ATP as a peripheral mediator of pain

Sara G Hamilton, Stephen B McMahon
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引用次数: 155

Abstract

This article reviews the extent to which recent studies substantiate the hypothesis that ATP functions as a peripheral pain mediator. The discovery of the P2X family of ion channels (for which ATP is a ligand) and, in particular, the highly selective distribution of the P2X3 receptor within the rat nociceptive system has inspired a variety of approaches to elucidate the potential role of ATP as a pain mediator. ATP elicits excitatory inward currents in small diameter sensory ganglion cells. These currents resemble those elicited by ATP on recombinantly expressed heteromeric P2X2/3 channels as well as homomultimers consisting of P2X2 and P2X3. In vivo behavioural models have characterised the algogenic properties of ATP in normal conditions and in models of peripheral sensitisation. In humans, iontophoresis of ATP induces modest pain. In rats and humans the response is dependent on capsaicin sensitive neurons and is augmented in the presence of inflammatory mediators. Since ATP can be released in the vicinity of peripheral nociceptive terminals under a variety of conditions, there exists a purinergic chain of biological processes linking tissue damage to pain perception. The challenge remains to prove a physiological role for endogenous ATP in activating this chain of events.

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ATP作为疼痛的外周介质
这篇文章回顾了最近的研究在多大程度上证实了ATP作为外周疼痛介质的假设。P2X离子通道家族(ATP是其配体)的发现,特别是P2X3受体在大鼠伤害系统中的高度选择性分布,激发了多种方法来阐明ATP作为疼痛介质的潜在作用。ATP在小直径感觉神经节细胞中引起兴奋性内向电流。这些电流类似于ATP在重组表达的异质P2X2/3通道以及由P2X2和P2X3组成的同源分子上引发的电流。体内行为模型在正常条件下和外周致敏模型中表征了ATP的致痛特性。在人类中,ATP离子导入会引起适度的疼痛。在大鼠和人类中,这种反应依赖于辣椒素敏感神经元,并在炎症介质的存在下增强。由于ATP可以在多种情况下在外周痛觉末端附近释放,因此存在将组织损伤与痛觉联系起来的嘌呤能生物过程链。挑战仍然是证明内源性ATP在激活这一系列事件中的生理作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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