首页> 外文期刊>The journal of clinical investigation >The acute nociceptive signals induced by bradykinin in rat sensory neurons are mediated by inhibition of M-type K+ channels and activation of Ca2+-activated Cl– channels
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The acute nociceptive signals induced by bradykinin in rat sensory neurons are mediated by inhibition of M-type K+ channels and activation of Ca2+-activated Cl– channels

机译:缓激肽在大鼠感觉神经元中诱导的急性伤害感受信号通过抑制M型K +通道和激活Ca2 +激活的Cl–通道介导。

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摘要

Bradykinin (BK) is an inflammatory mediator and one of the most potent endogenous pain-inducing substances. When released at sites of tissue damage or inflammation, or applied exogenously, BK produces acute spontaneous pain and causes hyperalgesia (increased sensitivity to potentially painful stimuli). The mechanisms underlying spontaneous pain induced by BK are poorly understood. Here we report that in small nociceptive neurons from rat dorsal root ganglia, BK, acting through its B_(2) receptors, PLC, and release of calcium from intracellular stores, robustly inhibits M-type K~(+) channels and opens Ca~(2+)-activated Cl~(–) channels (CaCCs) encoded by Tmem16a (also known as Ano1 ). Summation of these two effects accounted for the depolarization and increase in AP firing induced by BK in DRG neurons. Local injection of inhibitors of CaCC and specific M-channel openers both strongly attenuated the nociceptive effect of local injections of BK in rats. These results provide a framework for understanding spontaneous inflammatory pain and may suggest new drug targets for treatment of such pain.
机译:缓激肽(BK)是一种炎症介质,是最有效的内源性疼痛诱导物质之一。当在组织损伤或炎症的部位释放或外用时,BK会产生急性自发性疼痛并引起痛觉过敏(对潜在疼痛刺激的敏感性增加)。尚不清楚由BK引起的自发性疼痛的机制。在这里,我们报道在大鼠背根神经节的小伤害感受神经元中,BK通过其B_(2)受体,PLC起作用,并从细胞内存储中释放钙,强烈抑制M型K〜(+)通道并打开Ca〜由Tmem16a(也称为Ano1)编码的(2+)个激活的Cl〜(–)通道(CaCC)。这两种作用的总和说明了DRG神经元中BK引起的去极化和AP放电增加。 CaCC抑制剂和特定的M通道开放剂的局部注射都强烈减弱了BK局部注射对大鼠的伤害作用。这些结果为理解自发性炎性疼痛提供了框架,并可能建议治疗此类疼痛的新药物靶标。

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