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首页> 外文期刊>The Journal of Physiology >Excitability of paraventricular nucleus neurones that project to the rostral ventrolateral medulla is regulated by small-conductance Ca~(2+)-activated K+ channels
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Excitability of paraventricular nucleus neurones that project to the rostral ventrolateral medulla is regulated by small-conductance Ca~(2+)-activated K+ channels

机译:小传导Ca〜(2+)激活的K +通道调节投射到脑室腹侧延髓的脑室旁核神经元的兴奋性

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摘要

Whole cell patch-clamp recordings were performed in brain slices to investigate mechanisms regulating the excitability of paraventricular nucleus (PVN) neurones that project directly to the rostral ventrolateral medulla (RVLM) (PVN-RVLM neurones) of rats. In voltage-clamp recordings, step depolarization elicited a calcium-dependent outward tail current that reversed near E_K. The current was nearly abolished by apamin and by UCL1684, suggesting mediation by small-conductance Ca~(2+)-activated K~+ (SK) channels. In current-damp recordings, depolarizing step current injections evoked action potentials that underwent spike-frequency adaptation (SFA). SK channel blockade with apamin or UCL1684 increased the spike frequency without changing the rate of SFA. Upon termination of step current injection, a prominent medium after-hyperpolarization potential (mAHP) was observed. SK channel blockade abolished the mAHP and revealed an after-depolarization potential (ADP). In response to ramp current injections, the rate of sub-threshold depolarization was increased during SK channel blockade, indicating that depolarizing input resistance was increased. Miniature EPSC frequency, amplitude, and decay kinetics were unaltered by bath application of apamin, suggesting that SK channel blockade likely increased excitability by a postsynaptic action. We conclude that although SK channels play little role in generating SFA in PVN-RVLM neurones, their activation nevertheless does dampen excitability. The mechanism appears to involve activation of a mAHP that opposes a prominent ADP that would otherwise facilitate firing.
机译:在脑切片中进行全细胞膜片钳记录,以研究调节直接投射到大鼠腹侧腹外侧延髓(RVLM)(PVN-RVLM神经元)的脑室旁核(PVN)神经元兴奋性的机制。在电压钳记录中,阶跃去极化引起钙依赖性向外尾电流,该电流在E_K附近反转。 apapamin和UCL1684几乎消除了该电流,这表明它由小电导Ca〜(2+)激活的K〜+(SK)通道介导。在电流阻尼记录中,去极化步进电流注入会引起经过电位频率适应(SFA)的动作电位。用谷氨酰胺或UCL1684阻滞SK通道可增加尖峰频率,而不会改变SFA的速率。步进电流注入终止后,观察到明显的中等超极化后电位(mAHP)。 SK通道阻滞取消了mAHP,并显示了去极化后电位(ADP)。响应于斜坡电流注入,在SK通道阻塞期间,亚阈值去极化的速率增加,表明去极化输入电阻增加了。微量的EPSC频率,振幅和衰减动力学未因浴液中使用的阿帕明而改变,表明SK通道阻滞可能通过突触后作用而增加兴奋性。我们得出结论,尽管SK通道在PVN-RVLM神经元的SFA产生中起着很小的作用,但是它们的激活却抑制了兴奋性。该机制似乎涉及mAHP的激活,该mAHP与突出的ADP相对,否则会促进发射。

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