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首页> 外文期刊>Molecular pain >Leukotriene enhances NMDA-induced inward currents in dorsal horn neurons of the rat spinal cord after peripheral nerve injury
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Leukotriene enhances NMDA-induced inward currents in dorsal horn neurons of the rat spinal cord after peripheral nerve injury

机译:白三烯增强NMDA诱导的周围神经损伤后大鼠脊髓背角神经元的内向电流

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Background LTB4 is classified as a leukotriene (LT), a group of lipid mediators that are derived from arachidonic acid. It is recognized that leukotrienes are involved in the pathogenesis of many diseases, including peripheral inflammatory pain. However, little is known about the effects of leukotrienes on the spinal dorsal horn during neuropathic pain. Previously, we reported that there was increased expression of 5-lipoxygenase (5-LO) at spinal microglia, and the leukotriene B4 receptor 1 (BLT1), a high affinity receptor of LTB4, in spinal neurons in spared nerve injury (SNI) model rats. In the present study, we examined the effects of LTB4 on spinal dorsal horn neurons in both na?ve and SNI model rats using patch-clamp methods. Results Bath application of LTB4 did not change AMPA receptor-mediated spontaneous excitatory postsynaptic currents (sEPSCs) or membrane potentials. However, we found that LTB4 enhanced the amplitude of NMDA receptor-mediated sEPSCs and significantly increased exogenous NMDA-induced inward currents in SNI model rats. This increase of inward currents could be inhibited by a selective LTB4 antagonist, U75302, as well as a GDP-β-S, a G-protein inhibitor. These results indicate that both increased LTB4 from spinal microglia or increased BLT1 in spinal neurons after peripheral nerve injury can enhance the activity of NMDA receptors through intracellular G-proteins in spinal dorsal horn neurons. Conclusion Our findings showed that LTB4, which may originate from microglia, can activate BLT1 receptors which are expressed on the membrane of spinal dorsal horn neurons during neuropathic pain. This glia-neuron interaction induces the enhancement of NMDA currents through intracellular G-proteins. The enhancement of NMDA receptor sensitivity of dorsal horn neurons may lead to central sensitization, leading to mechanical pain hypersensitivity.
机译:背景LTB4被归类为白三烯(LT),这是一组来自花生四烯酸的脂质介体。公认白三烯参与许多疾病的发病机理,包括周围性炎性疼痛。但是,关于白三烯在神经性疼痛中对脊髓背角的影响知之甚少。以前,我们曾报道在脊髓神经元中,备用神经损伤(SNI)模型中的脊髓小胶质细胞中5-脂氧合酶(5-LO)和白三烯B4受体1(BLT1)(LTB4的高亲和力受体)的表达增加。大鼠。在本研究中,我们使用膜片钳方法研究了LTB4对幼稚和SNI模型大鼠的脊髓背角神经元的影响。结果浴液中LTB4的应用并没有改变AMPA受体介导的自发性兴奋性突触后电流(sEPSCs)或膜电位。但是,我们发现LTB4增强了SNI模型大鼠中NMDA受体介导的sEPSC的幅度,并显着增加了外源NMDA诱导的内向电流。选择性LTB4拮抗剂U75302以及G蛋白抑制剂GDP-β-S可以抑制这种内向电流的增加。这些结果表明,在周围神经损伤后,来自脊髓小胶质细胞的LTB4升高或脊髓神经元中的BLT1升高均可通过脊髓背角神经元中的细胞内G蛋白增强NMDA受体的活性。结论我们的研究结果表明,LTB4可能源自小胶质细胞,可以激活神经性疼痛期间脊髓背角神经元膜上表达的BLT1受体。胶质神经元相互作用通过细胞内G蛋白诱导NMDA电流的增强。背角神经元NMDA受体敏感性的增强可能导致中枢敏化,导致机械性疼痛超敏反应。

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