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人体的体育锻炼。骨骼肌代谢与肌肉形态及跑步能力的关系。

Physical training in man. Skeletal muscle metabolism in relation to muscle morphology and running ability.

作者信息

Bylund A C, Bjurö T, Cederblad G, Holm J, Lundholm K, Sjöstroöm M, Angquist K A, Scherstén T

出版信息

Eur J Appl Physiol Occup Physiol. 1977 Mar 15;36(3):151-69. doi: 10.1007/BF00421747.

Abstract

The metabolic and morphologic adaptation to physical training in skeletal muscle tissue of eleven middle-aged, physically untrained men was studied. Muscle biopsies were taken from the vastus lateralis before, after 8 weeks and after 6 months of physical training for analysis of metabolic and morphologic variables. Glucose tolerance test indicated increased insulin sensitivity after 6 months of physical training. The activities of glycogen phosphorylase, hexokinase and glucose-6-P-dehydrogenase were increased but other enzymes involved in glycogen turnover and glycolysis were unchanged after 6 months of physical traning. The activities of citrate synthase and cytochrome-c-oxidase, representing the oxidative capacity were significantly increased already after 8 weeks of physical training. The incorporation rate of palmitate-carbon into CO2 and triglycerides increased, and the incorporation rate of leucine-carbon into CO2 decreased with 6 months of physical training. The fiber diameter of both Type 1- and Type 2-fibers increased, while the mitochondrial volume increased predominantly in Type 2-fibers. Significant correlations were found between metabolic, physiologic and morphologic variables before and after physical training. The results indicate an increased oxidative capacity, mainly located to Type 2-fibers, and an increased utilization of fatty acids in response to this type of physical training.

摘要

对11名中年、未受过体育训练的男性骨骼肌组织进行体育训练后的代谢和形态学适应情况进行了研究。在体育训练前、8周后和6个月后,从股外侧肌采集肌肉活检样本,用于分析代谢和形态学变量。葡萄糖耐量试验表明,体育训练6个月后胰岛素敏感性增加。糖原磷酸化酶、己糖激酶和葡萄糖-6-磷酸脱氢酶的活性增加,但参与糖原周转和糖酵解的其他酶在体育训练6个月后未发生变化。代表氧化能力的柠檬酸合酶和细胞色素c氧化酶的活性在体育训练8周后就已显著增加。体育训练6个月后,棕榈酸碳转化为二氧化碳和甘油三酯的掺入率增加,亮氨酸碳转化为二氧化碳的掺入率降低。1型和2型纤维的纤维直径均增加,而线粒体体积主要在2型纤维中增加。在体育训练前后的代谢、生理和形态学变量之间发现了显著相关性。结果表明,主要位于2型纤维的氧化能力增加,并且对这种体育训练的反应是脂肪酸利用增加。

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