Tarnopolsky Mark A
Department of Pediatrics and Medicine, Division of Neurology, McMaster University Medical Centre, Hamilton, ON, Canada.
Appl Physiol Nutr Metab. 2006 Feb;31(1):21-30. doi: 10.1139/h05-008.
Exercise physiologists are interested in metabolic myopathies because they demonstrate how knocking out a component of a specific biochemical pathway can alter cellular metabolism. McArdle's disease (myophosphorylase deficiency) has often been studied in exercise physiology to demonstrate the influence of removing the major anaerobic energy supply to skeletal muscle. Studies of patients with McArdle's disease have shown the increased reliance on blood-borne fuels, the importance of glycogen to maximal aerobic capacity, and the use of nutritional strategies to bypass metabolic defects. Myoadenylate deaminase deficiency is the most common metabolic enzyme deficiency in human skeletal muscle. It is usually compensated for endogenously and does not have a major influence on high-energy power output. Nutritional interventions such as carbohydrate loading and carbohydrate supplementation during exercise are essential components of therapy for patients with fatty acid oxidation defects. Cases of mitochondrial myopathies illustrate the importance of peripheral oxygen extraction for maximal aerobic capacity and show how both exercise and nutritional interventions can partially compensate for these mutations. In summary, metabolic myopathies provide important insights into regulatory and nutritional aspects of the major biochemical pathways of intermediary metabolism in human skeletal muscle.
运动生理学家对代谢性肌病感兴趣,因为它们展示了敲除特定生化途径的一个组成部分如何改变细胞代谢。麦卡德尔病(肌磷酸化酶缺乏症)在运动生理学中经常被研究,以证明去除骨骼肌主要无氧能量供应的影响。对麦卡德尔病患者的研究表明,对血源性燃料的依赖增加、糖原对最大有氧能力的重要性以及使用营养策略来绕过代谢缺陷。肌腺苷酸脱氨酶缺乏是人类骨骼肌中最常见的代谢酶缺乏症。它通常由内源性代偿,对高能功率输出没有重大影响。运动期间的碳水化合物负荷和碳水化合物补充等营养干预措施是脂肪酸氧化缺陷患者治疗的重要组成部分。线粒体肌病病例说明了外周氧摄取对最大有氧能力的重要性,并展示了运动和营养干预如何部分补偿这些突变。总之,代谢性肌病为人类骨骼肌中间代谢主要生化途径的调节和营养方面提供了重要见解。