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Modulation of KIF17/NR2B crosstalk by tozasertib attenuates inflammatory pain in rats

机译:tozasertib 对 KIF17/NR2B 串扰的调节减轻了大鼠的炎症性疼痛

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摘要

Chronic pain is among the most burdensome and devastating disorders affecting millions of people worldwide. Recent studies suggest the role of kinesin nanomotors in development and maintenance of chronic pain. KIF17 is a member of kinesin superfamily that binds to NR2B cargo system via mLin10 scaffolding protein and makes the NMDARs functional at cell surface. NMDA receptor activation is known to induce the central sensitization and excitotoxicity which can be recognized by the glial cells followed by the release of cytokine storm at spinal and supraspinal level leading to chronic pain. In this study, we have investigated the role of aurora kinase in the regulation of KIF17 and NR2B trafficking in the animal model of chronic inflammatory pain. Tozasertib (10, 20, and 40 mg/kg i.p.), a pan aurora kinase inhibitor, significantly attenuates acute inflammatory pain and suppresses enhanced pain hypersensitivity to heat, cold, and mechanical stimuli in CFA-injected rats. Molecular investigations suggest enhanced expression of KIF17/mLin10/NR2B in L4-L5 dorsal root ganglion (DRG) and spinal cord of CFA-injected rats which was significantly attenuated on treatment with tozasertib. Moreover, tozasertib treatment significantly attenuated CFA-induced oxido-nitrosative stress and macrophage activation in DRG and microglia activation in spinal cord of rats. Findings from the current study suggest that tozasertib mediates anti-nociceptive activity by inhibiting aurora kinase-mediated KIF17/mLin10/NR2B signaling.
机译:慢性疼痛是影响全球数百万人的最繁重和最具破坏性的疾病之一。最近的研究表明驱动蛋白纳米马达在慢性疼痛的发展和维持中的作用。KIF17 是驱动蛋白超家族的成员,通过 mLin10 支架蛋白与 NR2B 货物系统结合,并使 NMDAR 在细胞表面发挥作用。已知NMDA受体激活会诱导中枢敏化和兴奋性毒性,神经胶质细胞可以识别,然后在脊髓和脊髓上水平释放细胞因子风暴,导致慢性疼痛。在这项研究中,我们研究了极光激酶在慢性炎症性疼痛动物模型中 KIF17 和 NR2B 运输调节中的作用。Tozasertib(10、20 和 40 mg/kg ip)是一种泛极光激酶抑制剂,可显着减轻急性炎症性疼痛并抑制 CFA 注射大鼠对热、冷和机械刺激的疼痛超敏反应增强。分子研究表明,注射 CFA 的大鼠 L4-L5 背根神经节 (DRG) 和脊髓中 KIF17/mLin10/NR2B 的表达增强,在 tozasertib 治疗后显着减弱。此外,tozasertib治疗显著减弱了CFA诱导的大鼠DRG氧化亚硝化应激和巨噬细胞活化以及脊髓小胶质细胞活化。本研究的结果表明,tozasertib 通过抑制极光激酶介导的 KIF17/mLin10/NR2B 信号传导来介导抗伤害活性。

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