TRPA1在疼痛病理生理中的作用及其对一类新型镇痛药物开发的意义

Q3 Medicine
O. Radresa, H. Dahllof, E. Nyman, A. Nolting, J. Albert, P. Raboisson
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引用次数: 18

摘要

动物的瞬时受体电位A1 (TRPA1)离子通道已经进化到对各种感觉刺激信号作出反应。迄今为止,已经确定了其多模态激活的许多结构决定因素。TRPA1的活性包括对外源性化学刺激物的反应,对内源性炎症介质、锌、电压、温度或拉伸的反应,以及钙离子微妙但关键的调节。TRPA1已成为几种类型疼痛和炎症的重要靶点,因为它的表达谱有限,并且在介导不同类型的疼痛和外周感觉传入的敏感化中发挥作用。尽管观察到通道药理学的物种差异,但最近在人类身上的遗传证据带来了一些希望,即疾病模型的临床前疗效将转化为患者状况。在过去的十年中,不同的研究小组已经研究了一类新的镇痛药物或止咳药的开发,旨在阻断TRPA1在初级感觉传入中的活性。几家公司正在进行临床概念验证研究。本综述旨在总结TRPA1在其作用和对患者病情的影响方面的关键进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Roles of TRPA1 in Pain Pathophysiology and Implications for the Development of a New Class of Analgesic Drugs
The Transient Receptor Potential A1 (TRPA1) ion channel has evolved in animals to respond to signals from a variety of sensory stimuli. Many structural determinants of its multimodal activation have been identified to date. TRPA1 activities include responses to exogenous chemical irritants, responses to endogenous inflammatory mediators, zinc, volt- age, temperature or stretch and subtle yet critical modulation by calcium ions. TRPA1 has emerged as an important target for several types of pain and inflammatory conditions because of its limited expression profile and its demonstrated roles in mediating different types of pain and sensitization of peripheral sensory afferents. Despite observed species differences in channel pharmacology, recent genetic evidence in human brings some hope that preclinical efficacy in disease models will translate to patient condition. During the past decade, various groups have investigated the development of a new class of analgesic drugs or anti-tussive agents aimed at blocking TRPA1 activity in primary sensory afferents. Several companies are advancing toward clinical proof of concept studies. This review aims to summarize key advances in the understanding of TRPA1 with regard to its roles and implications for patient conditions.
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来源期刊
Open Pain Journal
Open Pain Journal Medicine-Anesthesiology and Pain Medicine
CiteScore
0.80
自引率
0.00%
发文量
9
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