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  • https://bio.libretexts.org/Bookshelves/Biochemistry/Fundamentals_of_Biochemistry_(Jakubowski_and_Flatt)/Unit_IV_-_Special_Topics/32%3A_Biochemistry_and_Climate_Change/32.13%3A_Biochemistry_Climate_Change_and_Human_Health
    The page discusses the biochemical impacts of climate change on human health, focusing on various areas like heat stress, infectious diseases, and air quality. It outlines learning goals for biochemis...The page discusses the biochemical impacts of climate change on human health, focusing on various areas like heat stress, infectious diseases, and air quality. It outlines learning goals for biochemistry majors, emphasizing the importance of understanding how rising temperatures and environmental shifts alter biochemical processes, influence disease dynamics, and affect nutrient quality.
  • https://bio.libretexts.org/Bookshelves/Biochemistry/Fundamentals_of_Biochemistry_(Jakubowski_and_Flatt)/Unit_IV_-_Special_Topics/29%3A_Integration_of_Mammalian_Metabolism_-_Capstone_Volume_II/29.11%3A_Gut_microbiota-derived_metabolites_as_central_regulators_in_metabolic_disorders
    The article discusses the significant role of gut microbiota-derived metabolites in metabolic disorders, which are increasing globally. These metabolites, from compounds like bile acids, short-chain f...The article discusses the significant role of gut microbiota-derived metabolites in metabolic disorders, which are increasing globally. These metabolites, from compounds like bile acids, short-chain fatty acids, and branched-chain amino acids, are central to understanding the pathogenesis of metabolic disorders such as obesity and diabetes. They have potential as biomarkers for early diagnosis and targets for therapeutic interventions.

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