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血管紧张素 II 2 型受体,是周围神经系统保护与再生的靶点吗?

The Angiotensin II Type 2 Receptor, a Target for Protection and Regeneration of the Peripheral Nervous System?

作者信息

Danigo Aurore, Rovini Amandine, Bessaguet Flavien, Bouchenaki Hichem, Bernard Amandine, Sturtz Franck, Bourthoumieu Sylvie, Desmoulière Alexis, Magy Laurent, Demiot Claire

机构信息

EA 6309-Myelin Maintenance & Peripheral Neuropathy, Faculties of Medicine and Pharmacy, University of Limoges MMNP, 87000 Limoges, France.

BioTis, INSERM U1026, University of Bordeaux, 33000 Bordeaux, France,

出版信息

Pharmaceuticals (Basel). 2021 Feb 24;14(3):175. doi: 10.3390/ph14030175.

Abstract

Preclinical evidence, accumulated over the past decade, indicates that the angiotensin II type 2 receptor (AT2R) stimulation exerts significant neuroprotective effects in various animal models of neuronal injury, notably in the central nervous system. While the atypical G protein-coupled receptor superfamily nature of AT2R and its related signaling are still under investigation, pharmacological studies have shown that stimulation of AT2R leads to neuritogenesis in vitro and in vivo. In this review, we focus on the potential neuroprotective and neuroregenerative roles of AT2R specifically in the peripheral nervous system (PNS). The first section describes the evidence for AT2R expression in the PNS and highlights current controversies concerning the cellular distribution of the receptor. The second section focuses on AT2R signaling implicated in neuronal survival and in neurite outgrowth. The following sections review the relatively few preclinical studies highlighting the putative neuroprotective and neuroregenerative effects of AT2R stimulation in the context of peripheral neuropathy.

摘要

在过去十年中积累的临床前证据表明,在各种神经元损伤的动物模型中,尤其是在中枢神经系统中,刺激血管紧张素II 2型受体(AT2R)可发挥显著的神经保护作用。虽然AT2R的非典型G蛋白偶联受体超家族性质及其相关信号传导仍在研究中,但药理学研究表明,刺激AT2R可在体外和体内诱导神经突生成。在本综述中,我们重点关注AT2R在周围神经系统(PNS)中潜在的神经保护和神经再生作用。第一部分描述了PNS中AT2R表达的证据,并突出了目前关于该受体细胞分布的争议。第二部分重点关注与神经元存活和神经突生长相关的AT2R信号传导。以下部分回顾了相对较少的临床前研究,这些研究强调了在周围神经病变背景下刺激AT2R的假定神经保护和神经再生作用。

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