首页> 外文期刊>Journal of Neuroscience Research >P2X4 Receptor in the Dorsal Horn Partially Contributes to Brain-Derived Neurotrophic Factor Oversecretion and Toll-Like Receptor-4 Receptor Activation Associated With Bone Cancer Pain
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P2X4 Receptor in the Dorsal Horn Partially Contributes to Brain-Derived Neurotrophic Factor Oversecretion and Toll-Like Receptor-4 Receptor Activation Associated With Bone Cancer Pain

机译:背角的P2X4受体部分促成与骨癌疼痛相关的脑源性神经营养因子过度分泌和类似Toll的受体4受体活化

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Previous studies have suggested that the microglial P2X7 purinoceptor is involved in the release of tumor necrosis factor- (TNF) following activation of toll-like receptor-4 (TLR4), which is associated with nociceptive behavior. In addition, this progress is evoked by the activation of the P2X4 purinoceptor (P2X4R). Although P2X4R is also localized within spinal microglia in the dorsal horn, little is known about its role in cancer-induced bone pain (CIBP), which is in some ways unique. With the present rat model of CIBP, we demonstrate a critical role of the microglial P2X4R in the enhanced nociceptive transmission, which is associated with TLR4 activation and secretion of brain-derived neurotrophic factor (BDNF) and TNF in the dorsal horn. We assessed mechanical threshold and spontaneous pain of CIBP rats. Moreover, P2X4R small interfering RNA (siRNA) was administered intrathecally, and real-time PCR, Western blots, immunofluorescence histochemistry, and ELISA were used to detect the expression of P2X4R, TLR4, OX-42, phosphorylated-p38 MAPK (p-p38), BDNF, and TNF. Compared with controls, intrathecal injection of P2X4R siRNA could prevent nociceptive behavior induced by ATP plus lipopolysaccharide and CIBP and reduce the expression of P2X4R, TLR4, p-p38, BDNF, and TNF. In addition, the increase of BDNF protein in rat microglial cells depended on P2X4 receptor signaling, which is partially associated with TLR4 activation. The ability of microglial P2X4R to activate TLR4 in spinal cord leading to behavioral hypersensitivity and oversecretion of BDNF could provide an opportunity for the prevention and treatment of CIBP. (c) 2014 Wiley Periodicals, Inc.
机译:先前的研究表明,小胶质细胞P2X7嘌呤受体与toll样受体4(TLR4)激活后参与了肿瘤坏死因子(TNF)的释放,这与伤害性行为有关。此外,P2X4嘌呤受体(P2X4R)的激活引起了这一进展。尽管P2X4R也位于背角的脊髓小胶质细胞内,但对它在癌症诱发的骨痛(CIBP)中的作用知之甚少,这在某些方面是独特的。使用当前的CIBP大鼠模型,我们证明了小胶质细胞P2X4R在增强的伤害感受传递中的关键作用,这与TLR4激活以及背角中脑源性神经营养因子(BDNF)和TNF的分泌有关。我们评估了CIBP大鼠的机械阈值和自发性疼痛。此外,鞘内注射P2X4R小干扰RNA(siRNA),并使用实时PCR,Western印迹,免疫荧光组织化学和ELISA检测P2X4R,TLR4,OX-42,磷酸化p38 MAPK(p-p38)的表达。 ),BDNF和TNF。与对照组相比,鞘内注射P2X4R siRNA可以防止ATP加脂多糖和CIBP诱导的伤害行为,并降低P2X4R,TLR4,p-p38,BDNF和TNF的表达。此外,大鼠小胶质细胞中BDNF蛋白的增加取决于P2X4受体信号传导,这部分与TLR4激活有关。小胶质细胞P2X4R激活脊髓中的TLR4的能力导致行为超敏性和BDNF的过度分泌可能为CIBP的预防和治疗提供机会。 (c)2014年威利期刊有限公司

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