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大鼠CA1锥体神经元中细胞外钙对内在兴奋性调节机制的评估。

Evaluation of mechanisms involved in regulation of intrinsic excitability by extracellular calcium in CA1 pyramidal neurons of rat.

作者信息

Forsberg My, Zhou Dinna, Jalali Shadi, Faravelli Giorgia, Seth Henrik, Björefeldt Andreas, Hanse Eric

机构信息

Department of Physiology, The Sahlgrenska Academy, University of Gothenburg, Gothenburg, Sweden.

Department of Clinical Neuroscience, Institute of Physiology and Neuroscience, Sahlgrenska Academy, University of Gothenburg, Gothenburg, Gothenburg, Sweden.

出版信息

J Neurochem. 2025 Jan;169(1):e16209. doi: 10.1111/jnc.16209. Epub 2024 Aug 20.

Abstract

It is well recognized that changes in the extracellular concentration of calcium ions influence the excitability of neurons, yet what mechanism(s) mediate these effects is still a matter of debate. Using patch-clamp recordings from rat hippocampal CA1 pyramidal neurons, we examined the contribution of G-proteins and intracellular calcium-dependent signaling mechanisms to changes in intrinsic excitability evoked by altering the extracellular calcium concentration from physiological (1.2 mM) to a commonly used experimental (2 mM) level. We find that the inhibitory effect on intrinsic excitability of calcium ions is mainly expressed as an increased threshold for action potential firing (with no significant effect on resting membrane potential) that is not blocked by either the G-protein inhibitor GDPβS or the calcium chelator BAPTA. Our results therefore argue that in the concentration range studied, G-protein coupled calcium-sensing receptors, non-selective cation conductances, and intracellular calcium signaling pathways are not involved in mediating the effect of extracellular calcium ions on intrinsic excitability. Analysis of the derivative of the action potential, dV/dt versus membrane potential, indicates a current shift towards more depolarized membrane potentials at the higher calcium concentration. Our results are thus consistent with a mechanism in which extracellular calcium ions act directly on the voltage-gated sodium channels by neutralizing negative charges on the extracellular surface of these channels to modulate the threshold for action potential activation.

摘要

人们普遍认识到,细胞外钙离子浓度的变化会影响神经元的兴奋性,但介导这些效应的机制仍存在争议。我们使用大鼠海马CA1锥体神经元的膜片钳记录,研究了G蛋白和细胞内钙依赖性信号传导机制在将细胞外钙浓度从生理水平(1.2 mM)改变为常用实验水平(2 mM)时所诱发的内在兴奋性变化中的作用。我们发现,钙离子对内在兴奋性的抑制作用主要表现为动作电位发放阈值的升高(对静息膜电位无显著影响),且不受G蛋白抑制剂GDPβS或钙螯合剂BAPTA的阻断。因此,我们的结果表明,在所研究的浓度范围内,G蛋白偶联的钙敏感受体、非选择性阳离子电导和细胞内钙信号通路不参与介导细胞外钙离子对内在兴奋性的影响。对动作电位导数dV/dt与膜电位的分析表明,在较高钙浓度下,电流向更去极化的膜电位方向移动。因此,我们的结果与一种机制一致,即细胞外钙离子通过中和这些通道细胞外表面的负电荷直接作用于电压门控钠通道,从而调节动作电位激活的阈值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a02/11657917/e4e96afb9f3a/JNC-169-0-g004.jpg

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