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论膀胱感觉的起源:泌尿外科的(三)重困境

On the origin of bladder sensing: Tr(i)ps in urology.

作者信息

Everaerts Wouter, Gevaert Thomas, Nilius Bernd, De Ridder Dirk

机构信息

KU Leuven, Department of Urology, University Hospitals Gasthuisberg, Leuven, Belgium.

出版信息

Neurourol Urodyn. 2008;27(4):264-73. doi: 10.1002/nau.20511.

Abstract

The mammalian TRP family consists of 28 channels that can be subdivided into 6 different classes: TRPV (vanilloid), TRPC (canonical), TRPM (Melastatin), TRPP (Polycystin), TRPML (Mucolipin), and TRPA (Ankyrin). TRP channels are activated by a diversity of physical (voltage, heat, cold, mechanical stress) or chemical (pH, osmolality) stimuli and by binding of specific ligands, enabling them to act as multifunctional sensors at the cellular level. Currently, a lot of scientific research is devoted to these channels and their role in sensing mechanisms throughout the body. In urology, there's a growing conviction that disturbances in afferent (sensory) mechanisms are highly important in the pathogenesis of functional problems. Therefore, the TRP family forms an interesting new target to focus on. In this review we attempt to summarize the existing knowledge about TRP channels in the urogenital tract. So far, TRPV1, TRPV2, TRPV4, TRPM8, and TRPA1 have been described in different parts of the urogenital tract. Although only TRPV1 (the vanilloid receptor) has been extensively studied so far, more evidence is slowly accumulating about the role of other TRP channels in the (patho)physiology of the urogenital tract.

摘要

哺乳动物的瞬时受体电位(TRP)家族由28种通道组成,可细分为6个不同类别:TRPV(香草酸受体)、TRPC(典型型)、TRPM(褪黑素受体)、TRPP(多囊蛋白)、TRPML(黏脂质体)和TRPA(锚蛋白)。TRP通道可被多种物理刺激(电压、热、冷、机械应力)或化学刺激(pH值、渗透压)以及特定配体的结合所激活,使其能够在细胞水平上充当多功能传感器。目前,许多科学研究都致力于这些通道及其在全身传感机制中的作用。在泌尿外科领域,越来越多的人相信传入(感觉)机制的紊乱在功能性问题的发病机制中非常重要。因此,TRP家族成为一个值得关注的有趣新靶点。在这篇综述中,我们试图总结关于泌尿生殖道中TRP通道的现有知识。到目前为止,TRPV1、TRPV2、TRPV4、TRPM8和TRPA1已在泌尿生殖道的不同部位被描述。尽管到目前为止只有TRPV1(香草酸受体)得到了广泛研究,但关于其他TRP通道在泌尿生殖道(病理)生理学中的作用的证据正在慢慢积累。

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