Ikeda R, Kato F
Laboratory of Neurophysiology, Department of Neuroscience, Jikei University School of Medicine, 3-25-8 Nishi-shimbashi, Minato-ku, Tokyo 105-8461, Japan.
Neuroscience. 2005;134(3):889-99. doi: 10.1016/j.neuroscience.2005.05.002.
Section of motor nerve fibers (axotomy) elicits a variety of morphofunctional responses in the motoneurons in the motor nuclei. Later than the fifth post-operational day after section of the facial nerve, synapse elimination occurs in the facial motoneuron pool, leading to gradual abolishment of synaptic input-driven activities of the axotomized motoneurons. However, it remains unknown how the amount of synaptic input changes during this period between the axotomy and the synaptic elimination. Here we examined a hypothesis that axotomy of the motoneurons itself modifies the synaptic inputs to the motoneurons. One day after axotomy, the postsynaptic currents, mostly mediated by non-N-methyl-D-aspartic acid (non-NMDA) receptors, recorded from the axotomized facial motoneurons in the acute slice preparations of the rats were of higher frequency and larger amplitude than those in the intact motoneurons. This difference was not observed after the third post-operational day and appeared earlier than the changes in the electrophysiological properties and increase in the number of dead neurons in the axotomized motor nucleus. The larger postsynaptic current frequency of the axotomized motoneurons was observed both in the absence and in the presence of tetrodotoxin citrate, suggesting that increased excitability and facilitated release underlie the postsynaptic current frequency increase. These results suggest that synaptic re-organization occurs in the synapses of motoneurons at an early stage following axotomy.
运动神经纤维切断术(轴突切断术)会在运动核中的运动神经元引发多种形态功能反应。在面神经切断术后的第五天之后,面神经运动神经元池会发生突触消除,导致轴突切断的运动神经元的突触输入驱动活动逐渐消失。然而,在轴突切断术和突触消除之间的这段时间里,突触输入量如何变化仍不清楚。在此,我们检验了一个假设,即运动神经元自身的轴突切断会改变其突触输入。轴突切断术后一天,在大鼠急性脑片制备中,从轴突切断的面神经运动神经元记录到的突触后电流,大多由非N-甲基-D-天冬氨酸(非NMDA)受体介导,其频率和幅度均高于完整运动神经元。术后第三天后未观察到这种差异,且其出现早于轴突切断的运动核中电生理特性的变化以及死亡神经元数量的增加。在有无柠檬酸河豚毒素的情况下,均观察到轴突切断的运动神经元的突触后电流频率更高,这表明兴奋性增加和释放易化是突触后电流频率增加的基础。这些结果表明,轴突切断术后早期,运动神经元的突触会发生重组。