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血管紧张素 II 介导的血管收缩改善了灌注骨骼肌的收缩和代谢。

Perfused skeletal muscle contraction and metabolism improved by angiotensin II-mediated vasoconstriction.

作者信息

Rattigan S, Dora K A, Tong A C, Clark M G

机构信息

Division of Biochemistry, University of Tasmania, Hobart, Australia.

出版信息

Am J Physiol. 1996 Jul;271(1 Pt 1):E96-103. doi: 10.1152/ajpendo.1996.271.1.E96.

Abstract

In the present study, the effects of angiotensin II (ANG II) on tension development and associated metabolism during twitch and tetanic stimulation via the sciatic nerve of the gastrocnemius-plantaris-soleus muscle group of the perfused rat hindlimb were investigated. Rat hindlimbs were perfused at constant flow with an erythrocyte-containing medium equilibrated with 95% air-5% CO2 at 37 degrees C, and determinations of oxygen and glucose uptake, lactate and glycerol release, and 2-deoxy-D-[1-3H]glucose uptake (Rg') into individual muscles were carried out. ANG II (1 nM) infusion alone caused vasoconstriction with increased oxygen (55%) and glucose (98%) uptake and lactate (37%) and glycerol (64%) release. ANG II infusion during muscle contraction gave less vasoconstriction but increased the tension development during tetanic stimulation by 80% and increased the contraction-induced oxygen uptake and Rg' by plantaris and gastrocnemius red and white muscles. These effects of ANG II may have been due to increased nutritive flow to contracting muscles or to redirection of flow from noncontracting and type I fiber muscles to the type II fiber contracting muscles in the hindlimb. The results indicate that the regulation of flow by the vasculature is an important regulator of muscle contraction and metabolism.

摘要

在本研究中,研究了血管紧张素II(ANG II)对灌注大鼠后肢腓肠肌-比目鱼肌-跖肌肌群坐骨神经在单收缩和强直刺激期间张力发展及相关代谢的影响。大鼠后肢以恒定流量用含红细胞的培养基灌注,该培养基在37℃下用95%空气-5%二氧化碳平衡,并且测定了单个肌肉的氧摄取、葡萄糖摄取、乳酸和甘油释放以及2-脱氧-D-[1-3H]葡萄糖摄取(Rg')。单独输注ANG II(1 nM)导致血管收缩,同时氧摄取(55%)和葡萄糖摄取(98%)增加,乳酸(37%)和甘油(64%)释放增加。肌肉收缩期间输注ANG II导致血管收缩程度较小,但在强直刺激期间张力发展增加80%,并且增加了跖肌、腓肠肌红肌和白肌收缩诱导的氧摄取和Rg'。ANG II的这些作用可能是由于向收缩肌肉的营养性血流增加,或者是由于后肢中血流从非收缩肌和I型纤维肌肉重新分配至II型纤维收缩肌肉。结果表明,血管系统对血流的调节是肌肉收缩和代谢的重要调节因素。

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