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TRPV1 and TRPA1 Mediate Peripheral Nitric Oxide-Induced Nociception in Mice

机译:TRPV1和TRPA1介导小鼠周围一氧化氮诱导的伤害感受。

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摘要

Nitric oxide (NO) can induce acute pain in humans and plays an important role in pain sensitization caused by inflammation and injury in animal models. There is evidence that NO acts both in the central nervous system via a cyclic GMP pathway and in the periphery on sensory neurons through unknown mechanisms. It has recently been suggested that TRPV1 and TRPA1, two polymodal ion channels that sense noxious stimuli impinging on peripheral nociceptors, are activated by NO in heterologous systems. Here, we investigate the relevance of this activation. We demonstrate that NO donors directly activate TRPV1 and TRPA1 in isolated inside-out patch recordings. Cultured primary sensory neurons display both TRPV1- and TRPA1-dependent responses to NO donors. BH4, an essential co-factor for NO production, causes activation of a subset of DRG neurons as assayed by calcium imaging, and this activation is at least partly dependent on nitric oxide synthase activity. We show that BH4-induced calcium influx is ablated in DRG neurons from TRPA1/TRPV1 double knockout mice, suggesting that production of endogenous levels of NO can activate these ion channels. In behavioral assays, peripheral NO-induced nociception is compromised when TRPV1 and TRPA1 are both ablated. These results provide genetic evidence that the peripheral nociceptive action of NO is mediated by both TRPV1 and TRPA1.
机译:一氧化氮(NO)可以诱发人类急性疼痛,并且在动物模型中由炎症和损伤引起的疼痛敏化中起重要作用。有证据表明,NO既通过循环GMP途径在中枢神经系统中起作用,又通过未知机制在感觉神经元的外围发挥作用。最近已经提出,异源系统中的NO激活了TRPV1和TRPA1这两个多模态离子通道,它们感应撞击在周围伤害感受器上的有害刺激。在这里,我们调查此激活的相关性。我们证明没有捐助者直接激活孤立的由内而外的补丁录音中的TRPV1和TRPA1。培养的初级感觉神经元显示出对NO供体的TRPV1和TRPA1依赖性反应。 BH4是产生NO的重要辅助因子,它会激活钙成像显像的DRG神经元子集,而这种激活至少部分取决于一氧化氮合酶的活性。我们显示从TRPA1 / TRPV1双敲除小鼠的DRG神经元中BH4诱导的钙内流被消融,这表明内源性NO的产生可以激活这些离子通道。在行为分析中,当TRPV1和TRPA1都被消除时,外周NO诱导的伤害感受受到损害。这些结果提供了遗传证据,表明NO的外周伤害作用是由TRPV1和TRPA1介导的。

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