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从大鼠副交感心脏神经节分离的培养神经元中乙酰胆碱诱发的电流。

Acetylcholine-evoked currents in cultured neurones dissociated from rat parasympathetic cardiac ganglia.

作者信息

Fieber L A, Adams D J

机构信息

Department of Molecular and Cellular Pharmacology, University of Miami School of Medicine, FL 33101.

出版信息

J Physiol. 1991 Mar;434:215-37. doi: 10.1113/jphysiol.1991.sp018466.

Abstract
  1. The properties of acetylcholine (ACh)-activated ion channels of parasympathetic neurones from neonatal rat cardiac ganglia grown in tissue culture were examined using patch clamp recording techniques. Membrane currents evoked by ACh were mimicked by nicotine, attenuated by neuronal bungarotoxin, and unaffected by atropine, suggesting that the ACh-induced currents are mediated by nicotinic receptor activation. 2. The current-voltage (I-V) relationship for whole-cell ACh-evoked currents exhibited strong inward rectification and a reversal (zero current) potential of -3 mV (NaCl outside, CsCl inside). The rectification was not alleviated by changing the main permeant cation or by removal of divalent cations from the intracellular or extracellular solutions. Unitary ACh-activated currents exhibited a linear I-V relationship with slope conductances of 32 pS in cell-attached membrane patches and 38 pS in excised membrane patches with symmetrical CsCl solutions. 3. Acetylcholine-induced currents were reversibly inhibited in a dose-dependent manner by the ganglionic antagonists, mecamylamine (Kd = 37 nM) and hexamethonium (IC50 approximately 1 microM), as well as by the neuromuscular relaxant, d-tubocurarine (Kd = 3 microM). Inhibition of ACh-evoked currents by hexamethonium could not be described by a simple blocking model for drug-receptor interaction. 4. The amplitude of the ionic current through the open channel was dependent on the extracellular Na+ concentration. The direction of the shift in reversal potential upon replacement of NaCl by mannitol indicates that the neuronal nicotinic receptor channel is cation selective and the magnitude suggests a high cation to anion permeability ratio. The cation permeability (PX/PNa) followed the ionic selectivity sequence Cs+ (1.06) greater than Na+ (1.0) greater than Ca2+ (0.93). Anion substitution experiments showed a relative anion permeability, PCl/PNa less than or equal to 0.05. 5. The nicotinic ACh-activated channels described mediate the responses of postganglionic parasympathetic neurones of the mammalian heart to vagal stimulation.
摘要
  1. 运用膜片钳记录技术,对在组织培养中生长的新生大鼠心脏神经节副交感神经元的乙酰胆碱(ACh)激活离子通道特性进行了研究。烟碱可模拟ACh诱发的膜电流,神经元型筒箭毒碱可使其减弱,而阿托品对其无影响,这表明ACh诱导的电流是由烟碱型受体激活介导的。2. 全细胞ACh诱发电流的电流-电压(I-V)关系呈现出强烈的内向整流,反转(零电流)电位为-3 mV(细胞外为NaCl,细胞内为CsCl)。改变主要通透阳离子或从细胞内或细胞外溶液中去除二价阳离子均不能减轻整流现象。在细胞贴附膜片和对称CsCl溶液的切除膜片中,单一ACh激活电流呈现线性I-V关系,斜率电导在细胞贴附膜片中为32 pS,在切除膜片中为38 pS。3. 神经节拮抗剂美加明(Kd = 37 nM)和六甲铵(IC50约为1 μM)以及神经肌肉松弛剂d-筒箭毒碱(Kd = 3 μM)均可剂量依赖性地可逆抑制ACh诱导的电流。六甲铵对ACh诱发电流的抑制不能用简单的药物-受体相互作用阻断模型来描述。4. 通过开放通道的离子电流幅度取决于细胞外Na+浓度。用甘露醇替代NaCl时反转电位的移动方向表明,神经元烟碱型受体通道具有阳离子选择性,其幅度表明阳离子与阴离子的渗透率比值较高。阳离子渗透率(PX/PNa)遵循离子选择性顺序:Cs+(1.06)>Na+(1.0)>Ca2+(0.93)。阴离子替代实验表明相对阴离子渗透率PCl/PNa≤0.05。5. 所述烟碱型ACh激活通道介导哺乳动物心脏节后副交感神经元对迷走神经刺激的反应。

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