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灌注大鼠后肢运动期间不同肌肉类型对血流减少的代谢反应。

Metabolic response in different muscle types to reduced blood flow during exercise in perfused rat hindlimb.

作者信息

Walker P M, Idström J P, Schersten T, Bylund-Fellenius A C

出版信息

Clin Sci (Lond). 1982 Sep;63(3):293-9. doi: 10.1042/cs0630293.

Abstract
  1. In peripheral arterial insufficiency, leg blood flow during exercise is reduced. The aim of this study was to investigate the metabolic response in different muscle types during exercise at reduced versus normal exercise blood flow. 2. A modified rat hindlimb perfusion model was used. Muscle metabolites and distribution of labelled microspheres were analysed in the soleus and the gastrocnemius muscles during exercise induced by sciatic nerve stimulation. 3. Blood flow distribution between the soleus and the gastrocnemius muscles (per unit weight) was 1.7:1 at rest, and this ratio did not change significantly during exercise at reduced flow. 4. There was a more pronounced decrease in the [phosphocreatine], the [glycogen] and the [ATP]/[ADP] ratio as well as a more pronounced increase in the [lactate] and the [lactate]/[Pyruvate] ratio in the gastrocnemius muscle during exercise at reduced blood flow as compared with values obtained at normal exercise flow. In the soleus muscle the difference between the two conditions was confined to an increased [lactate]/[pyruvate] ratio. 5. The results show that a muscle composed mainly of fast-twitch fibres with a high glycolytic and low oxidative capacity is much more susceptible to a reduced exercise flow than a muscle composed of slow-twitch, oxidative fibres. It is suggested that claudicating pain is related to these metabolic changes and it is concluded that pain most probably originates in type II fibers.
摘要
  1. 在周围动脉供血不足时,运动期间腿部血流量会减少。本研究的目的是调查在运动血流量减少与正常运动血流量情况下,不同肌肉类型的代谢反应。2. 使用了一种改良的大鼠后肢灌注模型。在坐骨神经刺激诱导的运动过程中,分析了比目鱼肌和腓肠肌中的肌肉代谢物以及标记微球的分布。3. 比目鱼肌和腓肠肌之间(每单位重量)的血流分布在静息时为1.7:1,在血流量减少的运动过程中该比例没有显著变化。4. 与正常运动血流量时获得的值相比,在血流量减少的运动过程中,腓肠肌中的磷酸肌酸、糖原以及ATP/ADP比值下降更为明显,同时乳酸和乳酸/丙酮酸比值升高更为明显。在比目鱼肌中,两种情况之间的差异仅限于乳酸/丙酮酸比值升高。5. 结果表明,与由慢肌纤维、氧化型纤维组成的肌肉相比,主要由具有高糖酵解能力和低氧化能力的快肌纤维组成的肌肉对运动血流量减少更为敏感。提示间歇性跛行疼痛与这些代谢变化有关,并且得出结论,疼痛很可能起源于II型纤维。

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