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首页> 外文期刊>Pain. >Axonal accumulation of hyperpolarization-activated cyclic nucleotide-gated cation channels contributes to mechanical allodynia after peripheral nerve injury in rat.
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Axonal accumulation of hyperpolarization-activated cyclic nucleotide-gated cation channels contributes to mechanical allodynia after peripheral nerve injury in rat.

机译:超极化激活的环状核苷酸门控阳离子通道的轴突积累有助于大鼠周围神经损伤后的机械性异常性疼痛。

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摘要

Peripheral nerve injury causes neuropathic pain including mechanical allodynia and thermal hyperalgesia due to central and peripheral sensitization. Spontaneous ectopic discharges derived from dorsal root ganglion (DRG) neurons and from the sites of injury are a key factor in the initiation of this sensitization. Numerous studies have focused primarily on DRG neurons; however, the injured axons themselves likely play an equally important role. Previous studies of neuropathic pain rats with spinal nerve ligation (SNL) showed that the hyperpolarization-activated cyclic nucleotide-gated cation (HCN) channel in DRG neuronal bodies is important for the development of neuropathic pain. Here, we investigate the role of the axonal HCN channel in neuropathic pain rats. Using the chronic constriction injury (CCI) model, we found abundant axonal accumulation of HCN channel protein at the injured sites accompanied by a slight decrease in DRG neuronal bodies. The function of these accumulated channels was verified by local application of ZD7288, a specific HCN blocker, which significantly suppressed the ectopic discharges from injured nerve fibers with no effect on impulse conduction. Moreover, mechanical allodynia, but not thermal hyperalgesia, was relieved significantly by ZD7288. These results suggest that axonal HCN channel accumulation plays an important role in ectopic discharges from injured spinal nerves and contributes to the development of mechanical allodynia in neuropathic pain rats.
机译:周围神经损伤由于中枢和外周敏化而引起神经性疼痛,包括机械性异常性疼痛和热痛觉过敏。源于背根神经节(DRG)神经元和损伤部位的自发性异位放电是引发这种致敏作用的关键因素。许多研究主要集中在DRG神经元上。然而,受伤的轴突本身可能起着同样重要的作用。先前对脊髓神经结扎(SNL)的神经性疼痛大鼠的研究表明,DRG神经元体内超极化激活的环状核苷酸门控阳离子(HCN)通道对于神经性疼痛的发展很重要。在这里,我们调查神经性疼痛大鼠中轴突HCN通道的作用。使用慢性压缩性损伤(CCI)模型,我们发现在受损部位大量的HCN通道蛋白轴突积聚,同时DRG神经元体略有减少。这些积累的通道的功能已通过局部应用ZD7288(一种特定的HCN阻滞剂)得到了验证,该产品可显着抑制受伤的神经纤维的异位放电,而对脉冲传导没有影响。此外,ZD7288可显着缓解机械性异常性疼痛,但不能减轻热痛觉过敏。这些结果表明轴突HCN通道积累在受伤的脊髓神经异位放电中起重要作用,并有助于神经性疼痛大鼠的机械性异常性疼痛的发展。

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