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脑-心轴:神经、机械和生化途径的整合协作

The brain-heart axis: integrative cooperation of neural, mechanical and biochemical pathways.

作者信息

Valenza Gaetano, Matić Zoran, Catrambone Vincenzo

机构信息

Neurocardiovascular Intelligence Lab, Department of Information Engineering & Research Center "E. Piaggio", University of Pisa, Pisa, Italy.

出版信息

Nat Rev Cardiol. 2025 Mar 3. doi: 10.1038/s41569-025-01140-3.

Abstract

The neural and cardiovascular systems are pivotal in regulating human physiological, cognitive and emotional states, constantly interacting through anatomical and functional connections referred to as the brain-heart axis. When this axis is dysfunctional, neurological conditions can lead to cardiovascular disorders and, conversely, cardiovascular dysfunction can substantially affect brain health. However, the mechanisms and fundamental physiological components of the brain-heart axis remain largely unknown. In this Review, we elucidate these components and identify three primary pathways: neural, mechanical and biochemical. The neural pathway involves the interaction between the autonomic nervous system and the central autonomic network in the brain. The mechanical pathway involves mechanoreceptors, particularly those expressing mechanosensitive Piezo protein channels, which relay crucial information about blood pressure through peripheral and cerebrovascular connections. The biochemical pathway comprises many endogenous compounds that are important mediators of neural and cardiovascular function. This multisystem perspective calls for the development of integrative approaches, leading to new clinical specialties in neurocardiology.

摘要

神经和心血管系统在调节人类生理、认知和情绪状态方面起着关键作用,它们通过被称为脑心轴的解剖学和功能连接不断相互作用。当这个轴功能失调时,神经系统疾病会导致心血管疾病,反之,心血管功能障碍会严重影响大脑健康。然而,脑心轴的机制和基本生理组成部分在很大程度上仍然未知。在本综述中,我们阐明了这些组成部分,并确定了三条主要途径:神经途径、机械途径和生化途径。神经途径涉及自主神经系统与大脑中的中枢自主网络之间的相互作用。机械途径涉及机械感受器,特别是那些表达机械敏感Piezo蛋白通道的机械感受器,它们通过外周和脑血管连接传递有关血压的关键信息。生化途径包括许多内源性化合物,它们是神经和心血管功能的重要介质。这种多系统观点要求开发综合方法,从而催生神经心脏病学这一新的临床专业。

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