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Nutritional Interventions for Mitochondrial OXPHOS Deficiencies: Mechanisms and Model Systems
Annual Review of Pathology: Mechanisms of Disease ( IF 36.2 ) Pub Date : 2018-01-24 00:00:00 , DOI: 10.1146/annurev-pathol-020117-043644
Adam J Kuszak 1 , Michael Graham Espey 2 , Marni J Falk 3, 4 , Marissa A Holmbeck 5 , Giovanni Manfredi 6 , Gerald S Shadel 5, 7 , Hilary J Vernon 8 , Zarazuela Zolkipli-Cunningham 9
Affiliation  

Multisystem metabolic disorders caused by defects in oxidative phosphorylation (OXPHOS) are severe, often lethal, conditions. Inborn errors of OXPHOS function are termed primary mitochondrial disorders (PMDs), and the use of nutritional interventions is routine in their supportive management. However, detailed mechanistic understanding and evidence for efficacy and safety of these interventions are limited. Preclinical cellular and animal model systems are important tools to investigate PMD metabolic mechanisms and therapeutic strategies. This review assesses the mechanistic rationale and experimental evidence for nutritional interventions commonly used in PMDs, including micronutrients, metabolic agents, signaling modifiers, and dietary regulation, while highlighting important knowledge gaps and impediments for randomized controlled trials. Cellular and animal model systems that recapitulate mutations and clinical manifestations of specific PMDs are evaluated for their potential in determining pathological mechanisms, elucidating therapeutic health outcomes, and investigating the value of nutritional interventions for mitochondrial disease conditions.

中文翻译:


线粒体 OXPHOS 缺乏症的营养干预:机制和模型系统

由氧化磷酸化 (OXPHOS) 缺陷引起的多系统代谢紊乱是严重且通常致命的病症。先天性 OXPHOS 功能缺陷被称为原发性线粒体疾病 (PMD),营养干预措施的使用是其支持性管理的常规措施。然而,对这些干预措施的有效性和安全性的详细机制理解和证据有限。临床前细胞和动物模型系统是研究 PMD 代谢机制和治疗策略的重要工具。本综述评估了 PMD 中常用的营养干预措施的机制原理和实验证据,包括微量营养素、代谢剂、信号调节剂和饮食调节,同时强调了随机对照试验的重要知识差距和障碍。评估再现特定 PMD 突变和临床表现的细胞和动物模型系统在确定病理机制、阐明治疗健康结果和研究线粒体疾病营养干预价值方面的潜力。

更新日期:2018-01-24
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