Bruce Clinton R, Hawley John A
Exercise Metabolism Group, School of Medical Sciences, RMIT University, Bundoora, Victoria, Australia.
Med Sci Sports Exerc. 2004 Jul;36(7):1196-201.
Traditional views on the metabolic derangements underlying insulin resistance and Type 2 diabetes have been largely "glucocentric" in nature, focusing on the hyperglycemic and/or hyperinsulinemic states that result from impaired glucose tolerance. But in addition to glucose intolerance, there is a coordinated breakdown in lipid dynamics in individuals with insulin resistance, manifested by elevated levels of circulating free fatty acids, diminished rates of lipid oxidation, and excess lipid accumulation in skeletal muscle and/or liver. This review examines the premise that an oversupply and/or accumulation of lipid directly inhibits insulin action on glucose metabolism via changes at the level of substrate competition, enzyme regulation, intracellular signaling, and/or gene transcription. If a breakdown in lipid dynamics is causal in the development of insulin resistance (rather than a coincidental feature resulting from it), it should be possible to demonstrate that interventions that improve lipid homeostasis cause reciprocal changes in insulin sensitivity. Accordingly, the efficacy of aerobic endurance training in human subjects in mediating the association between deranged lipid metabolism and insulin resistance will be examined. It will be demonstrated that aerobic exercise training is a potent and effective primary intervention strategy in the prevention and treatment of individuals with insulin resistance.
传统上,对于胰岛素抵抗和2型糖尿病背后的代谢紊乱的观点在本质上很大程度上是以“糖为中心”的,关注的是由糖耐量受损导致的高血糖和/或高胰岛素血症状态。但除了葡萄糖不耐受外,胰岛素抵抗个体的脂质代谢也会出现协同性紊乱,表现为循环中游离脂肪酸水平升高、脂质氧化速率降低以及骨骼肌和/或肝脏中脂质过度蓄积。本综述探讨了这样一个前提,即脂质的供应过剩和/或蓄积通过底物竞争、酶调节、细胞内信号传导和/或基因转录水平的变化,直接抑制胰岛素对葡萄糖代谢的作用。如果脂质代谢紊乱是胰岛素抵抗发生的原因(而非其伴随特征),那么应该能够证明改善脂质稳态的干预措施会使胰岛素敏感性发生相应变化。因此,将研究有氧耐力训练对人类受试者调节脂质代谢紊乱与胰岛素抵抗之间关联的效果。结果将表明,有氧运动训练是预防和治疗胰岛素抵抗个体的一种强有力且有效的主要干预策略。