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细胞外葡萄糖分布不受胰岛素影响:血浆和间质L-葡萄糖动力学分析。

Extracellular glucose distribution is not altered by insulin: analysis of plasma and interstitial L-glucose kinetics.

作者信息

Steil G M, Richey J, Kim J K, Wi J K, Rebrin K, Bergman R N, Youn J H

机构信息

Department of Physiology and Biophysics, University of Southern California, School of Medicine, Los Angeles 90033, USA.

出版信息

Am J Physiol. 1996 Nov;271(5 Pt 1):E855-64. doi: 10.1152/ajpendo.1996.271.5.E855.

Abstract

We examined the effects of insulin on leg blood flow, whole body extracellular glucose distribution, and glucose diffusion into the interstitial fluid (ISF) surrounding skeletal muscle cells in anesthetized dogs. Extracellular glucose distribution and glucose diffusion into the muscle ISF were assessed by studying the kinetics of L-[1-14C]glucose in plasma and hindlimb lymph. Femoral artery blood flow was not increased with insulin (7.9 +/- 0.7 vs. 7.1 +/- 1.4 ml.min-1.kg-1; P = 0.54). Plasma and lymph dynamics of L-glucose after intravenous administration were superimposable between saline and insulin infusion experiments, indicating that insulin did not affect L-glucose disappearance from plasma or appearance in muscle ISF. Plasma L-glucose kinetics were best described by a four-compartment model, and one of the remote pools (intermediate) predicted the lymph L-glucose dynamics well. Estimation of maximum glucose diffusion capacity indicated that this pool, rather than the slowest pool, represents insulin-sensitive tissues. In conclusion, our data indicate that insulin does not increase transcapillary glucose diffusion to insulin-sensitive cells. In addition, hindlimb lymph represents primarily skeletal muscle ISF, which is represented by an intermediate, rather than the slowest, remote pool from whole body compartmental analysis.

摘要

我们研究了胰岛素对麻醉犬腿部血流、全身细胞外葡萄糖分布以及葡萄糖向骨骼肌细胞周围组织间液(ISF)扩散的影响。通过研究血浆和后肢淋巴中L-[1-14C]葡萄糖的动力学来评估细胞外葡萄糖分布及葡萄糖向肌肉ISF的扩散。胰岛素注射后股动脉血流量未增加(7.9±0.7对7.1±1.4 ml·min-1·kg-1;P = 0.54)。静脉注射L-葡萄糖后,生理盐水输注实验和胰岛素输注实验中的血浆及淋巴动力学具有叠加性,表明胰岛素不影响L-葡萄糖从血浆中的消失或在肌肉ISF中的出现。血浆L-葡萄糖动力学最好用四室模型来描述,其中一个远端池(中间池)能很好地预测淋巴L-葡萄糖动力学。最大葡萄糖扩散能力的估计表明,这个池而非最慢的池代表胰岛素敏感组织。总之,我们的数据表明胰岛素不会增加跨毛细血管葡萄糖向胰岛素敏感细胞的扩散。此外,后肢淋巴主要代表骨骼肌ISF,从全身房室分析来看,它由一个中间池而非最慢的远端池来代表。

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