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运动过程中大鼠呼吸肌糖原代谢的调节

Regulation of glycogen metabolism in rat respiratory muscles during exercise.

作者信息

Namiot Z, Górski J

机构信息

Department of Physiology, Medical School, Białystok, Poland.

出版信息

Eur J Appl Physiol Occup Physiol. 1988;58(1-2):120-4. doi: 10.1007/BF00636614.

Abstract

The effect of prolonged exercise on the glycogen level in the respiratory muscles (diaphragm--D, external intercostal--IE and internal--II) has been studied in four groups of rats: 1-control, 2-fasted for 24 h, 3-treated with nicotinic acid and 4-treated with propranolol. There was a sharp reduction in glycogen level in each muscle after 30 min exercise in the control and fasted groups. Exercise till exhaustion further lowered the glycogen level in D in the control group and in IE and II in the fasted group. In the fasted group, the level of glycogen in each muscle, at rest, and after 30 min exercise, and in IE and II muscles after exercise till exhaustion was lower than in the control group. Nicotinic acid did not affect the glycogen level either at rest or during exercise as compared with the control group. Propranolol increased the glycogen level in the muscles at rest and during 30 min exercise. It partially prevented glycogen mobilization in D and IE and fully in II during exercise till exhaustion. In the control group, 24 and 48 h after exercise till exhaustion, the level of glycogen in each muscle exceeded the resting control value. It is concluded that exercise-induced glycogen metabolism in the respiratory muscles differs in some respects from that in the limb or heart muscles.

摘要

研究了四组大鼠长时间运动对呼吸肌(膈肌 - D、肋间外肌 - IE 和肋间内肌 - II)糖原水平的影响:1 - 对照组,2 - 禁食24小时组,3 - 用烟酸处理组,4 - 用普萘洛尔处理组。在对照组和禁食组中,运动30分钟后,每块肌肉中的糖原水平都急剧下降。运动至 exhaustion(此处未明确准确意思,可能是“疲惫”或“耗尽”等)进一步降低了对照组膈肌以及禁食组肋间外肌和肋间内肌中的糖原水平。在禁食组中,每块肌肉在休息时、运动30分钟后以及运动至 exhaustion 后肋间外肌和肋间内肌中的糖原水平均低于对照组。与对照组相比,烟酸在休息或运动期间均未影响糖原水平。普萘洛尔在休息时和运动30分钟期间增加了肌肉中的糖原水平。在运动至 exhaustion 期间,它部分阻止了膈肌和肋间外肌中的糖原动员,并完全阻止了肋间内肌中的糖原动员。在对照组中,运动至 exhaustion 后24小时和48小时,每块肌肉中的糖原水平超过了休息时的对照值。得出的结论是,运动诱导的呼吸肌糖原代谢在某些方面不同于肢体或心肌中的糖原代谢。

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