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骨骼肌糖酵解和氧化酶能力是肥胖女性胰岛素敏感性和肌肉组成的决定因素。

Skeletal muscle glycolytic and oxidative enzyme capacities are determinants of insulin sensitivity and muscle composition in obese women.

作者信息

Simoneau J A, Colberg S R, Thaete F L, Kelley D E

机构信息

Department of Veterans Affairs Medical Center, Pittsburgh, Pennsylvania, USA.

出版信息

FASEB J. 1995 Feb;9(2):273-8.

PMID:7781930
Abstract

Regional fat distribution is an important determinant of insulin resistance in obesity. In the current study, the relationship between skeletal muscle insulin sensitivity, mid-thigh muscle composition, and the metabolic profile of muscle was investigated. Muscle composition was assessed by computed tomography of the mid-thigh, and by activities of marker enzymes of aerobic-oxidative and glycolytic pathways and muscle fiber typing using biopsies of the vastus lateralis muscle. Muscle with reduced Hounsfield attenuation on computed tomography scans was increased in proportion to obesity, and was strongly related to insulin resistance, reduced muscle oxidative capacity, and increased anaerobic and glycolytic capacities by muscle. These findings suggest that as part of its expression of insulin resistance, skeletal muscle of obese individuals is also poorly equipped for substrate oxidation and manifests increased storage of fat.

摘要

区域性脂肪分布是肥胖症中胰岛素抵抗的一个重要决定因素。在当前研究中,对骨骼肌胰岛素敏感性、大腿中部肌肉组成以及肌肉代谢特征之间的关系进行了调查。通过大腿中部的计算机断层扫描、有氧氧化和糖酵解途径标记酶的活性以及使用股外侧肌活检进行肌肉纤维分型来评估肌肉组成。计算机断层扫描中亨氏衰减降低的肌肉比例随肥胖程度增加,且与胰岛素抵抗、肌肉氧化能力降低以及肌肉无氧和糖酵解能力增加密切相关。这些发现表明,作为胰岛素抵抗表达的一部分,肥胖个体的骨骼肌在底物氧化方面也能力不足,且脂肪储存增加。

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