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Indhold leveret af Adeline Lopez and NIEHS Superfund Research Program. Alt podcastindhold inklusive episoder, grafik og podcastbeskrivelser uploades og leveres direkte af Adeline Lopez and NIEHS Superfund Research Program eller deres podcastplatformspartner. Hvis du mener, at nogen bruger dit ophavsretligt beskyttede værk uden din tilladelse, kan du følge processen beskrevet her https://da.player.fm/legal.
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Dioxin Disrupts Liver Cells in Mice, Potential Link with Liver Disease

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Manage episode 354429135 series 3017470
Indhold leveret af Adeline Lopez and NIEHS Superfund Research Program. Alt podcastindhold inklusive episoder, grafik og podcastbeskrivelser uploades og leveres direkte af Adeline Lopez and NIEHS Superfund Research Program eller deres podcastplatformspartner. Hvis du mener, at nogen bruger dit ophavsretligt beskyttede værk uden din tilladelse, kan du følge processen beskrevet her https://da.player.fm/legal.
An NIEHS Superfund Research Program (SRP)-funded study in mice reported that exposure to a type of dioxin can alter cells in the liver, their metabolic characteristics, and how they are organized within the liver. According to the researchers, these changes in cell behavior and organization play a role in the development of dioxin-induced liver diseases, such as fibrosis and fatty liver disease.
  continue reading

158 episoder

Artwork
iconDel
 
Manage episode 354429135 series 3017470
Indhold leveret af Adeline Lopez and NIEHS Superfund Research Program. Alt podcastindhold inklusive episoder, grafik og podcastbeskrivelser uploades og leveres direkte af Adeline Lopez and NIEHS Superfund Research Program eller deres podcastplatformspartner. Hvis du mener, at nogen bruger dit ophavsretligt beskyttede værk uden din tilladelse, kan du følge processen beskrevet her https://da.player.fm/legal.
An NIEHS Superfund Research Program (SRP)-funded study in mice reported that exposure to a type of dioxin can alter cells in the liver, their metabolic characteristics, and how they are organized within the liver. According to the researchers, these changes in cell behavior and organization play a role in the development of dioxin-induced liver diseases, such as fibrosis and fatty liver disease.
  continue reading

158 episoder

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