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首页> 外文期刊>EMBO Molecular Medicine >The K+ channel GIRK2 is both necessary and sufficient for peripheral opioid‐mediated analgesia
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The K+ channel GIRK2 is both necessary and sufficient for peripheral opioid‐mediated analgesia

机译:K +通道GIRK2对于外围阿片类药物介导的镇痛作用既必要又足够

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AbstractThe use of opioid agonists acting outside the central nervous system (CNS) is a promising therapeutic strategy for pain control that avoids deleterious central side effects such as apnea and addiction. In human clinical trials and rat models of inflammatory pain, peripherally restricted opioids have repeatedly shown powerful analgesic effects; in some mouse models however, their actions remain unclear. Here, we investigated opioid receptor coupling to K+ channels as a mechanism to explain such discrepancies. We found that GIRK channels, major effectors for opioid signalling in the CNS, are absent from mouse peripheral sensory neurons but present in human and rat. In vivo transgenic expression of GIRK channels in mouse nociceptors established peripheral opioid signalling and local analgesia. We further identified a regulatory element in the rat GIRK2 gene that accounts for differential expression in rodents. Thus, GIRK channels are indispensable for peripheral opioid analgesia, and their absence in mice has profound consequences for GPCR signalling in peripheral sensory neurons.
机译:摘要使用阿片类激动剂在中枢神经系统(CNS)外起作用是控制疼痛的有前途的治疗策略,可避免有害的中枢副作用如呼吸暂停和成瘾。在人类临床试验和炎性疼痛的大鼠模型中,外周限制性阿片类药物反复显示出强大的镇痛作用。但是,在某些鼠标模型中,它们的动作仍不清楚。在这里,我们研究了阿片样物质受体与K + 通道的偶联作为解释这种差异的机制。我们发现GIRK通道是CNS中阿片类药物信号传导的主要效应子,在小鼠外周感觉神经元中不存在,但存在于人和大鼠中。小鼠伤害感受器中GIRK通道的体内转基因表达建立了外周阿片类信号传导和局部镇痛作用。我们进一步确定了大鼠GIRK2基因中的一个调节元件,该元件解释了啮齿动物中的差异表达。因此,GIRK通道对于外周阿片类镇痛是必不可少的,并且它们在小鼠中的缺失对外周感觉神经元中的GPCR信号传导具有深远的影响。

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