首页> 外文期刊>Biochimica et Biophysica Acta. Molecular and cell biology of Lipids >Role of fatty acid uptake and fatty acid beta-oxidation in mediating insulin resistance in heart and skeletal muscle.
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Role of fatty acid uptake and fatty acid beta-oxidation in mediating insulin resistance in heart and skeletal muscle.

机译:脂肪酸摄取和脂肪酸β-氧化在介导心脏和骨骼肌胰岛素抵抗中的作用。

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摘要

Fatty acids are a major fuel source used to sustain contractile function in heart and oxidative skeletal muscle. To meet the energy demands of these muscles, the uptake and beta-oxidation of fatty acids must be coordinately regulated in order to ensure an adequate, but not excessive, supply for mitochondrial beta-oxidation. However, imbalance between fatty acid uptake and beta-oxidation has the potential to contribute to muscle insulin resistance. The action of insulin is initiated by binding to its receptor and activation of the intrinsic protein tyrosine kinase activity of the receptor, resulting in the initiation of an intracellular signaling cascade that eventually leads to insulin-mediated alterations in a number of cellular processes, including an increase in glucose transport. Accumulation of fatty acids and lipid metabolites (such as long chain acyl CoA, diacylglycerol, triacylglycerol, and/or ceramide) can lead to alterations in this insulin signaling pathway. An imbalance between fatty acid uptake and oxidation is believed to be responsible for this lipid accumulation, and is thought to be a major cause of insulin resistance in obesity and diabetes, due to lipid accumulation and inhibition of one or more steps in the insulin-signaling cascade. As a result, decreasing muscle fatty acid uptake can improve insulin sensitivity. However, the potential role of increasing fatty acid beta-oxidation in the heart or skeletal muscle in order to prevent cytoplasmic lipid accumulation and decrease insulin resistance is controversial. While increased fatty acid beta-oxidation may lower cytoplasmic lipid accumulation, increasing fatty acid beta-oxidation can decrease muscle glucose metabolism, and incomplete fatty acid oxidation has the potential to also contribute to insulin resistance. In this review, we discuss the proposed mechanisms by which alterations in fatty acid uptake and oxidation contribute to insulin resistance, and how targeting fatty acid uptake and oxidation is a potential therapeutic approach to treat insulin resistance.
机译:脂肪酸是用于维持心脏和氧化性骨骼肌收缩功能的主要燃料来源。为了满足这些肌肉的能量需求,必须协调地调节脂肪酸的摄取和β-氧化,以确保线粒体β-氧化的充足而不是过量的供应。但是,脂肪酸摄入和β-氧化之间的不平衡可能会导致肌肉胰岛素抵抗。胰岛素的作用是通过与其受体结合并激活受体的固有蛋白酪氨酸激酶活性而启动的,从而导致细胞内信号级联反应的启动,最终导致许多细胞过程中胰岛素介导的改变,包括葡萄糖转运增加。脂肪酸和脂质代谢产物(例如长链酰基辅酶A,二酰基甘油,三酰基甘油和/或神经酰胺)的积累会导致此胰岛素信号传导途径的改变。脂肪酸摄取和氧化之间的不平衡被认为是造成这种脂质积累的原因,并且被认为是肥胖症和糖尿病患者胰岛素抵抗的主要原因,这归因于脂质的积累和胰岛素信号传递步骤的抑制。级联。结果,减少肌肉脂肪酸摄取可以改善胰岛素敏感性。然而,为了防止细胞质脂质蓄积和降低胰岛素抵抗,增加心脏或骨骼肌中脂肪酸β-氧化的潜在作用是有争议的。虽然增加的脂肪酸β-氧化作用可能会降低细胞质脂质的积累,但是增加的脂肪酸β-氧化作用可能会降低肌肉的葡萄糖代谢,并且不完全的脂肪酸氧化作用还可能导致胰岛素抵抗。在这篇综述中,我们讨论了提出的机制,脂肪酸摄取和氧化的改变通过这些机制促进胰岛素抵抗,以及如何靶向脂肪酸摄取和氧化是治疗胰岛素抵抗的潜在治疗方法。

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