Roe Charles R, Mochel Fanny
Institute of Metabolic Disease, Baylor University Medical Center, 3812 Elm Street, Dallas, TX 75226, USA.
J Inherit Metab Dis. 2006 Apr-Jun;29(2-3):332-40. doi: 10.1007/s10545-006-0290-3.
Beginning with phenylketonuria, dietary therapy for inborn errors has focused primarily on the restriction of the precursor to an affected catabolic pathway in an attempt to limit the production of potential toxins. Anaplerotic therapy is based on the concept that there may exist an energy deficit in these diseases that might be improved by providing alternative substrate for both the citric acid cycle (CAC) and the electron transport chain for enhanced ATP production. This article focuses on this basic problem, as it may relate to most catabolic disorders, and provides our current experience involving inherited diseases of mitochondrial fat oxidation, glycogen storage, and pyruvate metabolism using the anaplerotic compound triheptanoin. The observations have led to a realization that 'inter-organ' signalling and 'nutrient sensors' such as adenylate monophosphate mediated-protein kinase (AMPK) and mTOR (mammalian target of rapamycin) appear to play a significant role in the intermediary metabolism of these diseases. Activated AMPK turns on catabolic pathways to augment ATP production while turning off synthetic pathways that consume ATP. Information is provided regarding the inter-organ requirements for more normal metabolic function during crisis and how anaplerotic therapy using triheptanoin, as a direct source of substrate to the CAC for energy production, appears to be a more successful approach to an improved quality of life for these patients.
从苯丙酮尿症开始,针对先天性代谢缺陷的饮食疗法主要集中在限制受影响分解代谢途径的前体,以试图限制潜在毒素的产生。回补疗法基于这样一种概念,即在这些疾病中可能存在能量不足,通过为柠檬酸循环(CAC)和电子传递链提供替代底物以增强ATP生成,可能会改善这种情况。本文重点关注这个基本问题,因为它可能与大多数分解代谢紊乱有关,并介绍了我们目前使用回补化合物三庚酸甘油酯治疗线粒体脂肪氧化、糖原贮积和丙酮酸代谢等遗传性疾病的经验。这些观察结果使人们认识到,“器官间”信号传导以及诸如腺苷酸单磷酸介导的蛋白激酶(AMPK)和雷帕霉素靶蛋白(mTOR)等“营养传感器”似乎在这些疾病的中间代谢中发挥着重要作用。激活的AMPK开启分解代谢途径以增加ATP生成,同时关闭消耗ATP的合成途径。本文还提供了有关在疾病发作期间实现更正常代谢功能的器官间需求的信息,以及使用三庚酸甘油酯作为向CAC提供能量产生底物的直接来源的回补疗法,如何似乎是改善这些患者生活质量的更成功方法。