Premkumar Louis S
Department of Pharmacology, Southern Illinois University School of Medicine , Springfield, Illinois 62702, United States.
ACS Chem Neurosci. 2014 Nov 19;5(11):1117-30. doi: 10.1021/cn500094a. Epub 2014 Jun 24.
To date, 28 mammalian transient receptor potential (TRP) channels have been cloned and characterized. They are grouped into six subfamilies on the basis of their amino acid sequence homology: TRP Ankyrin (TRPA), TRP Canonical (TRPC), TRP Melastatin (TRPM), TRP Mucolipin (TRPML), TRP Polycystin (TRPP), and TRP Vanilloid (TRPV). Most of the TRP channels are nonselective cation channels expressed on the cell membrane and exhibit variable permeability ratios for Ca(2+) versus Na(+). They mediate sensory functions (such as vision, nociception, taste transduction, temperature sensation, and pheromone signaling) and homeostatic functions (such as divalent cation flux, hormone release, and osmoregulation). Significant progress has been made in our understanding of the specific roles of these TRP channels and their activation mechanisms. In this Review, the emphasis will be on the activation of TRP channels by phytochemicals that are claimed to exert health benefits. Recent findings complement the anecdotal evidence that some of these phytochemicals have specific receptors and the activation of which is responsible for the physiological effects. Now, the targets for these phytochemicals are being unveiled; a specific hypothesis can be proposed and tested experimentally to infer a scientific validity of the claims of the health benefits. The broader and pressing issues that have to be addressed are related to the quantities of the active ingredients in a given preparation, their bioavailability, metabolism, adverse effects, excretion, and systemic versus local effects.
迄今为止,已克隆并鉴定出28种哺乳动物瞬时受体电位(TRP)通道。根据其氨基酸序列同源性,它们被分为六个亚家族:TRP锚蛋白(TRPA)、TRP典型(TRPC)、TRP褪黑素(TRPM)、TRP粘脂蛋白(TRPML)、TRP多囊蛋白(TRPP)和TRP香草酸(TRPV)。大多数TRP通道是细胞膜上表达的非选择性阳离子通道,对Ca(2+)与Na(+)表现出不同的通透率。它们介导感觉功能(如视觉、痛觉、味觉转导、温度感觉和信息素信号传导)和稳态功能(如二价阳离子通量、激素释放和渗透调节)。我们对这些TRP通道的具体作用及其激活机制的理解取得了重大进展。在本综述中,重点将放在据称具有健康益处的植物化学物质对TRP通道的激活上。最近的研究结果补充了一些传闻证据,即其中一些植物化学物质具有特定受体,其激活导致生理效应。现在,这些植物化学物质的靶点正在被揭示;可以提出一个具体的假设并通过实验进行测试,以推断健康益处说法的科学有效性。必须解决的更广泛和紧迫的问题与给定制剂中活性成分的数量、它们的生物利用度、代谢、不良反应、排泄以及全身与局部效应有关。