Nakata Miho, Baba Hiroko, Kanai Kazuaki, Hoshi Tomiko, Sawai Setsu, Hattori Takamichi, Kuwabara Satoshi
Department of Neurology, Graduate School of Medicine, Chiba University, Chiba 260-8670, Japan.
Muscle Nerve. 2008 Jun;37(6):721-30. doi: 10.1002/mus.21031.
Patients with peripheral neuropathy frequently suffer from positive sensory (pain and paresthesias) and motor (muscle cramping) symptoms even in the recovery phase of the disease. To investigate the pathophysiology of increased axonal excitability in peripheral nerve regeneration, we assessed the temporal and spatial expression of voltage-gated Na(+) channels as well as nodal persistent Na(+) currents in a mouse model of Wallerian degeneration. Crushed sciatic nerves of 8-week-old C57/BL6J male mice underwent complete Wallerian degeneration at 1 week. Two weeks after crush, there was a prominent increase in the number of Na(+) channel clusters per unit area, and binary or broad Na(+) channel clusters were frequently found. Excess Na(+) channel clusters were retained up to 20 weeks post-injury. Excitability testing using latent addition suggested that nodal persistent Na(+) currents markedly increased beginning at week 3, and remained through week 10. These results suggest that axonal regeneration is associated with persistently increased axonal excitability resulting from increases in the number and conductance of Na(+) channels.
即使在疾病的恢复阶段,周围神经病变患者仍经常遭受感觉阳性(疼痛和感觉异常)和运动(肌肉痉挛)症状的困扰。为了研究周围神经再生过程中轴突兴奋性增加的病理生理学,我们在沃勒变性小鼠模型中评估了电压门控钠通道的时空表达以及结区持续性钠电流。8周龄C57/BL6J雄性小鼠的坐骨神经在受压1周后发生完全性沃勒变性。受压后两周,每单位面积的钠通道簇数量显著增加,并且经常发现二元或宽泛的钠通道簇。损伤后20周内,过量的钠通道簇一直存在。使用潜在叠加法进行的兴奋性测试表明,结区持续性钠电流从第3周开始显著增加,并持续到第10周。这些结果表明,轴突再生与钠通道数量和电导率增加导致的轴突兴奋性持续升高有关。