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对肌肉血流减少的代谢适应。II. 机制及有益作用。

Metabolic adaptation to reduced muscle blood flow. II. Mechanisms and beneficial effects.

作者信息

Elander A, Idström J P, Holm S, Scherstén T, Bylund-Fellenius A C

出版信息

Am J Physiol. 1985 Jul;249(1 Pt 1):E70-6. doi: 10.1152/ajpendo.1985.249.1.E70.

Abstract

Increased mitochondrial enzyme activities are induced in rat muscles after common iliac artery ligation, giving a 76-93% blood flow reduction, and 6 days of intermittent muscle stimulation. To elucidate the trigger for this enzyme induction, the acute alterations in the metabolite pattern during contractions were evaluated. More pronounced changes in intramuscular PO2, creatine phosphate, ATP/ADP, lactate/pyruvate, and glycogen were observed in the ligated leg. The benefit of this enzyme alteration was investigated with the hindlimb perfusion technique. Enzymatically adapted and control legs were perfused at reduced flow during contractions. Similar oxygen consumption and glucose uptake but a significantly lower lactate release were observed in the adapted legs. A lower lactate level, lactate/pyruvate, and a better maintained creatine phosphate/creatine were found in the adapted soleus muscle. The results demonstrate that the increase of mitochondrial enzymes is preceded by acute alterations in energy metabolites due to intermittent hypoxia during contractions at reduced flow and that this enzyme adaptation allows the muscle tissue to maintain a lower anaerobic metabolism and a better energy state during exercise.

摘要

在大鼠肌肉中,通过结扎髂总动脉(导致血流量减少76% - 93%)并进行6天的间歇性肌肉刺激后,线粒体酶活性增强。为了阐明这种酶诱导的触发因素,对收缩过程中代谢物模式的急性变化进行了评估。在结扎的腿部观察到肌肉内氧分压、磷酸肌酸、ATP/ADP、乳酸/丙酮酸和糖原更为明显的变化。采用后肢灌注技术研究了这种酶改变的益处。在收缩期间,以降低的血流量对酶适应性腿部和对照腿部进行灌注。在适应性腿部观察到相似的耗氧量和葡萄糖摄取,但乳酸释放显著降低。在适应性比目鱼肌中发现较低的乳酸水平、乳酸/丙酮酸以及更好维持的磷酸肌酸/肌酸。结果表明,线粒体酶的增加之前是由于在低流量收缩期间间歇性缺氧导致的能量代谢物的急性变化,并且这种酶适应性使肌肉组织在运动期间能够维持较低的无氧代谢和更好的能量状态。

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