首页> 外文期刊>American Journal of Translational Research >Kalirin-7 contributes to type 2 diabetic neuropathic pain via the postsynaptic density-95/N-methyl-D-aspartate receptor 2B-dependent N-methyl-D-aspartate receptor 2B phosphorylation in the spinal cord in rats
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Kalirin-7 contributes to type 2 diabetic neuropathic pain via the postsynaptic density-95/N-methyl-D-aspartate receptor 2B-dependent N-methyl-D-aspartate receptor 2B phosphorylation in the spinal cord in rats

机译:Kalirin-7通过突触后的密度-95 / N-甲基-D-天冬氨酸受体2b依赖性N-甲基-d-天冬氨酸受体2b依赖于大鼠脊髓的型糖尿病神经病疼痛

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Objective: Diabetic neuropathic pain (DNP) is one of the common complications in type 2 Diabetes Mellitus (DM) patients. However, molecular mechanisms in underlying diabetic neuropathic pain are still poorly understood. Kalirin-7, a multifunctional Rho GDP/GTP exchange factor, located at the excitatory synapses, was reported to modulate the neuronal cytoskeleton. Therefore, in this study, we explored the effects of Kalirin-7 on type 2 diabetic neuropathic pain and the mechanisms in spinal cord in rats. Methods: The type 2 diabetic neuropathic pain model was established in rats by feeding them with a high-sugar and high-fat diet for 8 weeks, and then fasting them for 12 hours, followed by a single intraperitoneal injection of STZ. Kalirin-7 was knocked down in the spinal cord by an intrathecal administration of Kalirin-7 siRNA. Results: The levels of Kalirin-7, p-NR2B and PSD-95 as well as the PSD-95-NR2B coupling were significantly increased in the spinal cord of type 2 DM rats. The knockdown of Kalirin-7 expression in the spinal cord by the intrathecal administration of Kalirin-7 siRNA not only reduced the levels of p-NR2B and the PSD-95-NR2B coupling in the spinal cord, but also relieved mechanical allodynia and thermal hyperalgesia in type 2 DM rats. Conclusions: Our findings suggest that spinally expressed Kalirin-7 likely contributes to type 2 diabetic neuropathic pain through regulating the PSD-95/NR2B interaction-dependent NR2B phosphorylation in the spinal cord.
机译:目的:糖尿病神经病疼痛(DNP)是2型糖尿病(DM)患者的常见并发症之一。然而,患有糖尿病神经病疼痛的分子机制仍然很差。据报道,Kalirin-7,位于兴奋性突触处的多功能RHO GDP / GTP交换系数调节神经元细胞骨架。因此,在本研究中,我们探讨了Kalirin-7对2型糖尿病神经性疼痛和大鼠脊髓机制的影响。方法:通过将高糖和高脂饮食饲喂8周,然后将它们捕获8周,然后将其捕获12小时,然后将其纳入12小时,然后单一腹膜内注射STZ,将其留在大鼠中。 Kalirin-7通过鞘内-7 siRNA的鞘内施用来撞击脊髓。结果:2 DM大鼠脊髓脊髓显着增加了Kalirin-7,P-NR2B和PSD-95以及PSD-95-NR2B偶联的水平。通过鞘内施用Kalirin-7 siRNA的Kalirin-7表达的敲低不仅降低了脊髓中P-NR2B和PSD-95-NR2B偶联的P-NR2B和PSD-95-NR2B的水平,而且减轻了机械异常和热痛觉患者在2型DM大鼠中。结论:我们的研究结果表明,通过调节脊髓中的PSD-95 / NR2B相互作用的NR2B磷酸化,脊髓表达的Kalirin-7可能通过调节PSD-95 / NR2B相互作用的NR2B磷酸化而有助于2型糖尿病神经性疼痛。

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