首页> 美国卫生研究院文献>Frontiers in Pharmacology >Blockade of P2X4 Receptors Inhibits Neuropathic Pain-Related Behavior by Preventing MMP-9 Activation and Consequently Pronociceptive Interleukin Release in a Rat Model
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Blockade of P2X4 Receptors Inhibits Neuropathic Pain-Related Behavior by Preventing MMP-9 Activation and Consequently Pronociceptive Interleukin Release in a Rat Model

机译:P2X4受体的阻滞通过阻止MMP-9激活并因此抑制大鼠模型中的伤害感受性白介素释放来抑制神经性疼痛相关行为。

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摘要

Neuropathic pain is still an extremely important problem in today’s medicine because opioids, which are commonly used to reduce pain, have limited efficacy in this type of pathology. Therefore, complementary therapy is needed. Our experiments were performed in rats to evaluate the contribution of the purinergic system, especially P2X4 receptor (P2X4R), in the modulation of glia activation and, consequently, the levels of nociceptive interleukins after chronic constriction injury (CCI) of the right sciatic nerve, a rat model of neuropathic pain. Moreover, we studied how intrathecal (ith.) injection of a P2X4R antagonist Tricarbonyldichlororuthenium (II) dimer (CORM-2) modulates nociceptive transmission and opioid effectiveness in the CCI model. Our results demonstrate that repeated ith. administration of CORM-2 once daily (20 μg/5 μl, 16 and 1 h before CCI and then daily) for eight consecutive days significantly reduced pain-related behavior and activation of both spinal microglia and/or astroglia induced by CCI. Moreover, even a single administration of CORM-2 on day 7 after CCI attenuated mechanical and thermal hypersensitivity as efficiently as morphine and buprenorphine. In addition, using Western blot, we have shown that repeated ith. administration of CORM-2 lowers the CCI-elevated level of MMP-9 and pronociceptive interleukins (IL-1β, IL-18, IL-6) in the dorsal L4-L6 spinal cord and/or DRG. Furthermore, in parallel, CORM-2 upregulates spinal IL-1Ra; however, it does not influence other antinociceptive factors, IL-10 and IL-18BP. Additionally, based on our biochemical results, we hypothesize that p38MAPK, ERK1/2 and PI3K/Akt but not the NLRP3/Caspase-1 pathway are partly involved in the CORM-2 analgesic effects in rat neuropathic pain. Our data provide new evidence that P2X4R may indeed play a significant role in neuropathic pain development by modulating neuroimmune interactions in the spinal cord and DRG, suggesting that its blockade may have potential therapeutic utility.
机译:在当今医学中,神经性疼痛仍然是一个极其重要的问题,因为通常用于减轻疼痛的阿片类药物在这种病理类型中的疗效有限。因此,需要补充疗法。我们在大鼠中进行了实验,以评估嘌呤能系统(尤其是P2X4受体(P2X4R))对神经胶质细胞活化的调节作用,以及由此导致的右坐骨神经慢性压迫性损伤(CCI)后伤害性白介素的水平,神经性疼痛的大鼠模型。此外,我们研究了在鞘内注射P2X4R拮抗剂三羰基二氯钌(II)二聚体(CORM-2)在CCI模型中如何调节伤害性传递和阿片样物质的有效性。我们的结果证明了重复的ith。连续八天每天一次(在CCI前20 h g / 5μl,16和1小时,然后每天)一次施用CORM-2,可显着降低疼痛相关行为并降低CCI诱导的脊髓小胶质细胞和/或星形胶质细胞的活化。而且,即使在CCI后第7天单次施用CORM-2,也能像吗啡和丁丙诺啡一样有效地减弱机械和热敏性。另外,使用蛋白质印迹,我们已经证明了重复的操作。施用CORM-2可以降低背L4-L6脊髓和/或DRG中MCI-9和前感受性白介素(IL-1β,IL-18,IL-6)的CCI升高水平。此外,平行地,CORM-2上调脊髓IL-1Ra。但是,它不会影响其他抗伤害感受因子IL-10和IL-18BP。此外,基于我们的生化结果,我们假设p38MAPK,ERK1 / 2和PI3K / Akt而不是NLRP3 / Caspase-1途径部分参与了大鼠神经性疼痛中的CORM-2镇痛作用。我们的数据提供了新的证据,证明P2X4R可能确实通过调节脊髓和DRG中的神经免疫相互作用而在神经性疼痛发展中起重要作用,表明其阻断作用可能具有潜在的治疗作用。

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