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Regulation and limitations to fatty acid oxidation during exercise

机译:运动中脂肪酸氧化的调节和限制

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摘要

Fatty acids (FAs) as fuel for energy utilization during exercise originate from different sources: FAs transported in the circulation either bound to albumin or as triacylglycerol (TG) carried by very low density lipoproteins and FAs from lipolysis of muscle TG stores. Despite a high rate of energy expenditure during high intensity exercise the total FA oxidation is suppressed to below that observed during moderate intensity exercise. Although this has been known for many years, the mechanisms behind this phenomenon are still not fully elucidated. A failure of adipose tissue to deliver sufficient FAs to exercising muscle has been proposed, but evidence is emerging that factors within the muscle might be of more importance. The high rate of glycolysis during high intensity exercise might be the ‘driving force’ via the increased production of acetyl-CoA, which in turn is trapped by carnitine. This will lead to decreased availability of free carnitine for long chain FA transport into mitochondria. This review summarizes our present view on how FA metabolism is regulated during exercise with a special focus on the limitations in FA oxidation in the transition from moderate to high intensity exercise in humans.
机译:脂肪酸(FAs)可以作为运动中能量利用的燃料,其来源不同:循环中的FAs与白蛋白结合,或者由极低密度脂蛋白携带的三酰甘油(TG)和肌肉TG存储脂解的FAs。尽管在高强度运动中能量消耗率很高,但总的FA氧化被抑制到低于中等强度运动中观察到的水平。尽管已经知道很多年了,但仍未完全阐明这种现象背后的机制。已经提出了使脂肪组织无法提供足够的FA来锻炼肌肉的建议,但是有证据表明,肌肉内的因素可能更为重要。在高强度运动中,较高的糖酵解速率可能是乙酰辅酶A产量增加的“驱动力”,而乙酰辅酶A则被肉碱捕获。这将导致游离肉碱可用于长链FA转运至线粒体的减少。这篇综述总结了我们目前对运动过程中FA代谢调控的观点,特别关注了人类从中度运动到高强度运动过渡过程中FA氧化的局限性。

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