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频率依赖性的棘波传播可靠性是小脑浦肯野细胞轴突电压门控钠离子通道的功能。

Frequency-dependent reliability of spike propagation is function of axonal voltage-gated sodium channels in cerebellar Purkinje cells.

机构信息

State Key lab for Brain and Cognitive Sciences, Institute of Biophysics, Chinese Academy of Sciences, Beijing, 100101, China.

出版信息

Cerebellum. 2013 Dec;12(6):862-9. doi: 10.1007/s12311-013-0499-2.

Abstract

The spike propagation on nerve axons, like synaptic transmission, is essential to ensure neuronal communication. The secure propagation of sequential spikes toward axonal terminals has been challenged in the neurons with a high firing rate, such as cerebellar Purkinje cells. The shortfall of spike propagation makes some digital spikes disappearing at axonal terminals, such that the elucidation of the mechanisms underlying spike propagation reliability is crucial to find the strategy of preventing loss of neuronal codes. As the spike propagation failure is influenced by the membrane potentials, this process is likely caused by altering the functional status of voltage-gated sodium channels (VGSC). We examined this hypothesis in Purkinje cells by using pair-recordings at their somata and axonal blebs in cerebellar slices. The reliability of spike propagation was deteriorated by elevating spike frequency. The frequency-dependent reliability of spike propagation was attenuated by inactivating VGSCs and improved by removing their inactivation. Thus, the functional status of axonal VGSCs influences the reliability of spike propagation.

摘要

轴突上的棘波传播,如同突触传递,对确保神经元通讯至关重要。在诸如小脑浦肯野细胞等具有高放电率的神经元中,连续棘波向轴突末梢的安全传播受到了挑战。棘波传播的不足使得一些数字棘波在轴突末梢消失,因此,阐明棘波传播可靠性的机制对于寻找防止神经元代码丢失的策略至关重要。由于棘波传播的失败受到膜电位的影响,这一过程可能是通过改变电压门控钠离子通道(VGSC)的功能状态引起的。我们通过在小脑切片中对其胞体和轴突小球进行成对记录来检验这一假说。通过提高棘波频率,棘波传播的可靠性恶化。VGSCs 的失活可减弱棘波传播的频率依赖性可靠性,而去除其失活则可改善棘波传播的频率依赖性可靠性。因此,轴突 VGSCs 的功能状态影响棘波传播的可靠性。

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