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瞬时受体电位A1介导乙醛诱发的痛觉。

Transient receptor potential A1 mediates acetaldehyde-evoked pain sensation.

作者信息

Bang Sangsu, Kim Kyung Yoon, Yoo Sungjae, Kim Yoon Gyoon, Hwang Sun Wook

机构信息

Korea University Graduate School of Medicine, Seoul 136-705, Korea.

出版信息

Eur J Neurosci. 2007 Nov;26(9):2516-23. doi: 10.1111/j.1460-9568.2007.05882.x. Epub 2007 Oct 23.

Abstract

Six transient receptor potential (TRP) ion channels expressed in the sensory afferents play an important role as body thermosensors and also as peripheral pain detectors. It is known that a number of natural compounds specifically activate those sensory neuronal TRP channels, and a well-known example is cinnamaldehyde for TRPA1. Here we show that human and mouse TRPA1 are activated by acetaldehyde, an intermediate substance of ethanol metabolism, in the HEK293T cell heterologous expression system and in cultured mouse trigeminal neurons. Acetaldehyde failed to activate other temperature-sensitive TRP channels expressed in sensory neurons. TRPA1 antagonists camphor and gadolinium, and a general TRP blocker ruthenium red inhibited TRPA1 activation by acetaldehyde. Camphor, gadolinium and ruthenium red also suppressed the acute nociceptive behaviors induced by the intradermal administration of acetaldehyde into the mouse footpads. Intradermal co-application of prostaglandin E2 and acetaldehyde greatly potentiated the acetaldehyde-induced nociceptive responses, and this effect was reversed by treatment with the TRPA1 antagonist camphor. These results suggest that acetaldehyde causes nociception via TRPA1 activation. Our data may also help elucidate the mechanisms underlying acetaldehyde-related pathological symptoms such as hangover pain.

摘要

在感觉传入神经中表达的六种瞬时受体电位(TRP)离子通道,作为身体温度传感器以及外周疼痛探测器发挥着重要作用。已知许多天然化合物能特异性激活那些感觉神经元TRP通道,一个著名的例子是肉桂醛对TRPA1的激活。在此我们表明,在HEK293T细胞异源表达系统和培养的小鼠三叉神经元中,人和小鼠的TRPA1被乙醛(乙醇代谢的中间物质)激活。乙醛未能激活感觉神经元中表达的其他温度敏感型TRP通道。TRPA1拮抗剂樟脑和钆,以及一种通用的TRP阻滞剂钌红抑制了乙醛对TRPA1的激活。樟脑、钆和钌红也抑制了向小鼠脚垫皮内注射乙醛所诱导的急性伤害性行为。皮内联合应用前列腺素E2和乙醛极大地增强了乙醛诱导的伤害性反应,并且这种效应被TRPA1拮抗剂樟脑处理所逆转。这些结果表明,乙醛通过激活TRPA1引起伤害感受。我们的数据也可能有助于阐明与乙醛相关的病理症状(如宿醉疼痛)背后的机制。

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