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ENaCs 和 ASICs 作为治疗靶点。

ENaCs and ASICs as therapeutic targets.

机构信息

Department of Physiology and Biophysics, University of Alabama at Birmingham, AL 35294, USA.

出版信息

Am J Physiol Cell Physiol. 2012 Apr 1;302(7):C943-65. doi: 10.1152/ajpcell.00019.2012. Epub 2012 Jan 25.

Abstract

The epithelial Na(+) channel (ENaC) and acid-sensitive ion channel (ASIC) branches of the ENaC/degenerin superfamily of cation channels have drawn increasing attention as potential therapeutic targets in a variety of diseases and conditions. Originally thought to be solely expressed in fluid absorptive epithelia and in neurons, it has become apparent that members of this family exhibit nearly ubiquitous expression. Therapeutic opportunities range from hypertension, due to the role of ENaC in maintaining whole body salt and water homeostasis, to anxiety disorders and pain associated with ASIC activity. As a physiologist intrigued by the fundamental mechanics of salt and water transport, it was natural that Dale Benos, to whom this series of reviews is dedicated, should have been at the forefront of research into the amiloride-sensitive sodium channel. The cloning of ENaC and subsequently the ASIC channels has revealed a far wider role for this channel family than was previously imagined. In this review, we will discuss the known and potential roles of ENaC and ASIC subunits in the wide variety of pathologies in which these channels have been implicated. Some of these, such as the role of ENaC in Liddle's syndrome are well established, others less so; however, all are related in that the fundamental defect is due to inappropriate channel activity.

摘要

上皮钠离子通道(ENaC)和酸敏离子通道(ASIC)是 ENaC/退行钠通道超家族的两个分支,它们作为多种疾病和病症的潜在治疗靶点,引起了越来越多的关注。最初认为它们仅在液体吸收上皮细胞和神经元中表达,但现在已经明显表明,该家族的成员几乎无处不在表达。治疗机会从高血压(由于 ENaC 在维持全身盐和水稳态中的作用)到焦虑症和与 ASIC 活性相关的疼痛不等。作为一位对盐和水运输的基本力学感到好奇的生理学家,本诺(Dale Benos)自然而然地成为了研究阿米洛利敏感的钠离子通道的研究前沿人物,他是这一系列评论的对象。ENaC 和随后的 ASIC 通道的克隆揭示了这个通道家族的作用范围比以前想象的要广泛得多。在这篇综述中,我们将讨论 ENaC 和 ASIC 亚基在这些通道被牵连的各种病理中的已知和潜在作用。其中一些作用,如 ENaC 在利德尔综合征中的作用已经得到很好的确立,其他作用则不太确定;然而,所有这些作用都有一个共同点,即根本缺陷是由于通道活动不当。

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