首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Electroacupuncture Alleviates Paclitaxel-Induced Peripheral Neuropathic Pain in Rats via Suppressing TLR4 Signaling and TRPV1 Upregulation in Sensory Neurons
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Electroacupuncture Alleviates Paclitaxel-Induced Peripheral Neuropathic Pain in Rats via Suppressing TLR4 Signaling and TRPV1 Upregulation in Sensory Neurons

机译:电针通过抑制感觉神经元中的TLR4信号传导和TRPV1上调来减轻紫杉醇诱导的大鼠周围神经病理性疼痛

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摘要

Paclitaxel-induced peripheral neuropathy is a common adverse effect during paclitaxel treatment resulting in sensory abnormalities and neuropathic pain during chemotherapy and in cancer survivors. Conventional therapies are usually ineffective and possess adverse effects. Here, we examined the effects of electroacupuncture (EA) on a rat model of paclitaxel-induced neuropathic pain and related mechanisms. EA robustly and persistently alleviated paclitaxel-induced pain hypersensitivities. Mechanistically, TLR4 (Toll-Like Receptor 4) and downstream signaling MyD88 (Myeloid Differentiation Primary Response 88) and TRPV1 (Transient Receptor Potential Vallinoid 1) were upregulated in dorsal root ganglion (DRGs) of paclitaxel-treated rats, whereas EA reduced their overexpression. Ca imaging further indicated that TRPV1 channel activity was enhanced in DRG neurons of paclitaxel-treated rats whereas EA suppressed the enhanced TRPV1 channel activity. Pharmacological blocking of TRPV1 mimics the analgesic effects of EA on the pain hypersensitivities, whereas capsaicin reversed EA’s effect. Spinal astrocytes and microglia were activated in paclitaxel-treated rats, whereas EA reduced the activation. These results demonstrated that EA alleviates paclitaxel-induced peripheral neuropathic pain via mechanisms possibly involving suppressing TLR4 signaling and TRPV1 upregulation in DRG neurons, which further result in reduced spinal glia activation. Our work supports EA as a potential alternative therapy for paclitaxel-induced neuropathic pain.
机译:紫杉醇引起的周围神经病变是紫杉醇治疗期间常见的不良反应,导致化疗期间和癌症幸存者的感觉异常和神经性疼痛。常规疗法通常无效并且具有副作用。在这里,我们检查了电针(EA)对紫杉醇诱发的神经性疼痛大鼠模型及其相关机制的影响。 EA能够持久地缓解紫杉醇引起的疼痛超敏反应。从机理上讲,紫杉醇治疗大鼠的背根神经节(DRGs)上调TLR4(类似Toll的受体4)和下游信号转导MyD88(骨髓分化主要反应88)和TRPV1(瞬时受体潜在的谷蛋白1)。 。 Ca成像进一步表明,紫杉醇处理的大鼠的DRG神经元TRPV1通道活性增强,而EA抑制了TRPV1通道活性的增强。 TRPV1的药理学阻断作用模仿了EA对疼痛超敏反应的镇痛作用,而辣椒素逆转了EA的镇痛作用。在紫杉醇治疗的大鼠中,脊髓星形胶质细胞和小胶质细胞被激活,而EA降低了激活。这些结果表明,EA通过可能抑制DRG神经元中的TLR4信号和TRPV1上调的机制减轻了紫杉醇引起的周围神经性疼痛,这进一步导致了脊髓胶质细胞活化的降低。我们的工作支持EA作为紫杉醇诱发的神经性疼痛的潜在替代疗法。

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