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冲刺间歇训练增强脑源性神经营养因子对脑健康的有益作用——一种可能的分子信号干预措施

Sprint Interval Training Improves Brain-Derived Neurotropic Factor-Induced Benefits in Brain Health-A Possible Molecular Signaling Intervention.

作者信息

Zhu Xueqiang, Chen Wenjia, Thirupathi Anand

机构信息

School of Competitive Sports, Shandong Sport University, Rizhao 276826, China.

School of Physical Education, China University of Mining and Technology, Xuzhou 221116, China.

出版信息

Biology (Basel). 2024 Jul 26;13(8):562. doi: 10.3390/biology13080562.

Abstract

Physical exercise can significantly impact our bodies, affecting our functional capacity, structure establishment, and molecular makeup. The magnitude of these changes depends on the specific exercise protocols used. For instance, low-to-moderate-intensity exercise can activate important molecular targets in the short term, such as BDNF-mediated signaling, while high-intensity exercise can maintain these signaling molecules in the active state for a longer term. This makes it challenging to recommend specific exercises for obtaining BDNF-induced benefits. Additionally, exercise-induced molecular signaling targets can have positive and negative effects, with some exercises blunting these targets and others activating them. For example, increasing BDNF concentration through exercise can be beneficial for brain health, but it may also have a negative impact on conditions such as bipolar disorder. Therefore, a deeper understanding of a specific exercise-mediated mechanistic approach is required. This review will delve into how the sprint exercise-mediated activation of BDNF could help maintain brain health and explore potential molecular interventions.

摘要

体育锻炼会对我们的身体产生重大影响,影响我们的功能能力、结构形成和分子组成。这些变化的程度取决于所采用的具体运动方案。例如,低至中等强度的运动可以在短期内激活重要的分子靶点,如脑源性神经营养因子(BDNF)介导的信号传导,而高强度运动可以使这些信号分子在更长时间内保持激活状态。这使得推荐特定的运动以获得BDNF诱导的益处具有挑战性。此外,运动诱导的分子信号靶点可能具有正面和负面效应,有些运动会削弱这些靶点,而另一些则会激活它们。例如,通过运动增加BDNF浓度对大脑健康有益,但也可能对双相情感障碍等病症产生负面影响。因此,需要更深入地了解特定运动介导的机制方法。本综述将深入探讨短跑运动介导的BDNF激活如何有助于维持大脑健康,并探索潜在的分子干预措施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12f4/11351939/b109e3ed358b/biology-13-00562-g001.jpg

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