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乙酰胆碱对家兔窦房结变时性效应的离子基础

Ionic basis of the chronotropic effect of acetylcholine on the rabbit sinoatrial node.

作者信息

Boyett M R, Kodama I, Honjo H, Arai A, Suzuki R, Toyama J

机构信息

Department of Circulation and Respiration, Nagoya University, Japan.

出版信息

Cardiovasc Res. 1995 Jun;29(6):867-78.

PMID:7656291
Abstract

OBJECTIVE

The aim was to study the ionic basis of the chronotropic effects of bath applied acetylcholine and vagal stimulation on the rabbit sinoatrial node.

METHODS

The chronotropic effect of bath applied acetylcholine was measured in single cells and small multicellular preparations from the rabbit sinoatrial node and the chronotropic effect of postganglionic vagal stimulation was measured in the intact sinoatrial node. The roles of the hyperpolarisation activated current, i(f), the acetylcholine activated potassium current, iK,ACh, and the L-type calcium current, iCa, were investigated by blocking the currents with 1-2 mM Cs+ or 10(-6) M UL-FS49, 0.2-1.0 mM Ba2+, and 6 x 10(-6) M nifedipine, respectively.

RESULTS

Under control conditions, small multicellular preparations were approximately two orders of magnitude less sensitive to bath applied acetylcholine than single cells. However, after block of acetylcholinesterase by eserine in small multicellular preparations the sensitivities of the two types of preparation were approximately the same. Block of i(f) either had no discernible effect or increased the chronotropic effect of bath applied acetylcholine on single cells or small multicellular preparations, whereas partial block of iK,ACh reduced it substantially. Similarly, block of i(f) did not suppress the initial slowing of spontaneous action potentials by vagal stimulation, whereas partial block of iK,ACh reduced it. The hyperpolarisation of the arrested sinoatrial node in response to vagal stimulation was also substantially reduced by block of iK,ACh. Partial block of iCa caused large decreases in the action potential amplitude and maximum diastolic potential, but little decrease in the rate of spontaneous action potentials, and therefore did not mimic the effect of acetylcholine.

CONCLUSIONS

The chronotropic effects of bath applied acetylcholine and vagal stimulation are not principally the result of a suppression of i(f) or iCa, whereas the activation of iK,ACh may play an important role.

摘要

目的

研究浴槽中应用乙酰胆碱和迷走神经刺激对兔窦房结变时性作用的离子基础。

方法

在兔窦房结的单细胞和小细胞团标本中测量浴槽中应用乙酰胆碱的变时性作用,在完整的窦房结中测量节后迷走神经刺激的变时性作用。分别用1 - 2 mM Cs⁺或10⁻⁶ M UL - FS49、0.2 - 1.0 mM Ba²⁺和6×10⁻⁶ M硝苯地平阻断超极化激活电流(i(f))、乙酰胆碱激活钾电流(iK,ACh)和L型钙电流(iCa),研究它们的作用。

结果

在对照条件下,小细胞团标本对浴槽中应用乙酰胆碱的敏感性比单细胞低约两个数量级。然而,在小细胞团标本中用毒扁豆碱阻断乙酰胆碱酯酶后,两种标本的敏感性大致相同。阻断i(f)对单细胞或小细胞团标本中浴槽应用乙酰胆碱的变时性作用要么没有明显影响,要么使其增加,而部分阻断iK,ACh则使其显著降低。同样,阻断i(f)并未抑制迷走神经刺激引起的自发动作电位的初始减慢,而部分阻断iK,ACh则使其降低。阻断iK,ACh也使迷走神经刺激引起的静止窦房结的超极化显著降低。部分阻断iCa导致动作电位幅度和最大舒张电位大幅下降,但自发动作电位频率下降很少,因此不能模拟乙酰胆碱的作用。

结论

浴槽中应用乙酰胆碱和迷走神经刺激的变时性作用主要不是抑制i(f)或iCa的结果,而iK,ACh的激活可能起重要作用。

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