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Electroacupuncture improves thermal and mechanical sensitivities in a rat model of postherpetic neuralgia

机译:电针改善带状疱疹后神经痛大鼠模型的热敏感性和机械敏感性

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Background Electroacupuncture (EA) is effective in relieving pain in patients with postherpetic neuralgia (PHN). However, the mechanism underlying the therapeutic effect of EA in PHN is still unclear. Systemic injection of resiniferatoxin (RTX), an ultrapotent analog of TRPV1 agonist, in adult rats can reproduce the clinical symptoms of PHN by ablating TRPV1-expressing sensory neurons. In this study, we determined the beneficial effect of EA and the potential mechanisms in this rat model of PHN. Methods PHN was induced in rats by a single injection of RTX. Thermal hyperalgesia was tested with a radiant heat stimulus, and mechanical allodynia was quantified with von Frey filaments. TRPV1 receptors were shown by using immunofluorescence labeling. The ultrastructural changes of the sciatic nerve were assessed by electron microscopic examination. The sprouting of myelinated primary afferent terminals into the spinal dorsal horn was mapped by using the transganglionic tracer cholera toxin B-subunit (CTB). Results RTX injection diminished thermal sensitivity and gradually induced tactile allodynia within 3 weeks. EA applied to GB30 and GB34 at 2 and 15 Hz, but not 100 Hz, significantly increased the thermal sensitivity 4 weeks after treatment and decreased the tactile allodynia 2 weeks after treatment in RTX-treated rats. EA treatment at 2 and 15 Hz recovered the loss of TRPV1-positive dorsal root ganglion neurons and their central terminals of afferent fibers in the spinal superficial dorsal horn of RTX-treated rats. Moreover, EA significantly reduced the loss of unmyelinated fibers and the damage of the myelinated nerve fibers of RTX-treated rats. Furthermore, EA at 2 and 15 Hz inhibited the sprouting of myelinated primary afferent terminals into the spinal lamina II of RTX-treated rats. Conclusions EA treatment improves thermal perception by recovering TRPV1-positive sensory neurons and nerve terminals damaged by RTX. EA Also reduces RTX-induced tactile allodynia by attenuating the damage of myelinated afferent nerves and their abnormal sprouting into the spinal lamina II. Our study provides new information about the mechanisms of the therapeutic actions of EA in the treatment of PHN.
机译:背景技术电针(EA)可有效减轻带状疱疹后神经痛(PHN)患者的疼痛。然而,EA在PHN中的治疗作用的潜在机制仍不清楚。在成年大鼠中全身注射树胶脂毒素(RTX)(TRPV1激动剂的超强效类似物)可通过消减表达TRPV1的感觉神经元来重现PHN的临床症状。在这项研究中,我们确定了EA的有益作用以及这种PHN大鼠模型的潜在机制。方法通过单次注射RTX诱导大鼠PHN。用辐射热刺激测试热痛觉过敏,并用von Frey细丝量化机械性异常性疼痛。通过使用免疫荧光标记显示了TRPV1受体。通过电子显微镜检查评估坐骨神经的超微结构变化。通过使用神经节示踪示踪霍乱毒素B亚基(CTB)绘制有髓的初级传入末端向脊髓背角的萌芽。结果RTX注射可降低热敏性,并在3周内逐渐诱发触觉异常性疼痛。在RTX处理的​​大鼠中,EA在2 Hz和15 Hz而不是100 Hz下应用于GB30和GB34,但在治疗4周后显着提高了热敏性,并在治疗2周后降低了触觉异常性疼痛。在2和15 Hz的EA处理下,RTX治疗的大鼠脊柱浅背角的TRPV1阳性背根神经节神经元及其传入纤维中央末端的丢失得以恢复。此外,EA显着减少了RTX治疗的大鼠的未髓鞘纤维的损失和髓鞘神经纤维的损伤。此外,在2 Hz和15 Hz的EA抑制了RTX处理的​​大鼠的髓鞘初级传入末端向脊髓椎板II的萌发。结论EA治疗可通过恢复RTX损伤的TRPV1阳性感觉神经元和神经末梢来改善热知觉。 EA还通过减轻髓鞘传入神经的损伤及其异常发芽进入脊髓椎板II来减少RTX引起的触觉异常性疼痛。我们的研究提供了有关EA在PHN治疗中作用机制的新信息。

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