首页> 外文期刊>Neuropharmacology >Acidic pH facilitates peripheral alphabetameATP-mediated nociception in rats: differential roles of P2X, P2Y, ASIC and TRPV1 receptors in ATP-induced mechanical allodynia and thermal hyperalgesia.
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Acidic pH facilitates peripheral alphabetameATP-mediated nociception in rats: differential roles of P2X, P2Y, ASIC and TRPV1 receptors in ATP-induced mechanical allodynia and thermal hyperalgesia.

机译:酸性pH值可促进大鼠外周由字母表ATP介导的伤害感受:P2X,P2Y,ASIC和TRPV1受体在ATP诱导的机械性异常性疼痛和热痛觉过敏中的不同作用。

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Peripheral ischemia is commonly associated with an increase in tissue ATP concentration and a decrease in tissue pH. Although in vitro data suggest that low tissue pH can affect ATP-binding affinities to P2 receptors, the mechanistic relationship between ATP and low pH on peripheral nociception has not been fully examined. This study was designed to investigate the potential role of an acidified environment on intraplantar alphabetameATP-induced peripheral pain responses in rats. The mechanical allodynia (MA) produced by injection of alphabetameATP was significantly increased in animals that received the drug diluted in pH 4.0 saline compared to those that received the drug diluted in pH 7.0 saline. Moreover, animals injected with alphabetameATP (100 nmol) in pH 4.0 saline developed thermal hyperalgesia (TH), which did not occur in animals treated with alphabetameATP diluted in pH 7.0 saline. To elucidate which receptors were involved in this pH-related facilitation of alphabetameATP-induced MA and TH, rats were pretreated with PPADS (P2 antagonist), TNP-ATP (P2X antagonist), MRS2179 (P2Y1 antagonist), AMG9810 (TRPV1 antagonist) or amiloride (ASIC blocker). Both PPADS and TNP-ATP dose-dependently blocked pH-facilitated MA, while TH was significantly reduced by pre-treatment with MRS2179 or AMG9810. Moreover, amiloride injection significantly reduced low pH-induced facilitation of alphabetameATP-mediated MA, but not TH. These results demonstrate that low tissue pH facilitates ATP-mediated MA via the activation of P2X receptors and ASICs, whereas TH induced by ATP under low pH conditions is mediated by the P2Y1 receptor and TRPV1, but not ASIC. Thus distinct mechanisms are responsible for the development of MA and TH under conditions of tissue acidosis and increased ATP.
机译:周围缺血通常与组织ATP浓度增加和组织pH降低有关。尽管体外数据表明低组织pH值会影响ATP与P2受体的结合亲和力,但尚未充分检验ATP和低pH值对周围伤害感受的机制关系。这项研究旨在调查酸化环境对足底alphabetameATP诱导的大鼠周围疼痛反应的潜在作用。与接受用pH 7.0盐水稀释的药物的动物相比,注射AlphabetameATP产生的机械性异常性疼痛(MA)明显增加。此外,在pH 4.0的盐水中注射了AlphabetameATP(100 nmol)的动物发生了热痛觉过敏(TH),而在用pH 7.0的盐水稀释了AlphabetameATP的动物中则没有这种现象。为阐明哪些受体参与了与字母ATP诱导的MA和TH的pH相关的促进作用,对大鼠进行了PPADS(P2拮抗剂),TNP-ATP(P2X拮抗剂),MRS2179(P2Y1拮抗剂),AMG9810(TRPV1拮抗剂)或阿米洛利(ASIC阻断剂)。 PPADS和TNP-ATP均剂量依赖性地阻断pH促进的MA,而通过MRS2179或AMG9810预处理可显着降低TH。此外,阿米洛利注射液显着降低了低pH诱导的由字母ATP介导的MA的促进作用,但没有降低TH。这些结果表明,低组织pH值通过P2X受体和ASIC的激活促进ATP介导的MA,而低pH条件下ATP诱导的TH由P2Y1受体和TRPV1介导,而不是ASIC。因此,在组织酸中毒和ATP增加的情况下,MA和TH的形成是由不同的机制引起的。

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