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代谢型神经递质对中枢神经心肺系统的差异性调节

Differential regulation of the central neural cardiorespiratory system by metabotropic neurotransmitters.

作者信息

Pilowsky Paul M, Lung Mandy S Y, Spirovski Darko, McMullan Simon

机构信息

Australian School of Advanced Medicine, Dow-Corning Building, Level 1, 3 Innovation Road, Macquarie University, 2109 NSW, Australia.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2009 Sep 12;364(1529):2537-52. doi: 10.1098/rstb.2009.0092.

Abstract

Central neurons in the brainstem and spinal cord are essential for the maintenance of sympathetic tone, the integration of responses to the activation of reflexes and central commands, and the generation of an appropriate respiratory motor output. Here, we will discuss work that aims to understand the role that metabotropic neurotransmitter systems play in central cardiorespiratory mechanisms. It is well known that blockade of glutamatergic, gamma-aminobutyric acidergic and glycinergic pathways causes major or even complete disruption of cardiorespiratory systems, whereas antagonism of other neurotransmitter systems barely affects circulation or ventilation. Despite the lack of an 'all-or-none' role for metabotropic neurotransmitters, they are nevertheless significant in modulating the effects of central command and peripheral adaptive reflexes. Finally, we propose that a likely explanation for the plethora of neurotransmitters and their receptors on cardiorespiratory neurons is to enable differential regulation of outputs in response to reflex inputs, while at the same time maintaining a tonic level of sympathetic activity that supports those organs that significantly autoregulate their blood supply, such as the heart, brain, retina and kidney. Such an explanation of the data now available enables the generation of many new testable hypotheses.

摘要

脑干和脊髓中的中枢神经元对于维持交感神经张力、整合对反射激活和中枢指令的反应以及产生适当的呼吸运动输出至关重要。在此,我们将讨论旨在了解代谢型神经递质系统在中枢心肺机制中所起作用的研究工作。众所周知,谷氨酸能、γ-氨基丁酸能和甘氨酸能通路的阻断会导致心肺系统的重大甚至完全破坏,而其他神经递质系统的拮抗作用对循环或通气几乎没有影响。尽管代谢型神经递质缺乏“全或无”的作用,但它们在调节中枢指令和外周适应性反射的作用方面仍然具有重要意义。最后,我们提出,心肺神经元上存在大量神经递质及其受体的一个可能解释是,能够根据反射输入对输出进行差异调节,同时维持支持那些能显著自动调节其血液供应的器官(如心脏、大脑、视网膜和肾脏)的交感神经活动的紧张水平。对现有数据的这种解释能够产生许多新的可检验假设。

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