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大鼠离心收缩后肌肉葡萄糖转运的胰岛素作用降低。

Decreased insulin action on muscle glucose transport after eccentric contractions in rats.

作者信息

Asp S, Richter E A

机构信息

Copenhagen Muscle Research Centre, August Krogh Institute, University of Copenhagen, Denmark.

出版信息

J Appl Physiol (1985). 1996 Nov;81(5):1924-8. doi: 10.1152/jappl.1996.81.5.1924.

Abstract

We have recently shown that eccentric contractions (Ecc) of rat calf muscles cause muscle damage and decreased glycogen and glucose transporter GLUT-4 protein content in the white (WG) and red gastrocnemius (RG) but not in the soleus (S) (S. Asp, S. Kristiansen, and E. A. Richter. J. Appl. Physiol. 79: 1338-1345, 1995). To study whether these changes affect insulin action, hindlimbs were perfused at three different insulin concentrations (0, 200, and 20,000 microU/ml) 2 days after one-legged eccentric contractions of the calf muscles. Compared with control, basal glucose transport was slightly higher (P < 0.05) in Ecc-WG and -RG, whereas it was lower (P < 0.05) at both submaximal and maximal insulin concentrations in the Ecc-WG and at maximal concentrations in the Ecc-RG. In the Ecc-S, the glucose transport was unchanged in hindquarters perfused in the absence or presence of a submaximal stimulating concentration of insulin, whereas it was slightly (P < 0.05) higher during maximal insulin stimulation compared with control S. At the end of perfusion the glycogen concentrations were lower in both Ecc-gastrocnemius muscles compared with control muscles at all insulin concentrations. Fractional velocity of glycogen synthase increased similarly with increasing insulin concentrations in Ecc- and control WG and RG. We conclude that insulin action on glucose transport but not glycogen synthase activity is impaired in perfused muscle exposed to prior eccentric contractions.

摘要

我们最近发现,大鼠小腿肌肉的离心收缩(Ecc)会导致肌肉损伤,并且白色(WG)和红色腓肠肌(RG)中的糖原和葡萄糖转运蛋白GLUT-4的蛋白质含量会降低,但比目鱼肌(S)中则不会(S. Asp、S. Kristiansen和E. A. Richter。《应用生理学杂志》79: 1338 - 1345, 1995)。为了研究这些变化是否会影响胰岛素作用,在小腿肌肉进行单腿离心收缩2天后,以三种不同的胰岛素浓度(0、200和20,000微单位/毫升)对后肢进行灌注。与对照组相比,Ecc-WG和 -RG中的基础葡萄糖转运略高(P < 0.05),而在Ecc-WG中,次最大和最大胰岛素浓度下的葡萄糖转运较低(P < 0.05),在Ecc-RG中最大浓度下也是如此。在Ecc-S中,在无或有次最大刺激浓度胰岛素灌注的后肢中,葡萄糖转运没有变化,而在最大胰岛素刺激下,与对照S相比略有升高(P < 0.05)。在灌注结束时,在所有胰岛素浓度下,与对照肌肉相比,Ecc-腓肠肌中的糖原浓度均较低。在Ecc-和对照WG及RG中,糖原合酶的分数速度随胰岛素浓度增加而类似地增加。我们得出结论,在经历过离心收缩的灌注肌肉中,胰岛素对葡萄糖转运的作用受损,但对糖原合酶活性的作用未受损。

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