首页> 外文期刊>Journal of Neurophysiology >Chronic compression of mouse dorsal root ganglion alters voltage-gated sodium and potassium currents in medium-sized dorsal root ganglion neurons.
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Chronic compression of mouse dorsal root ganglion alters voltage-gated sodium and potassium currents in medium-sized dorsal root ganglion neurons.

机译:小鼠背根神经节的慢性压迫改变中型背根神经节神经元的电压门控钠和钾电流。

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Chronic compression (CCD) of the dorsal root ganglion (DRG) is a model of human radicular pain produced by intraforaminal stenosis and other disorders affecting the DRG, spinal nerve, or root. Previously, we examined electrophysiological changes in small-diameter lumbar level 3 (L3) and L4 DRG neurons treated with CCD; the present study extends these observations to medium-sized DRG neurons, which mediate additional sensory modalities, both nociceptive and non-nociceptive. Whole-cell patch-clamp recordings were obtained from medium-sized somata in the intact DRG in vitro. Compared with neurons from unoperated control animals, CCD neurons exhibited a decrease in the current threshold for action potential generation. In the CCD group, current densities of TTX-resistant and TTX-sensitive Na(+) current were increased, whereas the density of delayed rectifier voltage-dependent K(+) current was decreased. No change was observed in the transient or "A" current after CCD. We conclude that CCD in the mouse produces hyperexcitability in medium-sized DRG neurons, and the hyperexcitability is associated with an increased density of Na(+) current and a decreased density of delayed rectifier voltage-dependent K(+) current.
机译:背根神经节(DRG)的慢性压迫(CCD)是由椎间孔狭窄和其他影响DRG,脊髓神经或根部的疾病所引起的人类放射性疼痛的模型。以前,我们检查了用CCD治疗的小直径腰椎3级(L3)和L4 DRG神经元的电生理变化。本研究将这些观察结果扩展到中型DRG神经元,后者介导了伤害性和非伤害性的其他感觉方式。全细胞膜片钳记录是从完整的DRG中的中等大小的体细胞中获得的。与未经手术的对照动物的神经元相比,CCD神经元的动作电位产生电流阈值降低。在CCD组中,耐TTX和对TTX敏感的Na(+)电流的电流密度增加,而延迟整流器电压依赖性K(+)电流的密度减小。 CCD后的瞬态电流或“ A”电流未观察到变化。我们得出的结论是,小鼠中的CCD在中等大小的DRG神经元中产生超兴奋性,而超兴奋性与Na(+)电流的密度增加和延迟整流器电压依赖性K(+)电流的密度减小有关。

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