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收缩活动可恢复肥胖 Zucker 大鼠骨骼肌中的胰岛素反应性。

Contractile activity restores insulin responsiveness in skeletal muscle of obese Zucker rats.

作者信息

Dolan P L, Tapscott E B, Dorton P J, Dohm G L

机构信息

Department of Biochemistry, School of Medicine, East Carolina University, Greenville, NC 27858.

出版信息

Biochem J. 1993 Jan 15;289 ( Pt 2)(Pt 2):423-6. doi: 10.1042/bj2890423.

Abstract

Both insulin and contraction stimulate glucose transport in skeletal muscle. Insulin-stimulated glucose transport is decreased in obese humans and rats. The aims of this study were (1) to determine if contraction-stimulated glucose transport was also compromised in skeletal muscle of genetically obese insulin-resistant Zucker rats, and (2) to determine whether the additive effects of insulin and contraction previously observed in muscle from lean subjects were evident in muscle from the obese animals. To measure glucose transport, hindlimbs from lean and obese Zucker rats were perfused under basal, insulin-stimulated (0.1 microM), contraction-stimulated (electrical stimulation of the sciatic nerve) and combined insulin-(+)contraction-stimulated conditions. One hindlimb was stimulated to contract while the contralateral leg served as an unstimulated control. 2-Deoxyglucose transport rates were measured in the white gastrocnemius, red gastrocnemius and extensor digitorum longus muscles. As expected, the insulin-stimulated glucose transport rate in each of the three muscles was significantly slower (P < 0.05) in obese rats when compared with lean animals. When expressed as fold stimulation over basal, there was no significant difference in contraction-induced muscle glucose transport rates between lean and obese animals. Insulin-(+)contraction-stimulation was additive in skeletal muscle of lean animals, but synergistic in skeletal muscle of obese animals. Prior contraction increased insulin responsiveness of glucose transport 2-5-fold in the obese rats, but had no effect on insulin responsiveness in the lean controls. This contraction-induced improvement in insulin responsiveness could be of clinical importance to obese subjects as a way to improve insulin-stimulated glucose uptake in resistant skeletal muscle.

摘要

胰岛素和肌肉收缩均可刺激骨骼肌中的葡萄糖转运。肥胖人群和大鼠中,胰岛素刺激的葡萄糖转运功能下降。本研究的目的是:(1)确定基因肥胖且胰岛素抵抗的Zucker大鼠骨骼肌中,收缩刺激的葡萄糖转运功能是否也受损;(2)确定之前在瘦人肌肉中观察到的胰岛素和收缩的相加效应,在肥胖动物的肌肉中是否明显。为测量葡萄糖转运,在基础状态、胰岛素刺激(0.1微摩尔)、收缩刺激(坐骨神经电刺激)以及胰岛素加收缩刺激的条件下,对瘦和肥胖Zucker大鼠的后肢进行灌注。刺激一侧后肢使其收缩,对侧腿作为未刺激的对照。在白色腓肠肌、红色腓肠肌和趾长伸肌中测量2-脱氧葡萄糖转运速率。正如预期,与瘦动物相比,肥胖大鼠的三块肌肉中,胰岛素刺激的葡萄糖转运速率均显著减慢(P<0.05)。以基础状态下的刺激倍数表示时,瘦和肥胖动物之间收缩诱导的肌肉葡萄糖转运速率无显著差异。胰岛素加收缩刺激在瘦动物的骨骼肌中具有相加效应,但在肥胖动物的骨骼肌中具有协同效应。预先收缩使肥胖大鼠葡萄糖转运的胰岛素反应性提高了2至5倍,但对瘦对照的胰岛素反应性无影响。这种收缩诱导的胰岛素反应性改善,对于肥胖受试者改善抵抗性骨骼肌中胰岛素刺激的葡萄糖摄取而言,可能具有临床重要性。

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