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Fatty acid oxidation by liver and muscle preparations of exhaustively exercised rats.

机译:力竭运动大鼠肝脏和肌肉制剂中的脂肪酸氧化。

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摘要

The influence of exhaustive exercise on the capacity of liver and muscle of rats to oxidize fatty acids was investigated in vitro. The rate of oxidation of fatty acids by liver preparations was significantly elevated as a result of exhaustion. Concurrently, the concentrations of beta-hydroxybutyrate were elevated in the plasma of the exhausted rats, suggesting that oxidation of fatty acids was also elevated in vivo. These findings are analogous to the findings of increased oxidation of fatty acids that results from training. In muscle, oxidation of palmitate, palmitoylcarnitine and beta-hydroxybutyrate by homogenates and isolated mitochondria was depressed with exercise. Despite the decrease in the oxidative capacity of the muscle preparations, the activities of several enzymes of beta-oxidation were either increased or unchanged as a result of exercise, suggesting that the depression in fatty acid oxidation may not be related to alterations in the process of beta-oxidation. Further studies showed that oxidation of [2-(14)C]pyruvate by muscle was depressed, whereas oxidation of [1-(14)C]pyruvate was not changed as a result of exercise. These results suggest that the decrease in fatty acid oxidation may be related to aberrations in the oxidation of acetyl-CoA. The changes in fatty acid oxidation that were observed, which are at variance with what is reported to occur with training, may have resulted from increased fragility of muscle mitochondria as a result of exercise. This increased fragility may render the mitochondria more susceptible to experimental manipulations in vitro and a subsequent loss of normal function.
机译:体外研究了力竭运动对大鼠肝脏和肌肉氧化脂肪酸能力的影响。由于精疲力竭,肝脏制剂对脂肪酸的氧化速率显着提高。同时,精疲力尽大鼠的血浆中β-羟基丁酸酯的浓度升高,表明脂肪酸的体内氧化也升高。这些发现类似于训练引起的脂肪酸氧化增加的发现。在肌肉中,运动会抑制棕榈酸,棕榈酰肉碱和β-羟基丁酸酯被匀浆和分离的线粒体氧化。尽管肌肉制剂的氧化能力下降,但由于运动,某些β-氧化酶的活性增加或不变,这表明脂肪酸氧化的降低可能与肌肉氧化过程的改变无关。 β-氧化。进一步的研究表明,肌肉可抑制[2-(14)C]丙酮酸的氧化,而运动后[1-(14)C]丙酮酸的氧化不会改变。这些结果表明,脂肪酸氧化的减少可能与乙酰辅酶A的氧化畸变有关。观察到的脂肪酸氧化变化与据报道的训练变化不符,可能是运动引起的肌肉线粒体脆弱性增加所致。这种增加的脆弱性可能使线粒体更易于在体外进行实验操作,并随后丧失正常功能。

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