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孤束核中心血管控制的神经化学调节

Neurochemical modulation of cardiovascular control in the nucleus tractus solitarius.

作者信息

Lawrence A J, Jarrott B

机构信息

Department of Pharmacology, Monash University, Clayton, Victoria, Australia.

出版信息

Prog Neurobiol. 1996 Jan;48(1):21-53. doi: 10.1016/0301-0082(95)00034-8.

Abstract

The central control of cardiovascular function has been keenly studied for a number of decades. Of particular interest are the homeostatic control mechanisms, such as the baroreceptor heart-rate reflex, the chemoreceptor reflex, the Bezold-Jarisch reflex and the Breuer-Hering reflex. These neurally-mediated reflexes share a common termination point for their respective centrally-projecting sensory afferents, namely the nucleus tractus solitarius (NTS). Thus, the NTS clearly plays a critical role in the integration of peripherally initiated sensory information regarding the status of blood pressure, heart rate and respiratory function. Many endogenous neurochemicals, from simple amino acids through biogenic amines to complex peptides have the ability to modulate blood pressure and heart rate at the level of the NTS. This review will attempt to collate the current knowledge regarding the roles of neuromodulators in the NTS, the receptor types involved in mediating observed responses and the degree of importance of such neurochemicals in the tonic regulation of the cardiovascular system. The neural pathway that controls the baroreceptor heart-rate reflex will be the main focus of attention, including discussion of the identity of the neurotransmitter(s) thought to act at baroafferent terminals within the NTS. In addition, this review will provide a timely update on the use of recently developed molecular biological techniques that have been employed in the study of the NTS, complementing more classical research.

摘要

几十年来,人们一直在深入研究心血管功能的中枢控制。特别令人感兴趣的是稳态控制机制,如压力感受器心率反射、化学感受器反射、贝佐尔德-雅里什反射和布雷尔-黑林反射。这些神经介导的反射对于它们各自向中枢投射的感觉传入神经而言,有着一个共同的终止点,即孤束核(NTS)。因此,孤束核在整合有关血压、心率和呼吸功能状态的外周起始感觉信息方面显然起着关键作用。许多内源性神经化学物质,从简单氨基酸到生物胺再到复杂肽,都有能力在孤束核水平调节血压和心率。本综述将试图整理有关神经调质在孤束核中的作用、介导所观察到的反应所涉及的受体类型以及此类神经化学物质在心血管系统紧张性调节中的重要程度的当前知识。控制压力感受器心率反射的神经通路将是主要关注焦点,包括对被认为作用于孤束核内压力感受器传入神经末梢的神经递质身份的讨论。此外,本综述将及时更新最近开发的分子生物学技术在孤束核研究中的应用情况,以补充更经典的研究。

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