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嘌呤能信号调控神经元-胶质细胞通讯。

Purinergic signaling orchestrating neuron-glia communication.

机构信息

CNC-Center for Neuroscience and Cell Biology, University of Coimbra, Portugal; Faculty of Medicine, University of Coimbra, Portugal.

CNC-Center for Neuroscience and Cell Biology, University of Coimbra, Portugal; Faculty of Medicine, University of Coimbra, Portugal.

出版信息

Pharmacol Res. 2020 Dec;162:105253. doi: 10.1016/j.phrs.2020.105253. Epub 2020 Oct 17.

Abstract

This review discusses the evidence supporting a role for ATP signaling (operated by PX and PY receptors) and adenosine signaling (mainly operated by A and A receptors) in the crosstalk between neurons, astrocytes, microglia and oligodendrocytes. An initial emphasis will be given to the cooperation between adenosine receptors to sharpen information salience encoding across synapses. The interplay between ATP and adenosine signaling in the communication between astrocytes and neurons will then be presented in context of the integrative properties of the astrocytic syncytium, allowing to implement heterosynaptic depression processes in neuronal networks. The process of microglia 'activation' and its control by astrocytes and neurons will then be analyzed under the perspective of an interplay between different P receptors and adenosine A receptors. In spite of these indications of a prominent role of purinergic signaling in the bidirectional communication between neurons and glia, its therapeutical exploitation still awaits obtaining an integrated view of the spatio-temporal action of ATP signaling and adenosine signaling, clearly distinguishing the involvement of both purinergic signaling systems in the regulation of physiological processes and in the control of pathogenic-like responses upon brain dysfunction or damage.

摘要

这篇综述讨论了 ATP 信号(由 PX 和 PY 受体介导)和腺苷信号(主要由 A 和 A 受体介导)在神经元、星形胶质细胞、小胶质细胞和少突胶质细胞之间串扰中的作用的证据。最初的重点将放在腺苷受体之间的合作,以锐化跨越突触的信息显著编码。然后将在星形胶质细胞合胞体的整合特性的背景下呈现 ATP 和腺苷信号在星形胶质细胞和神经元之间通讯中的相互作用,从而允许在神经元网络中实现异突触抑制过程。然后将从不同 P 受体和腺苷 A 受体之间的相互作用的角度分析小胶质细胞“激活”及其被星形胶质细胞和神经元控制的过程。尽管有这些迹象表明嘌呤能信号在神经元和神经胶质细胞之间的双向通讯中起着重要作用,但要在空间和时间上对 ATP 信号和腺苷信号的作用进行综合分析,明确区分这两个嘌呤能信号系统在生理过程调节中的参与以及在脑功能障碍或损伤时对类似病理反应的控制,仍然需要对其进行治疗性利用。

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