:37:"form-fe5ebd9e5e240c4294455b6b42fa6a76";s:14:"wysiwyg_status";a:1:{i:1;i:1;}} [num_revisions] => 1 [current_revision_id] => 310048 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] =>

Il contratto di formazione e lavoro è un contratto a tempo determinato, destinato all’inserimento nel mondo del lavoro di giovani fino ai 32 anni di età. 

Nel corso del rapporto il dipendente assunto con contratto di formazione e lavoro svolge un progetto formativo definito dall'Ateneo e approvato dalla Regione. 

Alla sua conclusione il contratto di formazione e lavoro può essere convertito in contratto di lavoro subordinato a tempo indeterminato, senza necessità di procedere ad un’ulteriore selezione. 

Dichiarazione sostitutiva di certificazione e di atto di notorietà
Modulo per la richiesta di accesso atti

Istruzioni per la compilazione e la presentazione della domanda

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

Il contratto di formazione e lavoro è un contratto a tempo determinato, destinato all’inserimento nel mondo del lavoro di giovani fino ai 32 anni di età. 

Nel corso del rapporto il dipendente assunto con contratto di formazione e lavoro svolge un progetto formativo definito dall'Ateneo e approvato dalla Regione. 

Alla sua conclusione il contratto di formazione e lavoro può essere convertito in contratto di lavoro subordinato a tempo indeterminato, senza necessità di procedere ad un’ulteriore selezione. 

Dichiarazione sostitutiva di certificazione e di atto di notorietà
Modulo per la richiesta di accesso atti

Istruzioni per la compilazione e la presentazione della domanda

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

Il contratto di formazione e lavoro è un contratto a tempo determinato, destinato all’inserimento nel mondo del lavoro di giovani fino ai 32 anni di età. 

Nel corso del rapporto il dipendente assunto con contratto di formazione e lavoro svolge un progetto formativo definito dall'Ateneo e approvato dalla Regione. 

Alla sua conclusione il contratto di formazione e lavoro può essere convertito in contratto di lavoro subordinato a tempo indeterminato, senza necessità di procedere ad un’ulteriore selezione. 

) ) [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] => 310048 [uid] => 4 [title] => Selezioni PTA (formazione e lavoro) Info e modulistica [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 63289 [type] => elemento_accordion [language] => it [created] => 1576490419 [changed] => 1576491187 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1576491187 [revision_uid] => 4 [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

Il contratto di formazione e lavoro è un contratto a tempo determinato, destinato all’inserimento nel mondo del lavoro di giovani fino ai 32 anni di età. 

Nel corso del rapporto il dipendente assunto con contratto di formazione e lavoro svolge un progetto formativo definito dall'Ateneo e approvato dalla Regione. 

Alla sua conclusione il contratto di formazione e lavoro può essere convertito in contratto di lavoro subordinato a tempo indeterminato, senza necessità di procedere ad un’ulteriore selezione. 

Dichiarazione sostitutiva di certificazione e di atto di notorietà
Modulo per la richiesta di accesso atti

Istruzioni per la compilazione e la presentazione della domanda

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

Il contratto di formazione e lavoro è un contratto a tempo determinato, destinato all’inserimento nel mondo del lavoro di giovani fino ai 32 anni di età. 

Nel corso del rapporto il dipendente assunto con contratto di formazione e lavoro svolge un progetto formativo definito dall'Ateneo e approvato dalla Regione. 

Alla sua conclusione il contratto di formazione e lavoro può essere convertito in contratto di lavoro subordinato a tempo indeterminato, senza necessità di procedere ad un’ulteriore selezione. 

Dichiarazione sostitutiva di certificazione e di atto di notorietà
Modulo per la richiesta di accesso atti

Istruzioni per la compilazione e la presentazione della domanda

[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] => Informazioni e modulistica [format] => [safe_value] => Informazioni e modulistica ) ) ) [name] => simonetta.capparotto [picture] => 0 [data] => a:2:{s:13:"form_build_id";s:37:"form-fe5ebd9e5e240c4294455b6b42fa6a76";s:14:"wysiwyg_status";a:1:{i:1;i:1;}} [num_revisions] => 1 [current_revision_id] => 310048 [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 Selezioni PTA (formazione e lavoro) Info e modulistica [href] => node/63289 [html] => 1 [attributes] => Array ( [rel] => tag [title] => Selezioni PTA (formazione e lavoro) Info e modulistica ) ) ) [#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] => 310048 [uid] => 4 [title] => Selezioni PTA (formazione e lavoro) Info e modulistica [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 63289 [type] => elemento_accordion [language] => it [created] => 1576490419 [changed] => 1576491187 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1576491187 [revision_uid] => 4 [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

Il contratto di formazione e lavoro è un contratto a tempo determinato, destinato all’inserimento nel mondo del lavoro di giovani fino ai 32 anni di età. 

Nel corso del rapporto il dipendente assunto con contratto di formazione e lavoro svolge un progetto formativo definito dall'Ateneo e approvato dalla Regione. 

Alla sua conclusione il contratto di formazione e lavoro può essere convertito in contratto di lavoro subordinato a tempo indeterminato, senza necessità di procedere ad un’ulteriore selezione. 

Dichiarazione sostitutiva di certificazione e di atto di notorietà
Modulo per la richiesta di accesso atti

Istruzioni per la compilazione e la presentazione della domanda

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

Il contratto di formazione e lavoro è un contratto a tempo determinato, destinato all’inserimento nel mondo del lavoro di giovani fino ai 32 anni di età. 

Nel corso del rapporto il dipendente assunto con contratto di formazione e lavoro svolge un progetto formativo definito dall'Ateneo e approvato dalla Regione. 

Alla sua conclusione il contratto di formazione e lavoro può essere convertito in contratto di lavoro subordinato a tempo indeterminato, senza necessità di procedere ad un’ulteriore selezione. 

Dichiarazione sostitutiva di certificazione e di atto di notorietà
Modulo per la richiesta di accesso atti

Istruzioni per la compilazione e la presentazione della domanda

[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] => Informazioni e modulistica [format] => [safe_value] => Informazioni e modulistica ) ) ) [name] => simonetta.capparotto [picture] => 0 [data] => a:2:{s:13:"form_build_id";s:37:"form-fe5ebd9e5e240c4294455b6b42fa6a76";s:14:"wysiwyg_status";a:1:{i:1;i:1;}} [num_revisions] => 1 [current_revision_id] => 310048 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => h3 ) ) [#formatter] => text_default [0] => Array ( [#markup] => h3 ) ) )

2019PA182.4 - Bando parte generale

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[num_revisions] => 1 [current_revision_id] => 310038 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => Bando parte generale [format] => [safe_value] => Bando parte generale ) ) [#formatter] => text_default [0] => Array ( [#markup] => Bando parte generale ) ) [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] => 310038 [uid] => 8831 [title] => 2019PA182.4 - Bando parte generale [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 63284 [type] => allegato [language] => it [created] => 1576489817 [changed] => 1598953876 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1598953876 [revision_uid] => 102 [taxonomy_vocabulary_2] => Array ( ) [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_titolo_frontend_all] => Array ( [und] => Array ( [0] => Array ( [value] => Bando parte generale [format] => [safe_value] => Bando parte generale ) ) ) [field_allegato_file] => Array ( [und] => Array ( [0] => Array ( [fid] => 78525 [uid] => 9217 [filename] => 2019PA182.4 Art 18_4 II Bando parte generale Eccellenza.docx.pdf [uri] => public://2019/2019PA182.4 Art 18_4 II Bando parte generale Eccellenza.docx.pdf [filemime] => application/pdf [filesize] => 230111 [status] => 1 [timestamp] => 1576489812 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2272 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [name] => carriere.docenti [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 310038 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [fid] => 78525 [uid] => 9217 [filename] => 2019PA182.4 Art 18_4 II Bando parte generale Eccellenza.docx.pdf [uri] => public://2019/2019PA182.4 Art 18_4 II Bando parte generale Eccellenza.docx.pdf [filemime] => application/pdf [filesize] => 230111 [status] => 1 [timestamp] => 1576489812 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2272 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) [#formatter] => file_default [0] => Array ( [#theme] => file_link [#file] => stdClass Object ( [fid] => 78525 [uid] => 9217 [filename] => 2019PA182.4 Art 18_4 II Bando parte generale Eccellenza.docx.pdf [uri] => public://2019/2019PA182.4 Art 18_4 II Bando parte generale Eccellenza.docx.pdf [filemime] => application/pdf [filesize] => 230111 [status] => 1 [timestamp] => 1576489812 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2272 ) ) ) [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 2019PA182.4 - Bando parte generale [href] => node/63284 [html] => 1 [attributes] => Array ( [rel] => tag [title] => 2019PA182.4 - Bando parte generale ) ) ) [#attributes] => Array ( [class] => Array ( [0] => links [1] => inline ) ) ) ) )

Avviso di procedura comparativa n. 2019AC9 - scadenza 23 dicembre 2019

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] => 310030 [uid] => 4 [title] => Avviso di procedura comparativa n. 2019AC9 - scadenza 23 dicembre 2019 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 63280 [type] => elemento_accordion [language] => it [created] => 1576488517 [changed] => 1578671679 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1578671679 [revision_uid] => 102 [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

Avviso di procedura comparativa n. 2019AC9 per l’individuazione di n. 1 soggetto esperto cui affidare affidare l'incarico per lo svolgimento di attività funzionali alla ricerca su “Il bilanciamento vita-lavoro all’Università di Padova"

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

Avviso di procedura comparativa n. 2019AC9 per l’individuazione di n. 1 soggetto esperto cui affidare affidare l'incarico per lo svolgimento di attività funzionali alla ricerca su “Il bilanciamento vita-lavoro all’Università di Padova"

[safe_summary] => ) ) ) [field_accordion_state] => Array ( [und] => Array ( [0] => Array ( [value] => chiuso ) ) ) [field_allegato_element] => Array ( [und] => Array ( [0] => Array ( [nid] => 63277 [access] => 1 [node] => stdClass Object ( [vid] => 310027 [uid] => 4 [title] => 2019AC9 - Avviso [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 63277 [type] => allegato [language] => it [created] => 1576488427 [changed] => 1578671679 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1578671679 [revision_uid] => 102 [taxonomy_vocabulary_2] => Array ( ) [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_titolo_frontend_all] => Array ( [und] => Array ( [0] => Array ( [value] => Avviso [format] => [safe_value] => Avviso ) ) ) [field_allegato_file] => Array ( [und] => Array ( [0] => Array ( [fid] => 78521 [uid] => 32 [filename] => 1 avviso procedura comparativa 2019AC9 web.pdf [uri] => public://2019/1 avviso procedura comparativa 2019AC9 web.pdf [filemime] => application/pdf [filesize] => 483226 [status] => 1 [timestamp] => 1576488422 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2272 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [name] => simonetta.capparotto [picture] => 0 [data] => a:2:{s:13:"form_build_id";s:37:"form-fe5ebd9e5e240c4294455b6b42fa6a76";s:14:"wysiwyg_status";a:1:{i:1;i:1;}} [num_revisions] => 1 [current_revision_id] => 310027 [is_current] => 1 [is_pending] => [revision_moderation] => ) ) [1] => Array ( [nid] => 63278 [access] => 1 [node] => stdClass Object ( [vid] => 310028 [uid] => 4 [title] => 2019AC9 - Fac-simile domanda candidati interni [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 63278 [type] => allegato [language] => it [created] => 1576488464 [changed] => 1578671679 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1578671679 [revision_uid] => 102 [taxonomy_vocabulary_2] => Array ( ) [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_titolo_frontend_all] => Array ( [und] => Array ( [0] => Array ( [value] => Fac-simile domanda candidati interni [format] => [safe_value] => Fac-simile domanda candidati interni ) ) ) [field_allegato_file] => Array ( [und] => Array ( [0] => Array ( [fid] => 78522 [uid] => 32 [filename] => 2 domanda interni procedura 2019AC9.pdf [uri] => public://2019/2 domanda interni procedura 2019AC9.pdf [filemime] => application/pdf [filesize] => 206715 [status] => 1 [timestamp] => 1576488458 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2272 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [name] => simonetta.capparotto [picture] => 0 [data] => a:2:{s:13:"form_build_id";s:37:"form-fe5ebd9e5e240c4294455b6b42fa6a76";s:14:"wysiwyg_status";a:1:{i:1;i:1;}} [num_revisions] => 1 [current_revision_id] => 310028 [is_current] => 1 [is_pending] => [revision_moderation] => ) ) [2] => Array ( [nid] => 63279 [access] => 1 [node] => stdClass Object ( [vid] => 310029 [uid] => 4 [title] => 2019AC9 - Fac-simile domanda candidati esterni [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 63279 [type] => allegato [language] => it [created] => 1576488506 [changed] => 1578671679 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1578671679 [revision_uid] => 102 [taxonomy_vocabulary_2] => Array ( ) [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_titolo_frontend_all] => Array ( [und] => Array ( [0] => Array ( [value] => Fac-simile domanda candidati esterni [format] => [safe_value] => Fac-simile domanda candidati esterni ) ) ) [field_allegato_file] => Array ( [und] => Array ( [0] => Array ( [fid] => 78523 [uid] => 32 [filename] => 2 domanda esterni procedura 2019AC9.pdf [uri] => public://2019/2 domanda esterni procedura 2019AC9.pdf [filemime] => application/pdf [filesize] => 220937 [status] => 1 [timestamp] => 1576488502 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2272 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [name] => simonetta.capparotto [picture] => 0 [data] => a:2:{s:13:"form_build_id";s:37:"form-fe5ebd9e5e240c4294455b6b42fa6a76";s:14:"wysiwyg_status";a:1:{i:1;i:1;}} [num_revisions] => 1 [current_revision_id] => 310029 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) ) ) ) [field_outline_level] => Array ( [und] => Array ( [0] => Array ( [value] => h3 ) ) ) [field_titolo_frontend] => Array ( [und] => Array ( [0] => Array ( [value] => Avviso di procedura comparativa n. 2019AC9 - scadenza 23 dicembre 2019 [format] => [safe_value] => Avviso di procedura comparativa n. 2019AC9 - scadenza 23 dicembre 2019 ) ) ) [name] => simonetta.capparotto [picture] => 0 [data] => a:2:{s:13:"form_build_id";s:37:"form-fe5ebd9e5e240c4294455b6b42fa6a76";s:14:"wysiwyg_status";a:1:{i:1;i:1;}} [num_revisions] => 1 [current_revision_id] => 310030 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => Avviso di procedura comparativa n. 2019AC9 - scadenza 23 dicembre 2019 [format] => [safe_value] => Avviso di procedura comparativa n. 2019AC9 - scadenza 23 dicembre 2019 ) ) [#formatter] => text_default [0] => Array ( [#markup] => Avviso di procedura comparativa n. 2019AC9 - scadenza 23 dicembre 2019 ) ) [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] => 310030 [uid] => 4 [title] => Avviso di procedura comparativa n. 2019AC9 - scadenza 23 dicembre 2019 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 63280 [type] => elemento_accordion [language] => it [created] => 1576488517 [changed] => 1578671679 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1578671679 [revision_uid] => 102 [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

Avviso di procedura comparativa n. 2019AC9 per l’individuazione di n. 1 soggetto esperto cui affidare affidare l'incarico per lo svolgimento di attività funzionali alla ricerca su “Il bilanciamento vita-lavoro all’Università di Padova"

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

Avviso di procedura comparativa n. 2019AC9 per l’individuazione di n. 1 soggetto esperto cui affidare affidare l'incarico per lo svolgimento di attività funzionali alla ricerca su “Il bilanciamento vita-lavoro all’Università di Padova"

[safe_summary] => ) ) ) [field_accordion_state] => Array ( [und] => Array ( [0] => Array ( [value] => chiuso ) ) ) [field_allegato_element] => Array ( [und] => Array ( [0] => Array ( [nid] => 63277 [access] => 1 [node] => stdClass Object ( [vid] => 310027 [uid] => 4 [title] => 2019AC9 - Avviso [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 63277 [type] => allegato [language] => it [created] => 1576488427 [changed] => 1578671679 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1578671679 [revision_uid] => 102 [taxonomy_vocabulary_2] => Array ( ) [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_titolo_frontend_all] => Array ( [und] => Array ( [0] => Array ( [value] => Avviso [format] => [safe_value] => Avviso ) ) ) [field_allegato_file] => Array ( [und] => Array ( [0] => Array ( [fid] => 78521 [uid] => 32 [filename] => 1 avviso procedura comparativa 2019AC9 web.pdf [uri] => public://2019/1 avviso procedura comparativa 2019AC9 web.pdf [filemime] => application/pdf [filesize] => 483226 [status] => 1 [timestamp] => 1576488422 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2272 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [name] => simonetta.capparotto [picture] => 0 [data] => a:2:{s:13:"form_build_id";s:37:"form-fe5ebd9e5e240c4294455b6b42fa6a76";s:14:"wysiwyg_status";a:1:{i:1;i:1;}} [num_revisions] => 1 [current_revision_id] => 310027 [is_current] => 1 [is_pending] => [revision_moderation] => ) ) [1] => Array ( [nid] => 63278 [access] => 1 [node] => stdClass Object ( [vid] => 310028 [uid] => 4 [title] => 2019AC9 - 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Avviso di procedura comparativa n. 2019AC9 per l’individuazione di n. 1 soggetto esperto cui affidare affidare l'incarico per lo svolgimento di attività funzionali alla ricerca su “Il bilanciamento vita-lavoro all’Università di Padova"

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

Avviso di procedura comparativa n. 2019AC9 per l’individuazione di n. 1 soggetto esperto cui affidare affidare l'incarico per lo svolgimento di attività funzionali alla ricerca su “Il bilanciamento vita-lavoro all’Università di Padova"

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

Avviso di procedura comparativa n. 2019AC9 per l’individuazione di n. 1 soggetto esperto cui affidare affidare l'incarico per lo svolgimento di attività funzionali alla ricerca su “Il bilanciamento vita-lavoro all’Università di Padova"

) ) [field_allegato_element] => Array ( [#theme] => field [#weight] => -2 [#title] => Elemento allegato [#access] => 1 [#label_display] => above [#view_mode] => teaser [#language] => und [#field_name] => field_allegato_element [#field_type] => node_reference [#field_translatable] => 0 [#entity_type] => node [#bundle] => elemento_accordion [#object] => stdClass Object ( [vid] => 310030 [uid] => 4 [title] => Avviso di procedura comparativa n. 2019AC9 - scadenza 23 dicembre 2019 [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 63280 [type] => elemento_accordion [language] => it [created] => 1576488517 [changed] => 1578671679 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1578671679 [revision_uid] => 102 [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( [und] => Array ( [0] => Array ( [value] =>

Avviso di procedura comparativa n. 2019AC9 per l’individuazione di n. 1 soggetto esperto cui affidare affidare l'incarico per lo svolgimento di attività funzionali alla ricerca su “Il bilanciamento vita-lavoro all’Università di Padova"

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Avviso di procedura comparativa n. 2019AC9 per l’individuazione di n. 1 soggetto esperto cui affidare affidare l'incarico per lo svolgimento di attività funzionali alla ricerca su “Il bilanciamento vita-lavoro all’Università di Padova"

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Avviso di procedura comparativa n. 2019AC9 per l’individuazione di n. 1 soggetto esperto cui affidare affidare l'incarico per lo svolgimento di attività funzionali alla ricerca su “Il bilanciamento vita-lavoro all’Università di Padova"

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Avviso di procedura comparativa n. 2019AC9 per l’individuazione di n. 1 soggetto esperto cui affidare affidare l'incarico per lo svolgimento di attività funzionali alla ricerca su “Il bilanciamento vita-lavoro all’Università di Padova"

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Fac-simile domanda candidati interni [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 63278 [type] => allegato [language] => it [created] => 1576488464 [changed] => 1578671679 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1578671679 [revision_uid] => 102 [taxonomy_vocabulary_2] => Array ( ) [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_titolo_frontend_all] => Array ( [und] => Array ( [0] => Array ( [value] => Fac-simile domanda candidati interni [format] => [safe_value] => Fac-simile domanda candidati interni ) ) ) [field_allegato_file] => Array ( [und] => Array ( [0] => Array ( [fid] => 78522 [uid] => 32 [filename] => 2 domanda interni procedura 2019AC9.pdf [uri] => public://2019/2 domanda interni procedura 2019AC9.pdf [filemime] => application/pdf [filesize] => 206715 [status] => 1 [timestamp] => 1576488458 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2272 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [name] => simonetta.capparotto [picture] => 0 [data] => a:2:{s:13:"form_build_id";s:37:"form-fe5ebd9e5e240c4294455b6b42fa6a76";s:14:"wysiwyg_status";a:1:{i:1;i:1;}} [num_revisions] => 1 [current_revision_id] => 310028 [is_current] => 1 [is_pending] => [revision_moderation] => ) ) [2] => Array ( [nid] => 63279 [access] => 1 [node] => stdClass Object ( [vid] => 310029 [uid] => 4 [title] => 2019AC9 - 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Avviso di procedura comparativa n. 2019AC9 per l’individuazione di n. 1 soggetto esperto cui affidare affidare l'incarico per lo svolgimento di attività funzionali alla ricerca su “Il bilanciamento vita-lavoro all’Università di Padova"

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Avviso di procedura comparativa n. 2019AC9 per l’individuazione di n. 1 soggetto esperto cui affidare affidare l'incarico per lo svolgimento di attività funzionali alla ricerca su “Il bilanciamento vita-lavoro all’Università di Padova"

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2019AC9 - Fac-simile domanda candidati esterni

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