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间歇性禁食的循环代谢转换理论。

The cyclic metabolic switching theory of intermittent fasting.

作者信息

Mattson Mark P

机构信息

Department of Neuroscience, Johns Hopkins University School of Medicine, Baltimore, MD, USA.

出版信息

Nat Metab. 2025 Apr;7(4):665-678. doi: 10.1038/s42255-025-01254-5. Epub 2025 Mar 14.

Abstract

Intermittent fasting (IF) and ketogenic diets (KDs) have recently attracted much attention in the scientific literature and in popular culture and follow a longer history of exercise and caloric restriction (CR) research. Whereas IF involves cyclic metabolic switching (CMS) between ketogenic and non-ketogenic states, KDs and CR may not. In this Perspective, I postulate that the beneficial effects of IF result from alternating between activation of adaptive cellular stress response pathways during the fasting period, followed by cell growth and plasticity pathways during the feeding period. Thereby, I establish the cyclic metabolic switching (CMS) theory of IF. The health benefits of IF may go beyond those seen with continuous CR or KDs without CMS owing to the unique interplay between the signalling functions of the ketone β-hydroxybutyrate, mitochondrial adaptations, reciprocal activation of autophagy and mTOR pathways, endocrine and paracrine signalling, gut microbiota, and circadian biology. The CMS theory may have important implications for future basic research, clinical trials, development of pharmacological interventions, and healthy lifestyle practices.

摘要

间歇性禁食(IF)和生酮饮食(KDs)最近在科学文献和大众文化中备受关注,并且有着比运动和热量限制(CR)研究更长的历史。虽然间歇性禁食涉及生酮和非生酮状态之间的循环代谢转换(CMS),但生酮饮食和热量限制可能并非如此。在这篇观点文章中,我推测间歇性禁食的有益效果源于禁食期间适应性细胞应激反应途径的激活与进食期间细胞生长和可塑性途径之间的交替。由此,我建立了间歇性禁食的循环代谢转换(CMS)理论。间歇性禁食对健康的益处可能超越持续热量限制或无循环代谢转换的生酮饮食所带来的益处,这归因于酮体β-羟基丁酸的信号传导功能、线粒体适应性、自噬和mTOR途径的相互激活、内分泌和旁分泌信号传导、肠道微生物群以及昼夜生物学之间独特的相互作用。循环代谢转换理论可能对未来的基础研究、临床试验、药物干预的开发以及健康生活方式实践具有重要意义。

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