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首页> 外文期刊>The journal of pain: official journal of the American Pain Society >ASIC1 and ASIC3 Play Different Roles in the Development of Hyperalgesia After Inflammatory Muscle Injury
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ASIC1 and ASIC3 Play Different Roles in the Development of Hyperalgesia After Inflammatory Muscle Injury

机译:ASIC1和ASIC3在炎症性肌肉损伤后痛觉过敏的发展中发挥不同的作用

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Acid-sensing ion channels (ASICs) respond to acidosis that normally occurs after inflammation. We examined the expression of ASIC1, ASIC2, and ASIC3 mRNAs in lumbar dorsal root ganglion neurons before and 24 hours after carrageenan-induced muscle inflammation. Muscle inflammation causes bilateral increases of ASIC2 and ASIC3 but not ASIC1 (neither ASIC1a nor ASIC1b) mRNA, suggesting differential regulation of ASIC1 versus ASIC2 and ASIC3 mRNA. Similar mRNA increases were observed after inflammation in knockout mice: ASIC2 mRNA increases in ASIC3-/- mice; ASIC2 and ASIC3 mRNAs increase in ASIC1-/- mice. Prior behavioral studies in ASIC3-/- mice showed deficits in secondary hyperalgesia (increased response to noxious stimuli outside the site of injury) but not primary hyperalgesia (increased response to noxious stimuli at the site of injury). In this study, we show that ASIC1-/- mice do not develop primary muscle hyperalgesia but develop secondary paw hyperalgesia. In contrast, and as expected, ASIC3-/- mice develop primary muscle hyperalgesia but do not develop secondary paw hyperalgesia. The pharmacological utility of the nonselective ASIC inhibitor A-317567, given locally, was tested. A-317567 reverses both the primary and the secondary hyperalgesia induced by carrageenan muscle inflammation. Thus, peripherally located ASIC1 and ASIC3 play different roles in the development of hyperalgesia after muscle inflammation. Perspective: This study shows changes in ASIC mRNA expression and behavioral hyperalgesia of C57BI/6 (wild type), ASIC1-/-, and ASIC3-/- mice before and after the induction of muscle inflammation. A-317567 was effective in reversing hyperalgesia in these animals, suggesting the potential of ASICs as therapeutic targets for muscle inflammatory pain.
机译:酸敏感离子通道(ASICs)对发炎后通常发生的酸中毒产生反应。我们检查了角叉菜胶诱发的肌肉炎症之前和之后24小时,在腰背根神经节神经元中ASIC1,ASIC2和ASIC3 mRNA的表达。肌肉发炎会引起ASIC2和ASIC3的双边增加,但不会引起ASIC1(既不是ASIC1a也不是ASIC1b)mRNA的双边增加,表明ASIC1与ASIC2和ASIC3 mRNA的差异调节。敲除小鼠炎症后观察到类似的mRNA增加:ASIC3-​​/-小鼠中ASIC2 mRNA增加;在ASIC1-/-小鼠中ASIC2和ASIC3 mRNA增加。以前在ASIC3-​​/-小鼠中的行为研究表明,继发性痛觉过敏(损伤部位外对有害刺激的反应增加)不足,但原发性痛觉过敏(损伤部位对有害刺激物的反应增加)没有缺陷。在这项研究中,我们表明ASIC1-/-小鼠不会发展原发性肌肉痛觉过敏,但会发展继发性脚掌痛觉过敏。相反,并且如预期的那样,ASIC3-​​/-小鼠发展为原发性肌肉痛觉过敏,但不发展为继发性掌痛觉过敏。测试了局部给予的非选择性ASIC抑制剂A-317567的药理作用。 A-317567可逆转由角叉菜胶引起的原发性和继发性痛觉过敏。因此,位于外围的ASIC1和ASIC3在肌肉发炎后在痛觉过敏的发生中发挥不同的作用。透视图:这项研究显示了C57BI / 6(野生型),ASIC1-/-和ASIC3-​​/-小鼠在诱发肌肉炎症前后ASIC mRNA表达和行为痛觉过敏的变化。 A-317567可有效逆转这些动物的痛觉过敏,表明ASICs可能成为肌肉炎性疼痛的治疗靶标。

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