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首页> 外文期刊>Cellular and Molecular Neurobiology >Critical roles of voltage-dependent sodium channels in the process of synaptogenesis during the postnatal cortical development of rats.
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Critical roles of voltage-dependent sodium channels in the process of synaptogenesis during the postnatal cortical development of rats.

机译:电压依赖性钠通道在大鼠出生后皮质发育过程中突触形成过程中的关键作用。

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The developmental changes of the sodium channel and construction of synapse connection were studied in cerebral cortical pyramidal neurons of rats at different age groups. We used whole-cell patch-clamp recordings to characterize electrophysiological properties of cortical neurons at different age stages, including the sodium currents, APs evoked by depolarizing current and short-term plasticity of the eEPSCs. The result shows that the sodium currents undergo a hyperpolarizing shift in activation process and acceleration of activation and inactivation with age. The maximal sodium current also increased with maturation, and the evident difference appeared from P7-P11 (with the day of birth as P0) to P12-P15 group. The tendency of the sodium current density changes which exhibited the same properties as that of sodium current, showed the significant increases from P19-P21 to P >or= 22 group. The APs' parameters exhibited the age-dependent changes except the threshold, including the increase of the peak amplitude from P or= 22 group, the 2nd response showed the tendency of facilitation compared with the younger age groups. Our results indicated that the cerebral cortical pyramidal neurons of rats are undergoing marked changes in the characteristics of their sodium channels with maturation, which play a critical role in synaptogenesis and construction of the neuronal network.
机译:研究了不同年龄组大鼠大脑皮质锥体神经元钠通道的发育变化和突触连接的建立。我们使用全细胞膜片钳记录来表征不同年龄阶段的皮质神经元的电生理特性,包括钠电流,通过去极化电流诱发的AP和eEPSC的短期可塑性。结果表明,钠电流在活化过程中经历超极化转变,并随着年龄的增长而加速活化和失活。最大钠电流也随着成熟而增加,并且从P7-P11(以出生当天为P0)到P12-P15组出现明显差异。表现出与钠电流相同的性质的钠电流密度变化趋势显示出从P19-P21到P≥22的显着增加。除了阈值外,AP的参数还显示出与年龄有关的变化,包括从P <或= 6组到P16-P18组的峰值幅度增加,以及持续时间和峰龄随年龄的减少。随着成熟,第一个eEPSC的振幅增加,并且STP在所有观察到的组中均显示出抑郁。另外,尽管在P>或= 22组中,STP也表现出对最后三个刺激的抑制作用,但是与较年轻的组相比,第二种反应表现出促进的趋势。我们的结果表明,大鼠的大脑皮质锥体神经元的钠通道特征随着成熟而发生明显变化,这在突触形成和神经元网络的构建中起着至关重要的作用。

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