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骨骼肌甘油三酯水平与胰岛素作用呈负相关。

Skeletal muscle triglyceride levels are inversely related to insulin action.

作者信息

Pan D A, Lillioja S, Kriketos A D, Milner M R, Baur L A, Bogardus C, Jenkins A B, Storlien L H

机构信息

Department of Biomedical Science, University of Wollongong, NSW, Australia.

出版信息

Diabetes. 1997 Jun;46(6):983-8. doi: 10.2337/diab.46.6.983.

Abstract

In animal studies, increased amounts of triglyceride associated with skeletal muscle (mTG) correlate with reduced skeletal muscle and whole body insulin action. The aim of this study was to test this relationship in humans. Subjects were 38 nondiabetic male Pima Indians (mean age 28 +/- 1 years). Insulin sensitivity at physiological (M) and supraphysiological (MZ) insulin levels was assessed by the euglycemic clamp. Lipid and carbohydrate oxidation were determined by indirect calorimetry before and during insulin administration. mTG was determined in vastus lateralis muscles obtained by percutaneous biopsy. Percentage of body fat (mean 29 +/- 1%, range 14-44%) was measured by underwater weighing. In simple regressions, negative relationships were found between mTG (mean 5.4 +/- 0.3 micromol/g, range 1.3-1.9 micromol/g) and log10M (r = -0.53, P < or = 0.001), MZ (r = -0.44, P = 0.006), and nonoxidative glucose disposal (r = -0.48 and -0.47 at physiological and supraphysiological insulin levels, respectively, both P = 0.005) but not glucose or lipid oxidation. mTG was not related to any measure of adiposity. In multiple regressions, measures of insulin resistance (log10M, MZ, log10[fasting insulin]) were significantly related to mTG independent of all measures of obesity (percentage of body fat, BMI, waist-to-thigh ratio). In turn, all measures of obesity were related to the insulin resistance measures independent of mTG. The obesity measures and mTG accounted for similar proportions of the variance in insulin resistance in these relationships. The results suggest that in this human population, as in animal models, skeletal muscle insulin sensitivity is strongly influenced by local supplies of triglycerides, as well as by remote depots and circulating lipids. The mechanism(s) underlying the relationship between mTG and insulin action on skeletal muscle glycogen synthesis may be central to an understanding of insulin resistance.

摘要

在动物研究中,与骨骼肌相关的甘油三酯(mTG)含量增加与骨骼肌及全身胰岛素作用降低相关。本研究的目的是在人类中验证这种关系。研究对象为38名非糖尿病男性皮马印第安人(平均年龄28±1岁)。通过正常血糖钳夹技术评估生理(M)和超生理(MZ)胰岛素水平下的胰岛素敏感性。在胰岛素给药前和给药期间,通过间接测热法测定脂质和碳水化合物氧化。通过经皮活检获取股外侧肌,测定其中的mTG。采用水下称重法测量体脂百分比(平均29±1%,范围14 - 44%)。在简单回归分析中,发现mTG(平均5.4±0.3微摩尔/克,范围1.3 - 1.9微摩尔/克)与log10M(r = -0.53,P≤0.001)、MZ(r = -0.44,P = 0.006)以及非氧化葡萄糖处置(在生理和超生理胰岛素水平下分别为r = -0.48和-0.47,P均 = 0.005)呈负相关,但与葡萄糖或脂质氧化无关。mTG与任何肥胖指标均无关联。在多元回归分析中,胰岛素抵抗指标(log10M、MZ、log10[空腹胰岛素])与mTG显著相关,且独立于所有肥胖指标(体脂百分比、体重指数、腰臀比)。反过来,所有肥胖指标与胰岛素抵抗指标相关,且独立于mTG。在这些关系中,肥胖指标和mTG在胰岛素抵抗的方差中所占比例相似。结果表明,在这一人群中,与动物模型一样,骨骼肌胰岛素敏感性受局部甘油三酯供应以及远处脂肪库和循环脂质的强烈影响。mTG与胰岛素对骨骼肌糖原合成作用之间关系的潜在机制可能是理解胰岛素抵抗的核心。

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