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人原代心肌细胞中脂肪氧化的动态变化反映了供体的代谢特征。

Dynamic changes in fat oxidation in human primary myocytes mirror metabolic characteristics of the donor.

作者信息

Ukropcova Barbara, McNeil Michele, Sereda Olga, de Jonge Lilian, Xie Hui, Bray George A, Smith Steven R

机构信息

Pennington Biomedical Research Center, Baton Rouge, LA 70808, USA.

出版信息

J Clin Invest. 2005 Jul;115(7):1934-41. doi: 10.1172/JCI24332.

Abstract

Metabolic flexibility of skeletal muscle, that is, the preference for fat oxidation (FOx) during fasting and for carbohydrate oxidation in response to insulin, is decreased during insulin resistance. The aim of this study was to test the hypothesis that the capacity of myotubes to oxidize fat in vitro reflects the donor's metabolic characteristics. Insulin sensitivity (IS) and metabolic flexibility of 16 healthy, young male subjects was determined by euglycemic hyperinsulinemic clamp. Muscle samples were obtained from vastus lateralis, cultured, and differentiated into myotubes. In human myotubes in vitro, we measured suppressibility (glucose suppression of FOx) and adaptability (an increase in FOx in the presence of high palmitate concentration). We termed these dynamic changes in FOx metabolic switching. In vivo, metabolic flexibility was positively correlated with IS and maximal oxygen uptake and inversely correlated with percent body fat. In vitro suppressibility was inversely correlated with IS and metabolic flexibility and positively correlated with body fat and fasting FFA levels. Adaptability was negatively associated with percent body fat and fasting insulin and positively correlated with IS and metabolic flexibility. The interindividual variability in metabolic phenotypes was preserved in human myotubes separated from their neuroendocrine environment, which supports the hypothesis that metabolic switching is an intrinsic property of skeletal muscle.

摘要

骨骼肌的代谢灵活性,即在禁食期间对脂肪氧化(FOx)的偏好以及对胰岛素反应时对碳水化合物氧化的偏好,在胰岛素抵抗期间会降低。本研究的目的是检验这样一个假设:肌管在体外氧化脂肪的能力反映了供体的代谢特征。通过正常血糖高胰岛素钳夹技术测定了16名健康年轻男性受试者的胰岛素敏感性(IS)和代谢灵活性。从股外侧肌获取肌肉样本,进行培养并分化为肌管。在体外培养的人肌管中,我们测量了抑制性(葡萄糖对脂肪氧化的抑制)和适应性(在高棕榈酸浓度存在时脂肪氧化的增加)。我们将脂肪氧化的这些动态变化称为代谢转换。在体内,代谢灵活性与胰岛素敏感性和最大摄氧量呈正相关,与体脂百分比呈负相关。体外抑制性与胰岛素敏感性和代谢灵活性呈负相关,与体脂和空腹游离脂肪酸水平呈正相关。适应性与体脂百分比和空腹胰岛素呈负相关,与胰岛素敏感性和代谢灵活性呈正相关。从其神经内分泌环境分离出来的人肌管中保留了代谢表型的个体间变异性,这支持了代谢转换是骨骼肌固有特性这一假设。

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