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  • 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/29.09%3A_Immunometabolism-__Cellular_Metabolism_Turns_Immune_Regulator
    This review article discusses the role of immunometabolism, illustrating how cellular metabolism regulates immune cell function. It describes distinct metabolic signatures of immune cells and how thes...This review article discusses the role of immunometabolism, illustrating how cellular metabolism regulates immune cell function. It describes distinct metabolic signatures of immune cells and how these adapt in response to different physiological conditions such as activation and nutrient availability. Key processes like glycolysis and oxidative phosphorylation are explained as mechanisms to meet energy and biosynthesis requirements.
  • 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/29.08%3A_Fundamentals_of_cancer_metabolism
    This chapter explores metabolic reprogramming in cancer cells. It details how altered glucose and glutamine metabolism, the Warburg effect, and enzyme regulation support rapid proliferation. The chapt...This chapter explores metabolic reprogramming in cancer cells. It details how altered glucose and glutamine metabolism, the Warburg effect, and enzyme regulation support rapid proliferation. The chapter also examines the interplay between oncogenic signals and metabolic pathways, offering insights into potential therapeutic strategies.

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