Intro LM - ingegneria liberi

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Bioingegneria
Ingegneria Civile
Ingegneria della sicurezza civile e industriale
Ingegneria Gestionale – curriculum "Ingegneria gestionale"
Aerospace Engineering
Chemical and Process Engineering
Computer Engineering
Control Systems Engineering
Electrical Engineering
Electronic Engineering
Energy Engineering
Environmental Engineering
Food Industry Engineering
Ict For Internet And Multimedia - Ingegneria per le Comunicazioni Multimediali e Internet
Ingegneria Gestionale – curriculum "Management Engineering"
Materials Engineering
Mechatronics Engineering
Mechanical Innovation for Product Engineering
Water And Geological Risk Engineering

Titolo di accesso italiano - Avviso di ammissione
Titolo di accesso estero - Procedure per studentesse e studenti internazionali

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Bioingegneria
Ingegneria Civile
Ingegneria della sicurezza civile e industriale
Ingegneria Gestionale – curriculum "Ingegneria gestionale"
Aerospace Engineering
Chemical and Process Engineering
Computer Engineering
Control Systems Engineering
Electrical Engineering
Electronic Engineering
Energy Engineering
Environmental Engineering
Food Industry Engineering
Ict For Internet And Multimedia - Ingegneria per le Comunicazioni Multimediali e Internet
Ingegneria Gestionale – curriculum "Management Engineering"
Materials Engineering
Mechatronics Engineering
Mechanical Innovation for Product Engineering
Water And Geological Risk Engineering

Titolo di accesso italiano - Avviso di ammissione
Titolo di accesso estero - Procedure per studentesse e studenti internazionali

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Bioingegneria
Ingegneria Civile
Ingegneria della sicurezza civile e industriale
Ingegneria Gestionale – curriculum "Ingegneria gestionale"
Aerospace Engineering
Chemical and Process Engineering
Computer Engineering
Control Systems Engineering
Electrical Engineering
Electronic Engineering
Energy Engineering
Environmental Engineering
Food Industry Engineering
Ict For Internet And Multimedia - Ingegneria per le Comunicazioni Multimediali e Internet
Ingegneria Gestionale – curriculum "Management Engineering"
Materials Engineering
Mechatronics Engineering
Mechanical Innovation for Product Engineering
Water And Geological Risk Engineering

Titolo di accesso italiano - Avviso di ammissione
Titolo di accesso estero - Procedure per studentesse e studenti internazionali

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

Bioingegneria
Ingegneria Civile
Ingegneria della sicurezza civile e industriale
Ingegneria Gestionale – curriculum "Ingegneria gestionale"
Aerospace Engineering
Chemical and Process Engineering
Computer Engineering
Control Systems Engineering
Electrical Engineering
Electronic Engineering
Energy Engineering
Environmental Engineering
Food Industry Engineering
Ict For Internet And Multimedia - Ingegneria per le Comunicazioni Multimediali e Internet
Ingegneria Gestionale – curriculum "Management Engineering"
Materials Engineering
Mechatronics Engineering
Mechanical Innovation for Product Engineering
Water And Geological Risk Engineering

Titolo di accesso italiano - Avviso di ammissione
Titolo di accesso estero - Procedure per studentesse e studenti internazionali

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Bioingegneria
Ingegneria Civile
Ingegneria della sicurezza civile e industriale
Ingegneria Gestionale – curriculum "Ingegneria gestionale"
Aerospace Engineering
Chemical and Process Engineering
Computer Engineering
Control Systems Engineering
Electrical Engineering
Electronic Engineering
Energy Engineering
Environmental Engineering
Food Industry Engineering
Ict For Internet And Multimedia - Ingegneria per le Comunicazioni Multimediali e Internet
Ingegneria Gestionale – curriculum "Management Engineering"
Materials Engineering
Mechatronics Engineering
Mechanical Innovation for Product Engineering
Water And Geological Risk Engineering

Titolo di accesso italiano - Avviso di ammissione
Titolo di accesso estero - Procedure per studentesse e studenti internazionali

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

Bioingegneria
Ingegneria Civile
Ingegneria della sicurezza civile e industriale
Ingegneria Gestionale – curriculum "Ingegneria gestionale"
Aerospace Engineering
Chemical and Process Engineering
Computer Engineering
Control Systems Engineering
Electrical Engineering
Electronic Engineering
Energy Engineering
Environmental Engineering
Food Industry Engineering
Ict For Internet And Multimedia - Ingegneria per le Comunicazioni Multimediali e Internet
Ingegneria Gestionale – curriculum "Management Engineering"
Materials Engineering
Mechatronics Engineering
Mechanical Innovation for Product Engineering
Water And Geological Risk Engineering

Titolo di accesso italiano - Avviso di ammissione
Titolo di accesso estero - Procedure per studentesse e studenti internazionali

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Bioingegneria
Ingegneria Civile
Ingegneria della sicurezza civile e industriale
Ingegneria Gestionale – curriculum "Ingegneria gestionale"
Aerospace Engineering
Chemical and Process Engineering
Computer Engineering
Control Systems Engineering
Electrical Engineering
Electronic Engineering
Energy Engineering
Environmental Engineering

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Trasparenza 2025 elenco acquisizioni superiori a 1 milione

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Aggiornamento programma triennale degli acquisiti di beni e servizi 2024-2026.ods

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Aggiornamento programma triennale degli acquisiti di beni e servizi 2024-2026.pdf

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Trasparenza Anno 2025- Delibera programma triennale degli acquisiti di beni e servizi 2025-2027

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Trasparenza Anno 2025 Programma triennale degli acquisti di beni e servizi 2025-2027

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Trasparenza Anno 2025 Programma biennale degli acquisti di beni e servizi

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PFAS change calcium in the body

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Italian version

A new study, published in the journal Chemosphere and carried out in collaboration between the University of Padua and Vicenza Hospital, has explored how PFAS (perfluoroalkyl substances) can affect human health, in particular by altering calcium metabolism. The research, funded by the Veneto Region, involved 1,174 adults from an area that has been affected by drinking water contamination for decades, namely the Veneto Red Area.

PFAS, an acronym for ‘perfluorinated alkylated substances’, originated in the 1940s as so-called ‘synthetic’ chemical compounds. Today we count over 4,000 substances belonging to this family, which are widely used in industry. There are many industrial processes in which PFASs are involved due to their resistance and low affinity for both water and grease. In fact, they are water-repellent and oil-repellent substances.

PFASs, used, therefore, in various industrial and consumer products, are a growing public health concern. One of the most common effects in individuals exposed to even low levels of these substances is osteoporosis, a disease that causes bone fragility, typical of ageing, but which can also occur at a young age in the event of prolonged exposure to PFAS.

Carlo Foresta, coordinator of this study, which involved researchers from Padua, Vicenza and Naples and is the result of four years of work, explained that PFAS damage bone cells and reduce bone density, resulting in the release of calcium in the blood. Previous research by the same group had already shown a decrease in bone density in 18-year-olds living in the contaminated area. This effect was attributed to PFAS interference with the vitamin D receptor, which is crucial for bone health.

The study analysed PFAS, calcium, vitamin D and parathormone levels in the blood of 655 men and 519 women aged between 20 and 69 years, and the results showed that people with higher PFAS concentrations also had higher levels of calcium in their blood. However, the researchers ruled out that this alteration was due to changes in vitamin D or parathormone levels, suggesting instead a direct interference of PFAS with bone metabolism.

Andrea Di Nisio, first author of the research, explained that the observed increase in calcium could result from the release of calcium from the bones, in particular through the activation of osteoclasts, the cells responsible for bone resorption. This mechanism could explain the loss of bone density found in previous studies.

The results achieved contribute to the growing interest in the impact of PFAS on the environment and public health, with particular attention to the contamination of drinking water in Veneto, which has been going on for decades.
Indeed, the research shows how prolonged exposure to PFAS, even at low levels, can have long-term effects on health, highlighting the urgency of addressing the problem of PFAS contamination and the need to protect the health of exposed populations.

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

Italian version

A new study, published in the journal Chemosphere and carried out in collaboration between the University of Padua and Vicenza Hospital, has explored how PFAS (perfluoroalkyl substances) can affect human health, in particular by altering calcium metabolism. The research, funded by the Veneto Region, involved 1,174 adults from an area that has been affected by drinking water contamination for decades, namely the Veneto Red Area.

PFAS, an acronym for ‘perfluorinated alkylated substances’, originated in the 1940s as so-called ‘synthetic’ chemical compounds. Today we count over 4,000 substances belonging to this family, which are widely used in industry. There are many industrial processes in which PFASs are involved due to their resistance and low affinity for both water and grease. In fact, they are water-repellent and oil-repellent substances.

PFASs, used, therefore, in various industrial and consumer products, are a growing public health concern. One of the most common effects in individuals exposed to even low levels of these substances is osteoporosis, a disease that causes bone fragility, typical of ageing, but which can also occur at a young age in the event of prolonged exposure to PFAS.

Carlo Foresta, coordinator of this study, which involved researchers from Padua, Vicenza and Naples and is the result of four years of work, explained that PFAS damage bone cells and reduce bone density, resulting in the release of calcium in the blood. Previous research by the same group had already shown a decrease in bone density in 18-year-olds living in the contaminated area. This effect was attributed to PFAS interference with the vitamin D receptor, which is crucial for bone health.

The study analysed PFAS, calcium, vitamin D and parathormone levels in the blood of 655 men and 519 women aged between 20 and 69 years, and the results showed that people with higher PFAS concentrations also had higher levels of calcium in their blood. However, the researchers ruled out that this alteration was due to changes in vitamin D or parathormone levels, suggesting instead a direct interference of PFAS with bone metabolism.

Andrea Di Nisio, first author of the research, explained that the observed increase in calcium could result from the release of calcium from the bones, in particular through the activation of osteoclasts, the cells responsible for bone resorption. This mechanism could explain the loss of bone density found in previous studies.

The results achieved contribute to the growing interest in the impact of PFAS on the environment and public health, with particular attention to the contamination of drinking water in Veneto, which has been going on for decades.
Indeed, the research shows how prolonged exposure to PFAS, even at low levels, can have long-term effects on health, highlighting the urgency of addressing the problem of PFAS contamination and the need to protect the health of exposed populations.

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Italian version

A new study, published in the journal Chemosphere and carried out in collaboration between the University of Padua and Vicenza Hospital, has explored how PFAS (perfluoroalkyl substances) can affect human health, in particular by altering calcium metabolism. The research, funded by the Veneto Region, involved 1,174 adults from an area that has been affected by drinking water contamination for decades, namely the Veneto Red Area.

PFAS, an acronym for ‘perfluorinated alkylated substances’, originated in the 1940s as so-called ‘synthetic’ chemical compounds. Today we count over 4,000 substances belonging to this family, which are widely used in industry. There are many industrial processes in which PFASs are involved due to their resistance and low affinity for both water and grease. In fact, they are water-repellent and oil-repellent substances.

PFASs, used, therefore, in various industrial and consumer products, are a growing public health concern. One of the most common effects in individuals exposed to even low levels of these substances is osteoporosis, a disease that causes bone fragility, typical of ageing, but which can also occur at a young age in the event of prolonged exposure to PFAS.

Carlo Foresta, coordinator of this study, which involved researchers from Padua, Vicenza and Naples and is the result of four years of work, explained that PFAS damage bone cells and reduce bone density, resulting in the release of calcium in the blood. Previous research by the same group had already shown a decrease in bone density in 18-year-olds living in the contaminated area. This effect was attributed to PFAS interference with the vitamin D receptor, which is crucial for bone health.

The study analysed PFAS, calcium, vitamin D and parathormone levels in the blood of 655 men and 519 women aged between 20 and 69 years, and the results showed that people with higher PFAS concentrations also had higher levels of calcium in their blood. However, the researchers ruled out that this alteration was due to changes in vitamin D or parathormone levels, suggesting instead a direct interference of PFAS with bone metabolism.

Andrea Di Nisio, first author of the research, explained that the observed increase in calcium could result from the release of calcium from the bones, in particular through the activation of osteoclasts, the cells responsible for bone resorption. This mechanism could explain the loss of bone density found in previous studies.

The results achieved contribute to the growing interest in the impact of PFAS on the environment and public health, with particular attention to the contamination of drinking water in Veneto, which has been going on for decades.
Indeed, the research shows how prolonged exposure to PFAS, even at low levels, can have long-term effects on health, highlighting the urgency of addressing the problem of PFAS contamination and the need to protect the health of exposed populations.

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

Italian version

A new study, published in the journal Chemosphere and carried out in collaboration between the University of Padua and Vicenza Hospital, has explored how PFAS (perfluoroalkyl substances) can affect human health, in particular by altering calcium metabolism. The research, funded by the Veneto Region, involved 1,174 adults from an area that has been affected by drinking water contamination for decades, namely the Veneto Red Area.

PFAS, an acronym for ‘perfluorinated alkylated substances’, originated in the 1940s as so-called ‘synthetic’ chemical compounds. Today we count over 4,000 substances belonging to this family, which are widely used in industry. There are many industrial processes in which PFASs are involved due to their resistance and low affinity for both water and grease. In fact, they are water-repellent and oil-repellent substances.

PFASs, used, therefore, in various industrial and consumer products, are a growing public health concern. One of the most common effects in individuals exposed to even low levels of these substances is osteoporosis, a disease that causes bone fragility, typical of ageing, but which can also occur at a young age in the event of prolonged exposure to PFAS.

Carlo Foresta, coordinator of this study, which involved researchers from Padua, Vicenza and Naples and is the result of four years of work, explained that PFAS damage bone cells and reduce bone density, resulting in the release of calcium in the blood. Previous research by the same group had already shown a decrease in bone density in 18-year-olds living in the contaminated area. This effect was attributed to PFAS interference with the vitamin D receptor, which is crucial for bone health.

The study analysed PFAS, calcium, vitamin D and parathormone levels in the blood of 655 men and 519 women aged between 20 and 69 years, and the results showed that people with higher PFAS concentrations also had higher levels of calcium in their blood. However, the researchers ruled out that this alteration was due to changes in vitamin D or parathormone levels, suggesting instead a direct interference of PFAS with bone metabolism.

Andrea Di Nisio, first author of the research, explained that the observed increase in calcium could result from the release of calcium from the bones, in particular through the activation of osteoclasts, the cells responsible for bone resorption. This mechanism could explain the loss of bone density found in previous studies.

The results achieved contribute to the growing interest in the impact of PFAS on the environment and public health, with particular attention to the contamination of drinking water in Veneto, which has been going on for decades.
Indeed, the research shows how prolonged exposure to PFAS, even at low levels, can have long-term effects on health, highlighting the urgency of addressing the problem of PFAS contamination and the need to protect the health of exposed populations.

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

Italian version

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Italian version

A new study, published in the journal Chemosphere and carried out in collaboration between the University of Padua and Vicenza Hospital, has explored how PFAS (perfluoroalkyl substances) can affect human health, in particular by altering calcium metabolism. The research, funded by the Veneto Region, involved 1,174 adults from an area that has been affected by drinking water contamination for decades, namely the Veneto Red Area.

PFAS, an acronym for ‘perfluorinated alkylated substances’, originated in the 1940s as so-called ‘synthetic’ chemical compounds. Today we count over 4,000 substances belonging to this family, which are widely used in industry. There are many industrial processes in which PFASs are involved due to their resistance and low affinity for both water and grease. In fact, they are water-repellent and oil-repellent substances.

PFASs, used, therefore, in various industrial and consumer products, are a growing public health concern. One of the most common effects in individuals exposed to even low levels of these substances is osteoporosis, a disease that causes bone fragility, typical of ageing, but which can also occur at a young age in the event of prolonged exposure to PFAS.

Carlo Foresta, coordinator of this study, which involved researchers from Padua, Vicenza and Naples and is the result of four years of work, explained that PFAS damage bone cells and reduce bone density, resulting in the release of calcium in the blood. Previous research by the same group had already shown a decrease in bone density in 18-year-olds living in the contaminated area. This effect was attributed to PFAS interference with the vitamin D receptor, which is crucial for bone health.

The study analysed PFAS, calcium, vitamin D and parathormone levels in the blood of 655 men and 519 women aged between 20 and 69 years, and the results showed that people with higher PFAS concentrations also had higher levels of calcium in their blood. However, the researchers ruled out that this alteration was due to changes in vitamin D or parathormone levels, suggesting instead a direct interference of PFAS with bone metabolism.

Andrea Di Nisio, first author of the research, explained that the observed increase in calcium could result from the release of calcium from the bones, in particular through the activation of osteoclasts, the cells responsible for bone resorption. This mechanism could explain the loss of bone density found in previous studies.

The results achieved contribute to the growing interest in the impact of PFAS on the environment and public health, with particular attention to the contamination of drinking water in Veneto, which has been going on for decades.
Indeed, the research shows how prolonged exposure to PFAS, even at low levels, can have long-term effects on health, highlighting the urgency of addressing the problem of PFAS contamination and the need to protect the health of exposed populations.

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

Italian version

A new study, published in the journal Chemosphere and carried out in collaboration between the University of Padua and Vicenza Hospital, has explored how PFAS (perfluoroalkyl substances) can affect human health, in particular by altering calcium metabolism. The research, funded by the Veneto Region, involved 1,174 adults from an area that has been affected by drinking water contamination for decades, namely the Veneto Red Area.

PFAS, an acronym for ‘perfluorinated alkylated substances’, originated in the 1940s as so-called ‘synthetic’ chemical compounds. Today we count over 4,000 substances belonging to this family, which are widely used in industry. There are many industrial processes in which PFASs are involved due to their resistance and low affinity for both water and grease. In fact, they are water-repellent and oil-repellent substances.

PFASs, used, therefore, in various industrial and consumer products, are a growing public health concern. One of the most common effects in individuals exposed to even low levels of these substances is osteoporosis, a disease that causes bone fragility, typical of ageing, but which can also occur at a young age in the event of prolonged exposure to PFAS.

Carlo Foresta, coordinator of this study, which involved researchers from Padua, Vicenza and Naples and is the result of four years of work, explained that PFAS damage bone cells and reduce bone density, resulting in the release of calcium in the blood. Previous research by the same group had already shown a decrease in bone density in 18-year-olds living in the contaminated area. This effect was attributed to PFAS interference with the vitamin D receptor, which is crucial for bone health.

The study analysed PFAS, calcium, vitamin D and parathormone levels in the blood of 655 men and 519 women aged between 20 and 69 years, and the results showed that people with higher PFAS concentrations also had higher levels of calcium in their blood. However, the researchers ruled out that this alteration was due to changes in vitamin D or parathormone levels, suggesting instead a direct interference of PFAS with bone metabolism.

Andrea Di Nisio, first author of the research, explained that the observed increase in calcium could result from the release of calcium from the bones, in particular through the activation of osteoclasts, the cells responsible for bone resorption. This mechanism could explain the loss of bone density found in previous studies.

The results achieved contribute to the growing interest in the impact of PFAS on the environment and public health, with particular attention to the contamination of drinking water in Veneto, which has been going on for decades.
Indeed, the research shows how prolonged exposure to PFAS, even at low levels, can have long-term effects on health, highlighting the urgency of addressing the problem of PFAS contamination and the need to protect the health of exposed populations.

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Italian version

A new study, published in the journal Chemosphere and carried out in collaboration between the University of Padua and Vicenza Hospital, has explored how PFAS (perfluoroalkyl substances) can affect human health, in particular by altering calcium metabolism. The research, funded by the Veneto Region, involved 1,174 adults from an area that has been affected by drinking water contamination for decades, namely the Veneto Red Area.

PFAS, an acronym for ‘perfluorinated alkylated substances’, originated in the 1940s as so-called ‘synthetic’ chemical compounds. Today we count over 4,000 substances belonging to this family, which are widely used in industry. There are many industrial processes in which PFASs are involved due to their resistance and low affinity for both water and grease. In fact, they are water-repellent and oil-repellent substances.

PFASs, used, therefore, in various industrial and consumer products, are a growing public health concern. One of the most common effects in individuals exposed to even low levels of these substances is osteoporosis, a disease that causes bone fragility, typical of ageing, but which can also occur at a young age in the event of prolonged exposure to PFAS.

Carlo Foresta, coordinator of this study, which involved researchers from Padua, Vicenza and Naples and is the result of four years of work, explained that PFAS damage bone cells and reduce bone density, resulting in the release of calcium in the blood. Previous research by the same group had already shown a decrease in bone density in 18-year-olds living in the contaminated area. This effect was attributed to PFAS interference with the vitamin D receptor, which is crucial for bone health.

The study analysed PFAS, calcium, vitamin D and parathormone levels in the blood of 655 men and 519 women aged between 20 and 69 years, and the results showed that people with higher PFAS concentrations also had higher levels of calcium in their blood. However, the researchers ruled out that this alteration was due to changes in vitamin D or parathormone levels, suggesting instead a direct interference of PFAS with bone metabolism.

Andrea Di Nisio, first author of the research, explained that the observed increase in calcium could result from the release of calcium from the bones, in particular through the activation of osteoclasts, the cells responsible for bone resorption. This mechanism could explain the loss of bone density found in previous studies.

The results achieved contribute to the growing interest in the impact of PFAS on the environment and public health, with particular attention to the contamination of drinking water in Veneto, which has been going on for decades.
Indeed, the research shows how prolonged exposure to PFAS, even at low levels, can have long-term effects on health, highlighting the urgency of addressing the problem of PFAS contamination and the need to protect the health of exposed populations.

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

Italian version

A new study, published in the journal Chemosphere and carried out in collaboration between the University of Padua and Vicenza Hospital, has explored how PFAS (perfluoroalkyl substances) can affect human health, in particular by altering calcium metabolism. The research, funded by the Veneto Region, involved 1,174 adults from an area that has been affected by drinking water contamination for decades, namely the Veneto Red Area.

PFAS, an acronym for ‘perfluorinated alkylated substances’, originated in the 1940s as so-called ‘synthetic’ chemical compounds. Today we count over 4,000 substances belonging to this family, which are widely used in industry. There are many industrial processes in which PFASs are involved due to their resistance and low affinity for both water and grease. In fact, they are water-repellent and oil-repellent substances.

PFASs, used, therefore, in various industrial and consumer products, are a growing public health concern. One of the most common effects in individuals exposed to even low levels of these substances is osteoporosis, a disease that causes bone fragility, typical of ageing, but which can also occur at a young age in the event of prolonged exposure to PFAS.

Carlo Foresta, coordinator of this study, which involved researchers from Padua, Vicenza and Naples and is the result of four years of work, explained that PFAS damage bone cells and reduce bone density, resulting in the release of calcium in the blood. Previous research by the same group had already shown a decrease in bone density in 18-year-olds living in the contaminated area. This effect was attributed to PFAS interference with the vitamin D receptor, which is crucial for bone health.

The study analysed PFAS, calcium, vitamin D and parathormone levels in the blood of 655 men and 519 women aged between 20 and 69 years, and the results showed that people with higher PFAS concentrations also had higher levels of calcium in their blood. However, the researchers ruled out that this alteration was due to changes in vitamin D or parathormone levels, suggesting instead a direct interference of PFAS with bone metabolism.

Andrea Di Nisio, first author of the research, explained that the observed increase in calcium could result from the release of calcium from the bones, in particular through the activation of osteoclasts, the cells responsible for bone resorption. This mechanism could explain the loss of bone density found in previous studies.

The results achieved contribute to the growing interest in the impact of PFAS on the environment and public health, with particular attention to the contamination of drinking water in Veneto, which has been going on for decades.
Indeed, the research shows how prolonged exposure to PFAS, even at low levels, can have long-term effects on health, highlighting the urgency of addressing the problem of PFAS contamination and the need to protect the health of exposed populations.

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Italian version

A new study, published in the journal Chemosphere and carried out in collaboration between the University of Padua and Vicenza Hospital, has explored how PFAS (perfluoroalkyl substances) can affect human health, in particular by altering calcium metabolism. The research, funded by the Veneto Region, involved 1,174 adults from an area that has been affected by drinking water contamination for decades, namely the Veneto Red Area.

PFAS, an acronym for ‘perfluorinated alkylated substances’, originated in the 1940s as so-called ‘synthetic’ chemical compounds. Today we count over 4,000 substances belonging to this family, which are widely used in industry. There are many industrial processes in which PFASs are involved due to their resistance and low affinity for both water and grease. In fact, they are water-repellent and oil-repellent substances.

PFASs, used, therefore, in various industrial and consumer products, are a growing public health concern. One of the most common effects in individuals exposed to even low levels of these substances is osteoporosis, a disease that causes bone fragility, typical of ageing, but which can also occur at a young age in the event of prolonged exposure to PFAS.

Carlo Foresta, coordinator of this study, which involved researchers from Padua, Vicenza and Naples and is the result of four years of work, explained that PFAS damage bone cells and reduce bone density, resulting in the release of calcium in the blood. Previous research by the same group had already shown a decrease in bone density in 18-year-olds living in the contaminated area. This effect was attributed to PFAS interference with the vitamin D receptor, which is crucial for bone health.

The study analysed PFAS, calcium, vitamin D and parathormone levels in the blood of 655 men and 519 women aged between 20 and 69 years, and the results showed that people with higher PFAS concentrations also had higher levels of calcium in their blood. However, the researchers ruled out that this alteration was due to changes in vitamin D or parathormone levels, suggesting instead a direct interference of PFAS with bone metabolism.

Andrea Di Nisio, first author of the research, explained that the observed increase in calcium could result from the release of calcium from the bones, in particular through the activation of osteoclasts, the cells responsible for bone resorption. This mechanism could explain the loss of bone density found in previous studies.

The results achieved contribute to the growing interest in the impact of PFAS on the environment and public health, with particular attention to the contamination of drinking water in Veneto, which has been going on for decades.
Indeed, the research shows how prolonged exposure to PFAS, even at low levels, can have long-term effects on health, highlighting the urgency of addressing the problem of PFAS contamination and the need to protect the health of exposed populations.

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Italian version

A new study, published in the journal Chemosphere and carried out in collaboration between the University of Padua and Vicenza Hospital, has explored how PFAS (perfluoroalkyl substances) can affect human health, in particular by altering calcium metabolism. The research, funded by the Veneto Region, involved 1,174 adults from an area that has been affected by drinking water contamination for decades, namely the Veneto Red Area.

PFAS, an acronym for ‘perfluorinated alkylated substances’, originated in the 1940s as so-called ‘synthetic’ chemical compounds. Today we count over 4,000 substances belonging to this family, which are widely used in industry. There are many industrial processes in which PFASs are involved due to their resistance and low affinity for both water and grease. In fact, they are water-repellent and oil-repellent substances.

PFASs, used, therefore, in various industrial and consumer products, are a growing public health concern. One of the most common effects in individuals exposed to even low levels of these substances is osteoporosis, a disease that causes bone fragility, typical of ageing, but which can also occur at a young age in the event of prolonged exposure to PFAS.

Carlo Foresta, coordinator of this study, which involved researchers from Padua, Vicenza and Naples and is the result of four years of work, explained that PFAS damage bone cells and reduce bone density, resulting in the release of calcium in the blood. Previous research by the same group had already shown a decrease in bone density in 18-year-olds living in the contaminated area. This effect was attributed to PFAS interference with the vitamin D receptor, which is crucial for bone health.

The study analysed PFAS, calcium, vitamin D and parathormone levels in the blood of 655 men and 519 women aged between 20 and 69 years, and the results showed that people with higher PFAS concentrations also had higher levels of calcium in their blood. However, the researchers ruled out that this alteration was due to changes in vitamin D or parathormone levels, suggesting instead a direct interference of PFAS with bone metabolism.

Andrea Di Nisio, first author of the research, explained that the observed increase in calcium could result from the release of calcium from the bones, in particular through the activation of osteoclasts, the cells responsible for bone resorption. This mechanism could explain the loss of bone density found in previous studies.

The results achieved contribute to the growing interest in the impact of PFAS on the environment and public health, with particular attention to the contamination of drinking water in Veneto, which has been going on for decades.
Indeed, the research shows how prolonged exposure to PFAS, even at low levels, can have long-term effects on health, highlighting the urgency of addressing the problem of PFAS contamination and the need to protect the health of exposed populations.

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Premio sulla Sindrome di Pitt-Hopkins - Scadenza 01-09-2025

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Info e bando

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Premio per le migliori tesi di laurea e di specializzazione in discipline medico/sanitarie, delle scienze dell’educazione e della formazione che abbiano per oggetto la sindrome di Pitt Hopkins e le sue problematiche.

Info e bando

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Premio per le migliori tesi di laurea e di specializzazione in discipline medico/sanitarie, delle scienze dell’educazione e della formazione che abbiano per oggetto la sindrome di Pitt Hopkins e le sue problematiche.

Info e bando

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Premio per le migliori tesi di laurea e di specializzazione in discipline medico/sanitarie, delle scienze dell’educazione e della formazione che abbiano per oggetto la sindrome di Pitt Hopkins e le sue problematiche.

Info e bando

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Premio per le migliori tesi di laurea e di specializzazione in discipline medico/sanitarie, delle scienze dell’educazione e della formazione che abbiano per oggetto la sindrome di Pitt Hopkins e le sue problematiche.

Info e bando

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Premio per le migliori tesi di laurea e di specializzazione in discipline medico/sanitarie, delle scienze dell’educazione e della formazione che abbiano per oggetto la sindrome di Pitt Hopkins e le sue problematiche.

Info e bando

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Info e bando

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Info e bando

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Premio per le migliori tesi di laurea e di specializzazione in discipline medico/sanitarie, delle scienze dell’educazione e della formazione che abbiano per oggetto la sindrome di Pitt Hopkins e le sue problematiche.

Info e bando

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Premio per le migliori tesi di laurea e di specializzazione in discipline medico/sanitarie, delle scienze dell’educazione e della formazione che abbiano per oggetto la sindrome di Pitt Hopkins e le sue problematiche.

Info e bando

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Premio per le migliori tesi di laurea e di specializzazione in discipline medico/sanitarie, delle scienze dell’educazione e della formazione che abbiano per oggetto la sindrome di Pitt Hopkins e le sue problematiche.

Info e bando

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Premio per le migliori tesi di laurea e di specializzazione in discipline medico/sanitarie, delle scienze dell’educazione e della formazione che abbiano per oggetto la sindrome di Pitt Hopkins e le sue problematiche.

Info e bando

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

Premio per le migliori tesi di laurea e di specializzazione in discipline medico/sanitarie, delle scienze dell’educazione e della formazione che abbiano per oggetto la sindrome di Pitt Hopkins e le sue problematiche.

Info e bando

[safe_summary] => ) ) ) [field_accordion_state] => Array ( [und] => Array ( [0] => Array ( [value] => chiuso ) ) ) [field_allegato_element] => Array ( [und] => Array ( [0] => Array ( [nid] => 116982 [access] => 1 [node] => stdClass Object ( [vid] => 484482 [uid] => 2032 [title] => Sindrome di Pitt-Hopkins - bando premio [log] => [status] => 1 [comment] => 0 [promote] => 1 [sticky] => 0 [nid] => 116982 [type] => allegato [language] => it [created] => 1740563812 [changed] => 1740563812 [tnid] => 0 [translate] => 0 [revision_timestamp] => 1740563812 [revision_uid] => 2032 [taxonomy_vocabulary_2] => Array ( ) [taxonomy_vocabulary_8] => Array ( ) [body] => Array ( ) [field_titolo_frontend_all] => Array ( [und] => Array ( [0] => Array ( [value] => Bando [format] => [safe_value] => Bando ) ) ) [field_allegato_file] => Array ( [und] => Array ( [0] => Array ( [fid] => 137769 [uid] => 2032 [filename] => 2025-01-20 - AISPH - Bando premi di laurea-specializzazione r1.pdf [uri] => public://2025/2025-01-20 - AISPH - Bando premi di laurea-specializzazione r1.pdf [filemime] => application/pdf [filesize] => 282825 [status] => 1 [timestamp] => 1740563726 [type] => document [field_folder] => Array ( [und] => Array ( [0] => Array ( [tid] => 2664 ) ) ) [metadata] => Array ( ) [display] => 1 [description] => ) ) ) [name] => francesca.forzan [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 484482 [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] => Premio sulla Sindrome di Pitt-Hopkins - Scadenza 01-09-2025 [format] => [safe_value] => Premio sulla Sindrome di Pitt-Hopkins - Scadenza 01-09-2025 ) ) ) [name] => francesca.forzan [picture] => 0 [data] => b:0; [num_revisions] => 1 [current_revision_id] => 484483 [is_current] => 1 [is_pending] => [revision_moderation] => [entity_view_prepared] => 1 ) [#items] => Array ( [0] => Array ( [value] => h3 ) ) [#formatter] => text_default [0] => Array ( [#markup] => h3 ) ) )

Sindrome di Pitt-Hopkins - bando premio

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