运动作为线粒体药物:运动处方如何影响线粒体对训练的适应?

IF 15.7 1区 医学 Q1 PHYSIOLOGY
David J Bishop, Matthew J-C Lee, Martin Picard
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引用次数: 0

摘要

线粒体是多方面的细胞器,除了能量转化功能外,还具有多种维持生命的功能,包括细胞信号传导、钙平衡、激素合成、细胞程序性死亡(凋亡)等。这些充满活力的细胞器的一个显著特点是具有非凡的可塑性,这使它们能够感知、响应和适应各种压力。特别是,运动压力提供了强大的刺激,可引发线粒体分子特征、活动、综合功能、行为和细胞依赖线粒体表型的短暂或持久变化,这一点已得到充分证实。有证据表明,线粒体对运动有许多有益的适应性,因此人们将运动视为线粒体药物。然而,与其他药物一样,了解最佳处方(即类型、剂量、频率、持续时间)非常重要。在这篇综述中,我们以一个系统的生物学框架为基础,区分线粒体生物学的各个领域,批判性地评估不同的运动处方变量如何影响线粒体对训练的适应性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exercise as Mitochondrial Medicine: How Does the Exercise Prescription Affect Mitochondrial Adaptations to Training?

Mitochondria are multifaceted organelles with several life-sustaining functions beyond energy transformation, including cell signaling, calcium homeostasis, hormone synthesis, programmed cell death (apoptosis), and others. A defining aspect of these dynamic organelles is their remarkable plasticity, which allows them to sense, respond, and adapt to various stressors. In particular, it is well-established that the stress of exercise provides a powerful stimulus that can trigger transient or enduring changes to mitochondrial molecular features, activities, integrated functions, behaviors, and cell-dependent mitochondrial phenotypes. Evidence documenting the many beneficial mitochondrial adaptations to exercise has led to the notion of exercise as a mitochondrial medicine. However, as with other medicines, it is important to understand the optimal prescription (i.e., type, dose, frequency, duration). In this review, we build on a systematic biological framework that distinguishes between domains of mitochondrial biology to critically evaluate how different exercise prescription variables influence mitochondrial adaptations to training.

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来源期刊
Annual review of physiology
Annual review of physiology 医学-生理学
CiteScore
35.60
自引率
0.00%
发文量
41
期刊介绍: Since 1939, the Annual Review of Physiology has been highlighting significant developments in animal physiology. The journal covers diverse areas, including cardiovascular physiology, cell physiology, ecological, evolutionary, and comparative physiology, endocrinology, gastrointestinal physiology, neurophysiology, renal and electrolyte physiology, respiratory physiology, and special topics.
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