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星形细胞化学感受器:星形细胞在梯形核中感知 H+的机制及其对呼吸驱动的可能贡献。

Astrocyte chemoreceptors: mechanisms of H+ sensing by astrocytes in the retrotrapezoid nucleus and their possible contribution to respiratory drive.

机构信息

Department of Physiology and Neurobiology, University of Connecticut, 75 North Eagleville Road, Unit 3156, Storrs, CT 06269, USA.

出版信息

Exp Physiol. 2011 Apr;96(4):400-6. doi: 10.1113/expphysiol.2010.053140. Epub 2010 Dec 17.

Abstract

Central chemoreception is the mechanism by which CO(2)/pH-sensitive neurons (i.e. chemoreceptors) regulate breathing, presumably in response to changes in tissue pH. A region of the brainstem called the retrotrapezoid nucleus (RTN) is thought to be an important site of chemoreception; select neurons (i.e. chemoreceptors) in this region sense changes in CO(2)/H(+) and send excitatory glutamatergic drive to respiratory centres to modulate the depth and frequency of breathing. Purinergic signalling may also contribute to chemoreception; for instance, it was shown in vivo that CO(2)/H(+) facilitates ATP release within the RTN to stimulate breathing, and recent evidence suggests that CO(2)/H(+)-sensitive RTN astrocytes are the source of this purinergic drive to breathe. In this review, we summarize evidence that RTN astrocytes sense changes in CO(2)/H(+), identify mechanisms that are likely to confer CO(2)/H(+) sensitivity to RTN astrocytes, including inhibition of heteromeric Kir4.1-Kir5.1 channels and activation of a depolarizing inward current generated by the sodium bicarbonate cotransporter, and discuss the extent to which astrocytes contribute to respiratory drive.

摘要

中枢化学感受是 CO₂/pH 敏感神经元(即化学感受器)调节呼吸的机制,推测是对组织 pH 变化的反应。延髓中的一个被称为梯形核后区(RTN)的区域被认为是化学感受的重要部位;该区域的一些选择性神经元(即化学感受器)感知 CO₂/H⁺的变化,并向呼吸中枢发送兴奋性谷氨酸能驱动,以调节呼吸的深度和频率。嘌呤能信号也可能有助于化学感受;例如,体内研究表明,CO₂/H⁺促进 RTN 内 ATP 的释放以刺激呼吸,最近的证据表明,CO₂/H⁺敏感的 RTN 星形胶质细胞是这种呼吸驱动的嘌呤能来源。在这篇综述中,我们总结了 RTN 星形胶质细胞感知 CO₂/H⁺变化的证据,确定了可能使 RTN 星形胶质细胞对 CO₂/H⁺敏感的机制,包括抑制异源 Kir4.1-Kir5.1 通道和激活由碳酸氢盐共转运蛋白产生的去极化内向电流,并讨论了星形胶质细胞对呼吸驱动的贡献程度。

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