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Enhanced excitability of cortical neurons in low-divalent solutions is primarily mediated by altered voltage-dependence of voltage-gated sodium channels

机译:低二价溶液中皮质神经元的激发性主要是通过电压门控钠通道的改变电压依赖性介导的

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摘要

Increasing extracellular [Ca2+] ([Ca2+]o) strongly decreases intrinsic excitability in neurons but the mechanism is unclear. By one hypothesis, [Ca2+]o screens surface charge, reducing voltage-gated sodium channel (VGSC) activation and by another [Ca2+]o activates Calcium-sensing receptor (CaSR) closing the sodium-leak channel (NALCN). Here we report that neocortical neurons from CaSR-deficient (Casr-/-) mice had more negative resting potentials and did not fire spontaneously in reduced divalent-containing solution (T0.2) in contrast with wild-type (WT). However, after setting membrane potential to −70 mV, T0.2 application similarly depolarized and increased action potential firing in Casr-/- and WT neurons. Enhanced activation of VGSCs was the dominant contributor to the depolarization and increase in excitability by T0.2 and occurred due to hyperpolarizing shifts in VGSC window currents. CaSR deletion depolarized VGSC window currents but did not affect NALCN activation. Regulation of VGSC gating by external divalents is the key mechanism mediating divalent-dependent changes in neocortical neuron excitability.
机译:增加细胞外[Ca2 +]([Ca2 +] O)强烈降低神经元的内在兴奋性,但机制尚不清楚。通过一个假设,[Ca2 +] O筛曲面电荷,减少电压门控钠通道(Vgsc)活化和另一个[Ca2 +] O激活粘接钠泄漏通道(NALCN)的钙传感受体(Casr)。在这里,我们认为来自Casr缺陷(Casr - / - )小鼠的Neocortical神经元具有更多的负静止电位,并且与野生型(WT)相比,含二价溶液(T0.2)的含二价溶液(T0.2)中没有自发地射击。然而,在将膜电位设定为-70mV,T0.2施用之后,在CasR / - 和WT神经元中类似地去极化和增加动作射击。增强VGSC的激活是通过T0.2的去极化和兴奋性增加的主要因素,并且由于VGSC窗口电流中的超极化移位而发生。 Casr删除Depolarized VGSC窗口电流,但不会影响NALCN激活。外部二价vgsc族的调节是介导Neocortical神经元兴奋性的二价依赖性变化的关键机制。

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