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肌肉中胰岛素作用的异质性:血流的影响

Heterogeneity of insulin action in muscle: influence of blood flow.

作者信息

James D E, Burleigh K M, Storlien L H, Bennett S P, Kraegen E W

出版信息

Am J Physiol. 1986 Oct;251(4 Pt 1):E422-30. doi: 10.1152/ajpendo.1986.251.4.E422.

DOI:10.1152/ajpendo.1986.251.4.E422
PMID:3532818
Abstract

The influence of blood flow (BF) and basal neuromotor tone on in vivo insulin-stimulated glucose uptake (Rg') in muscle was examined using the euglycemic clamp plus deoxyglucose/glucose tracer (insulin action) and labeled microsphere (BF) techniques. Anesthesia was used to produce perturbations in BF and/or activity compared with conscious rats. An index of muscle glycolytic flux (Gf) was estimated from Rg' in excess of glycogen synthesis. Gf and glycogen synthesis were significantly increased in soleus and red gastrocnemius (RG) during insulin infusion (150 mU/l) in conscious rats. Rg' was related to muscle BF in conscious rats (r = 0.92). In anesthetized rats, Rg' and BF were reduced in soleus, RG, red quadriceps, and plantaris (e.g., soleus 69%, P less than 0.001, and 80%, P less than 0.001, respectively). However, it is unlikely that Rg' and BF are causally related because fractional extraction of glucose by muscle was low (approximately 9%); fractional extraction increased during anesthesia (17%, P less than 0.01); BF but not Rg' was reduced by anesthesia in extensor digitorum longus, white gastrocnemius, and white quadriceps; and reduced Rg' during anesthesia in soleus and RG was mainly due to reduced GF. In conclusion, BF is not a major contributor to the heterogeneity in insulin-stimulated glucose uptake among individual muscles under basal conditions. These data suggest that neuromotor tone may indirectly influence the magnitude of muscle glucose uptake during insulin elevation via a substrate switching effect. This may give rise to a significant increase in glycolytic flux of glucose in those muscles that exhibit elevated activity even at rest (e.g., soleus).(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

使用正常血糖钳夹加脱氧葡萄糖/葡萄糖示踪剂(胰岛素作用)和标记微球(血流量)技术,研究了血流量(BF)和基础神经运动张力对肌肉中体内胰岛素刺激的葡萄糖摄取(Rg')的影响。与清醒大鼠相比,使用麻醉来干扰血流量和/或活动。根据超过糖原合成的Rg'估算肌肉糖酵解通量(Gf)指数。在清醒大鼠胰岛素输注(150 mU/l)期间,比目鱼肌和红色腓肠肌(RG)的Gf和糖原合成显著增加。清醒大鼠中Rg'与肌肉BF相关(r = 0.92)。在麻醉大鼠中,比目鱼肌、RG、红色股四头肌和跖肌的Rg'和BF降低(例如,比目鱼肌分别降低69%,P < 0.001,和80%,P < 0.001)。然而,Rg'和BF不太可能存在因果关系,因为肌肉对葡萄糖的分数提取率较低(约9%);麻醉期间分数提取率增加(17%,P < 0.01);麻醉使趾长伸肌、白色腓肠肌和白色股四头肌的BF降低,但Rg'未降低;比目鱼肌和RG麻醉期间Rg'降低主要是由于Gf降低。总之,在基础条件下,BF不是个体肌肉间胰岛素刺激的葡萄糖摄取异质性差异的主要因素。这些数据表明,神经运动张力可能通过底物转换效应间接影响胰岛素升高期间肌肉葡萄糖摄取的幅度。这可能导致即使在休息时活动也增加的那些肌肉(如比目鱼肌)中葡萄糖的糖酵解通量显著增加。(摘要截断于250字)

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