P2X receptors mediate ATP-induced primary nociceptive neurone activation

Philip A Bland-Ward , Patrick P.A Humphrey
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引用次数: 53

Abstract

ATP-gated P2X ion-channel receptors are localised throughout the mammalian nervous system and have been identified on neurones which participate in conduction of nociceptive information from the periphery to, and within, the CNS. This article briefly reviews recently published research describing the role that ATP and P2X receptors may play in pain perception, highlighting the importance of the P2X3 receptor in this process. The P2X3 receptor subunit is almost exclusively expressed on a subset of small and medium diameter sensory neurones innervating cutaneous and visceral tissue. Activation of P2X receptors present on the peripheral terminals of primary afferents results in neuronal depolarisation and, in conscious animals, leads to the manifestation of acute nociceptive behaviour. Recent animal studies have also shown that P2X3 receptor expression is increased in sensory ganglia following acute neuronal injury, hinting that similar plasticity in the expression of this receptor subtype could underlie the mechanisms involved in a range of conditions characterised by sensory hypersensitivity in man. It is apparent from the evidence available that functional antagonists at specific P2X receptor subtypes could represent an important class of novel analgesic agents.

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P2X受体介导atp诱导的初级伤害神经元激活
atp门控的P2X离子通道受体分布在哺乳动物的整个神经系统中,并且已经在参与从外周到中枢神经系统以及中枢神经系统内部的伤害信息传导的神经元上被发现。本文简要回顾了最近发表的关于ATP和P2X受体在疼痛感知中的作用的研究,强调了P2X3受体在这一过程中的重要性。P2X3受体亚基几乎只在支配皮肤和内脏组织的小、中直径感觉神经元亚基上表达。存在于初级传入末梢的P2X受体的激活导致神经元去极化,并且在有意识的动物中,导致急性伤害性行为的表现。最近的动物研究也表明,急性神经元损伤后,P2X3受体在感觉神经节中的表达增加,这暗示该受体亚型表达的类似可塑性可能是人类感觉超敏反应等一系列疾病的机制基础。从现有证据可以明显看出,特定P2X受体亚型的功能性拮抗剂可能是一类重要的新型镇痛药。
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