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细胞内钙缓冲对神经元兴奋性的调节:从放电到爆发式放电

Modulation of neuronal excitability by intracellular calcium buffering: from spiking to bursting.

作者信息

Roussel C, Erneux T, Schiffmann S N, Gall D

机构信息

Laboratoire de Neurophysiologie, Faculté de Médecine, Université Libre de Bruxelles, Route de Lennik 808, B-1070 Bruxelles, Belgium.

出版信息

Cell Calcium. 2006 May;39(5):455-66. doi: 10.1016/j.ceca.2006.01.004. Epub 2006 Mar 13.

Abstract

We have investigated the detailed regulation of neuronal firing pattern by the cytosolic calcium buffering capacity using a combination of mathematical modeling and patch-clamp recording in acute slice. Theoretical results show that a high calcium buffer concentration alters the characteristic regular firing of cerebellar granule cells and that a transition to various modes of oscillations occurs, including bursting. Using bifurcation analysis, we show that this transition from spiking to bursting is a consequence of the major slowdown of calcium dynamics. Patch-clamp recordings on cerebellar granule cells loaded with a high concentration of the fast calcium buffer BAPTA (15 mM) reveal dramatic alterations in their excitability as compared to cells loaded with 0.15 mM BAPTA. In high calcium buffering conditions, granule cells exhibit all bursting behaviors predicted by the model whereas bursting is never observed in low buffering. These results suggest that cytosolic calcium buffering capacity can tightly modulate neuronal firing patterns leading to generation of complex patterns and therefore that calcium-binding proteins may play a critical role in the non-synaptic plasticity and information processing in the central nervous system.

摘要

我们结合数学建模和急性脑片膜片钳记录技术,研究了胞质钙缓冲能力对神经元放电模式的详细调控。理论结果表明,高钙缓冲剂浓度会改变小脑颗粒细胞典型的规则放电,并且会发生向包括爆发式放电在内的各种振荡模式的转变。通过分岔分析,我们表明从尖峰放电到爆发式放电的这种转变是钙动力学显著减慢的结果。对加载高浓度快速钙缓冲剂BAPTA(15 mM)的小脑颗粒细胞进行的膜片钳记录显示,与加载0.15 mM BAPTA的细胞相比,其兴奋性发生了显著变化。在高钙缓冲条件下,颗粒细胞表现出模型预测的所有爆发式放电行为,而在低缓冲条件下从未观察到爆发式放电。这些结果表明,胞质钙缓冲能力可以紧密调节神经元放电模式,导致产生复杂模式,因此钙结合蛋白可能在中枢神经系统的非突触可塑性和信息处理中起关键作用。

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