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Direct metabolic regulation in skeletal muscle and fat tissue by leptin: implications for glucose and fatty acids homeostasis

机译:Leptin的骨骼肌和脂肪组织中的直接代谢调节:对葡萄糖和脂肪酸的影响稳态

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In recent years, the adipose tissue has emerged as an important endocrine organ. It is now recognized that besides storing energy the adipocytes also secrete several bioactive peptides, collectively called adipocytokines. Among these adipocytokines, leptin, the product of the ob gene, has been extensively investigated over the last decade. Skeletal muscle and adipose tissue, two major tissues involved in the regulation of glucose and fatty acids metabolism, have been consistently demonstrated to be directly affected by leptin. By binding to its receptors located in skeletal muscle and fat cells, leptin promotes energy dissipation and prevents fatty acid accumulation and 'lipotoxicity' in these tissues. On the other hand, under conditions of peripheral leptin resistance, such as observed in obese humans, the activation of pathways involved in fatty acid oxidation may be impaired. This leads to intracellular accumulation of lipid intermediates and causes insulin resistance. This review examines the metabolic pathways that are directly activated by leptin and how it regulates glucose and fatty acids metabolism in skeletal muscle and fat tissue. Furthermore, the impact of peripheral leptin resistance in these tissues leading to dysfunctional metabolic adaptations is also discussed.
机译:近年来,脂肪组织已成为一个重要的内分泌器官。现在认识到,除了储存能量之外,脂肪细胞还分泌了几种生物活性肽,共同称为adipofocytokines。在这些脂肪细胞因子中,瘦素,OB基因的产物在过去十年中被广泛调查。骨骼肌和脂肪组织,参与葡萄糖和脂肪酸代谢的调节的两个主要组织一直证明由瘦素直接影响。通过与位于骨骼肌和脂肪细胞的受体结合,瘦素促进能量耗散并防止这些组织中的脂肪酸积聚和“脂毒性”。另一方面,在外周瘦蛋白抗性的条件下,例如在肥胖人类中观察到的,可以损害参与脂肪酸氧化的途径的活化。这导致脂质中间体的细胞内积聚并导致胰岛素抗性。本综述检测由瘦素直接激活的代谢途径以及它如何调节葡萄糖和脂肪酸在骨骼肌和脂肪组织中的代谢。此外,还讨论了这些组织中外周血瘦蛋白抗性导致功能障碍代谢适应的影响。

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