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首页> 外文期刊>Journal of Neurophysiology >Corticotropin-releasing factor increases Purkinje neuron excitability by modulating sodium, potassium, and I-h currents
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Corticotropin-releasing factor increases Purkinje neuron excitability by modulating sodium, potassium, and I-h currents

机译:促肾上腺皮质激素释放因子通过调节钠,钾和I-h电流来增加浦肯野神经元兴奋性

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摘要

Corticotropin-releasing factor (CRF) is a neuromodulator closely associated with stress responses. It is synthesized and released in the central nervous system by various neurons, including neurons of the inferior olive. The targets of inferior olivary neurons, the cerebellar Purkinje neurons (PNs), are endowed with CRF receptors. CRF increases the excitability of PNs in vivo, but the biophysical mechanism is not clear. Here we examine the effect of CRF on the firing properties of PNs using acute rat cerebellar slices. CRF increased the PN firing rate, regardless of whether they were firing tonically or switching between firing and quiescent periods. Current- and voltage-clamp experiments showed that the increase in firing rate was associated with a voltage shift of the activation curve of the persistent sodium current and hyperpolarizing-activated current, as well as activation of voltage-dependent potassium current. The multiple effects on various ionic currents, which are in agreement with the possibility that activation of CRF receptors triggers several intracellular pathways, are manifested as an increase excitability of PN.
机译:促肾上腺皮质激素释放因子(CRF)是与压力反应密切相关的神经调节剂。它是由各种神经元(包括下橄榄的神经元)合成并在中枢神经系统中释放的。下部橄榄神经元的小脑浦肯野神经元(PNs)的目标被赋予CRF受体。 CRF增加了体内PNs的兴奋性,但其生物物理机制尚不清楚。在这里,我们使用急性大鼠小脑切片检查了CRF对PNs放电特性的影响。 CRF可以提高PN触发率,无论它们是音调触发还是在触发和静止期之间切换。电流钳和电压钳实验表明,点火速率的增加与持续钠电流和超极化激活电流的激活曲线的电压偏移以及电压依赖性钾电流的激活有关。对各种离子电流的多重影响,与CRF受体激活触发几种细胞内途径的可能性一致,表现为PN的兴奋性增加。

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