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Metformin Attenuates Bone Cancer Pain by Reducing TRPV1 and ASIC3 Expression

机译:二甲双胍通过减少TRPV1和ASIC3表达来衰减骨癌疼痛

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Bone cancer pain (BCP) is a common pathologic pain associated with destruction of bone and pathological reconstruction of nervous system. Current treatment strategies in clinical is inadequate and have unacceptable side effects due to the unclear pathology mechanism. In the present study, we showed that transplantation of Walker 256 cells aggravated mechanical allodynia of BCP rats (**p < 0.01 vs. Sham), and the expression of ASIC3 (Acid-sensitive ion channel 3) and TRPV1 was obviously enhanced in L4-6 dorsal root ganglions (DRGs) of BCP rats (**p < 0.01 vs. Sham). ASIC3 and TRPV1 was mainly expressed in CGRP and IB4 positive neurons of L4-6 DRGs. While, TRPV1 but not ASIC3 was markedly upregulated in L4-6 spinal dorsal horn (SDH) of BCP rats (**p < 0.01 vs. Sham). Importantly, intrathecal injection of CPZ (a TRPV1 inhibitor) or Amiloride (an ASICs antagonist) markedly increased the paw withdraw threshold (PWT) of BCP rats response to Von Frey filaments (**p < 0.01 vs. BCP + NS). What’s more, intraperitoneally injection of Metformin or Vinorelbine markedly elevated the PWT of BCP rats, but reduced the expression of TRPV1 and ASIC3 in L4-6 DRGs and decreased the TRPV1 expression in SDH (*p < 0.05, **p < 0.01 vs. BCP + NS). Collectively, these results suggest an effective analgesic effect of Metformin on mechanical allodynia of BCP rats, which may be mediated by the downregulation of ASIC3 and TRPV1.
机译:骨癌疼痛(BCP)是一种常见的病理疼痛与神经系统的骨骼和病理重建的破坏相关。由于病理机制尚不接受,临床上的目前的治疗策略不适当,并且具有不可接受的副作用。在本研究中,我们表明,步行者256细胞的移植加剧了BCP大鼠的机械异常,并且在L4中明显增强了ASIC3(酸敏离子通道3)和TRPV1的表达-6 BCP大鼠的背根神经节(DRGS)(** P <0.01 Vs. sham)。 ASIC3和TRPV1主要在CGRP和IB4阳性神经元中表达L4-6 DRG。而TRPV1但不是ASIC3在BCP大鼠的L4-6脊髓喇叭(SDH)中明显上调(** P <0.01 Vs.mh)。重要的是,鞘内注射CPZ(TRPV1抑制剂)或茉莉酰胺(ASIC拮抗剂)显着增加了BCP大鼠对von Frey长丝的响应的爪子退出阈值(PWT)(** p <0.01对BCP + NS)。更重要的是,腹腔内注射二甲双胍或血管键显着升高了BCP大鼠的PWT,但在L4-6 DRG中降低了TRPV1和ASIC3的表达,并降低了SDH中的TRPV1表达(* P <0.05,** P <0.01 Vs. BCP + NS)。总的来说,这些结果表明二甲双胍对BCP大鼠机械异常性的有效镇痛作用,其可以通过ASIC3和TRPV1的下调介导。

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