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随着工作强度增加,个体人类肌纤维中代谢物的渐进性变化。

Progressive metabolite changes in individual human muscle fibers with increasing work rates.

作者信息

Ivy J L, Chi M M, Hintz C S, Sherman W M, Hellendall R P, Lowry O H

出版信息

Am J Physiol. 1987 Jun;252(6 Pt 1):C630-9. doi: 10.1152/ajpcell.1987.252.6.C630.

Abstract

Muscle biopsies were obtained from vastus lateralis muscles of four volunteers exercising at increasing work rates on a bicycle ergometer. Samples were taken at rest (t1), after a work load 23% below the blood lactate threshold (t2), 23% above this threshold (t3), and at exhaustion (t4). Individual muscle fibers were typed by their lactate dehydrogenase and adenylokinase levels and assayed for lactate, glucose-6-phosphate, and malate, (which preliminary data indicated to be the most responsive to increased activity) as well as ATP and phosphocreatine. The results in three of the four cases indicated that by the time of the t2 sample, almost all fibers, regardless of type, had been recruited. Additionally, there were no major differences in lactate concentration between type 1 and 2 fibers from muscle samples taken at t1, t2, and t3. It is concluded that in a muscle with fast-twitch glycolytic and slow-twitch oxidative fibers, all fibers share in the contraction to a substantial degree, even at moderate work loads, and that both the type 1 and 2 fibers contribute significantly to the initial rise in blood lactate during a graded exercise task. Metabolite responses in type 2 fibers differed in certain respects among the four participants. This is attributed to differences in their training backgrounds and consequent differences in type 2 fiber oxidative enzyme levels.

摘要

从四名志愿者的股外侧肌获取肌肉活检样本,这些志愿者在自行车测力计上以递增的工作强度进行锻炼。在休息时(t1)、低于血乳酸阈值23%的工作负荷后(t2)、高于该阈值23%时(t3)以及疲劳时(t4)采集样本。根据乳酸脱氢酶和腺苷酸激酶水平对单个肌纤维进行分型,并检测乳酸、葡萄糖-6-磷酸和苹果酸(初步数据表明这些物质对活动增加反应最为敏感)以及三磷酸腺苷(ATP)和磷酸肌酸。四个病例中的三个结果表明,到t2样本采集时,几乎所有纤维,无论何种类型,均已被募集。此外,在t1、t2和t3采集的肌肉样本中,1型和2型纤维之间的乳酸浓度没有重大差异。得出的结论是,在具有快肌糖酵解纤维和慢肌氧化纤维的肌肉中,即使在中等工作负荷下,所有纤维在很大程度上都参与收缩,并且在分级运动任务期间,1型和2型纤维对血乳酸的初始升高均有显著贡献。四名参与者中,2型纤维的代谢物反应在某些方面存在差异。这归因于他们训练背景的差异以及由此导致的2型纤维氧化酶水平的差异。

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