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家兔交感神经元中持续性电压门控毒蕈碱型钠电流诱导的编码特性

Encoding properties induced by a persistent voltage-gated muscarinic sodium current in rabbit sympathetic neurones.

作者信息

Gola M, Delmas P, Chagneux H

机构信息

Laboratoire de Neurobiologie, CNRS, Marseille, France.

出版信息

J Physiol. 1998 Jul 15;510 ( Pt 2)(Pt 2):387-99. doi: 10.1111/j.1469-7793.1998.387bk.x.

Abstract
  1. A time- and voltage-dependent Na(+)-selective current termed INa,M is activated by muscarinic agonists or splanchnic nerve stimulation in sympathetic neurones of rabbit coeliac and superior mesenteric ganglia. The firing patterns induced by INa,M were investigated in patch-clamped neurones within intact ganglia, and compared with those generated by a neuronal model including INa,M. 2. INa,M was characterized by voltage-dependent low threshold activation and high-threshold inactivation functions. The overlapping functions produced a persistent U-shaped current between -100 and -20 mV, which peaked at the cell resting potential. The activation and inactivation kinetics were fitted to single exponentials with time constants of approximately 100 and 400 ms, respectively. 3. Activating INa,M with muscarinic agonists or nerve stimulation depolarized and fired the neurones. The depolarization was paralleled by an apparent increase in input membrane resistance. The model showed that this paradox resulted from the turning off of INa,M during resistance tests, which also accounted for the all-or-none slow hyperpolarizing responses to current pulses. 4. INa,M gave the neurones an N-shaped I-V relationship capable of producing complex firing patterns. Under given conditions, carbachol-treated neurones could either fire regularly or remain silent at approximately -80 mV, i.e. they displayed bistability. Transitions from one state to the other were triggered with short current pulses. The transitions resulted from the turning on and off of INa,M. 5. Firing reduced INa,M, an effect abolished by blocking Ca2+ channels or adding BAPTA (40 mM) to the pipette. The Ca(2+)-related negative regulation of INa,M may have mediated endogenous bursting activity. Burst firing was generated by the model upon introducing Ca2+ regulation of INa,M. 6. The results demonstrate that INa,M gives prevertebral sympathetic neurones a wide repertoire of firing patterns: pacemaker-like properties, bistability and burst firing capability. They suggest that the INa,M-related encoding properties may provide sympathetic neurotransmission with new potentialities.
摘要
  1. 一种称为INa,M的时间和电压依赖性钠选择性电流,可被毒蕈碱激动剂或兔腹腔神经节和肠系膜上神经节交感神经元的内脏神经刺激激活。在完整神经节内的膜片钳神经元中研究了由INa,M诱导的放电模式,并与包含INa,M的神经元模型产生的模式进行了比较。2. INa,M的特征在于电压依赖性低阈值激活和高阈值失活功能。重叠的功能在-100至-20 mV之间产生持续的U形电流,该电流在细胞静息电位处达到峰值。激活和失活动力学分别拟合为时间常数约为100和400 ms的单指数曲线。3. 用毒蕈碱激动剂或神经刺激激活INa,M会使神经元去极化并放电。去极化与输入膜电阻的明显增加平行。模型表明,这种矛盾现象是由于在电阻测试期间INa,M关闭所致,这也解释了对电流脉冲的全或无缓慢超极化反应。4. INa,M使神经元具有能够产生复杂放电模式的N形电流-电压关系。在给定条件下,用卡巴胆碱处理的神经元可以有规律地放电,也可以在约-80 mV时保持沉默,即它们表现出双稳性。从一种状态到另一种状态的转变由短电流脉冲触发。这些转变是由INa,M的开启和关闭引起的。5. 放电会降低INa,M,通过阻断钙通道或向移液管中添加BAPTA(40 mM)可消除这种效应。INa,M的钙相关负调节可能介导了内源性爆发活动。在引入INa,M的钙调节后,模型产生了爆发式放电。6. 结果表明,INa,M赋予椎前交感神经元多种放电模式:类似起搏器的特性、双稳性和爆发式放电能力。它们表明,与INa,M相关的编码特性可能为交感神经传递提供新的潜力。

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Muscarinic activation of a novel voltage-sensitive inward current in rabbit prevertebral sympathetic neurons.
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