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Lipolysis

  • Effects of Glucagon, Glycerol, and Glucagon Plus Glycerol On

    Effects of Glucagon, Glycerol, and Glucagon Plus Glycerol On

  • THE AEROBIC (Air-Robic!) PATHWAYS

    THE AEROBIC (Air-Robic!) PATHWAYS

  • Adipocyte Glucocorticoid Receptor Is Important in Lipolysis and Insulin Resistance Due to Exogenous Steroids, but Not Insulin Resistance Caused by High Fat Feeding

    Adipocyte Glucocorticoid Receptor Is Important in Lipolysis and Insulin Resistance Due to Exogenous Steroids, but Not Insulin Resistance Caused by High Fat Feeding

  • Glycolysis and Glyceroneogenesis In

    Glycolysis and Glyceroneogenesis In

  • Genomic and Non-Genomic Actions of Glucocorticoids on Adipose Tissue Lipid Metabolism

    Genomic and Non-Genomic Actions of Glucocorticoids on Adipose Tissue Lipid Metabolism

  • Unbalanced Lipolysis Results in Lipotoxicity and Mitochondrial Damage in Peroxisome-Deficient Pex19 Mutants

    Unbalanced Lipolysis Results in Lipotoxicity and Mitochondrial Damage in Peroxisome-Deficient Pex19 Mutants

  • Catecholamine-Induced Lipolysis in Obesity

    Catecholamine-Induced Lipolysis in Obesity

  • Increased Lipolysis and Its Consequences On

    Increased Lipolysis and Its Consequences On

  • Regulation of Ketone Body and Coenzyme a Metabolism in Liver

    Regulation of Ketone Body and Coenzyme a Metabolism in Liver

  • Lipolysis, Β-Oxidation & Ketone Body Formation

    Lipolysis, Β-Oxidation & Ketone Body Formation

  • Modulation of Lipolysis and Glycolysis Pathways in Cancer Stem Cells Changed Multipotentiality and Differentiation Capacity Towa

    Modulation of Lipolysis and Glycolysis Pathways in Cancer Stem Cells Changed Multipotentiality and Differentiation Capacity Towa

  • Adropin Slightly Modulates Lipolysis, Lipogenesis and Expression of Adipokines but Not Glucose Uptake in Rodent Adipocytes

    Adropin Slightly Modulates Lipolysis, Lipogenesis and Expression of Adipokines but Not Glucose Uptake in Rodent Adipocytes

  • The Regulation of Fat Metabolism During Aerobic Exercise

    The Regulation of Fat Metabolism During Aerobic Exercise

  • The Regulation of Triglyceride Synthesis and Fatty Acid Synthesis in Rat Epididymal Adipose Tissue EFFECTS of ALTERED DIETARY and HORMONAL CONDITIONS

    The Regulation of Triglyceride Synthesis and Fatty Acid Synthesis in Rat Epididymal Adipose Tissue EFFECTS of ALTERED DIETARY and HORMONAL CONDITIONS

  • Handout 7 Triacylglycerol Synthesis

    Handout 7 Triacylglycerol Synthesis

  • Mitochondrial Dysfunction Enhances Lipolysis and Intracellular Lipid Accumulation in 3T3-L1 Adipocytes

    Mitochondrial Dysfunction Enhances Lipolysis and Intracellular Lipid Accumulation in 3T3-L1 Adipocytes

  • Cellular Changes in Lipid Metabolism in Response to Altered Energy Balance and Heat Stress in Lactating Dairy Cows Ma

    Cellular Changes in Lipid Metabolism in Response to Altered Energy Balance and Heat Stress in Lactating Dairy Cows Ma

  • Section 12: Fatty Acid and Lipid Metabolism Chapter 27: Fatty Acid Degradation Chapter 28: Fatty Acid Synthesis

    Section 12: Fatty Acid and Lipid Metabolism Chapter 27: Fatty Acid Degradation Chapter 28: Fatty Acid Synthesis

Top View
  • Lipid Metabolism in the Elderly
  • Lipolysis and Lipogenesis from Glucose in Human Fat Cells of Different Sizes: Effects of Insulin, Epinephrine, and Theophylline
  • Lipolysis and Lipases in White Adipose Tissue – an Update
  • Bone Marrow and Adipose Tissue Adenosine Receptors Effect
  • The Adipose Tissue Metabolism: Role of Testosterone and Dehydroepiandrosterone
  • Hepatic Acetyl Coa Links Adipose Tissue Inflammation to Hepatic
  • REVIEW Glucocorticoids and Fatty Acid Metabolism in Humans
  • Hormonal Regulation of Lipolysis and Phosphorylase Activity in Human Fat Cells
  • The Role of Sex Steroids in White Adipose Tissue Adipocyte Function
  • Oxandrolone Enhances Hepatic Ketogenesis in Adult Men Gloria Lena Vega, Phd,*Y Jacob J
  • Energy Expenditure, Lipolysis, and Glucose Production in Preterm Infants Treated with Theophylline
  • Recent Developments on Lipolysis Regulation in Humans and Discovery of a New Lipolytic Pathway
  • The Metabolism of Subcutaneous Adipose Tissue in the Immediate Postnatal Period of Human Neonates
  • Metabolism (Degradation) of Triacylglycerols and Fatty Acids
  • De Novo Lipogenesis in Humans: Metabolic and Regulatory Aspects


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