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钾离子诱导的气道平滑肌对电场刺激反应性的改变。

K+-induced alterations in airway muscle responsiveness to electrical field stimulation.

作者信息

Murlas C, Ehring G, Suszkiw J, Sperelakis N

出版信息

J Appl Physiol (1985). 1986 Jul;61(1):61-7. doi: 10.1152/jappl.1986.61.1.61.

Abstract

We investigated possible pre- and postsynaptic effects of K+-induced depolarization on ferret tracheal smooth muscle (TSM) responsiveness to cholinergic stimulation. To assess electromechanical activity, cell membrane potential (Em) and tension (Tm) were simultaneously recorded in buffer containing 6, 12, 18, or 24 mM K+ before and after electrical field stimulation (EFS) or exogenous acetylcholine (ACh). In 6 mM K+, Em was -58.1 +/- 1.0 mV (mean +/- SE). In 12 mM K+, Em was depolarized to -52.3 +/- 0.9 mV, basal Tm did not change, and both excitatory junctional potentials and contractile responses to EFS at short stimulus duration were larger than in 6 mM K+. No such potentiation occurred at a higher K+, although resting Em and Tm increased progressively above 12 mM K+. The sensitivity of ferret TSM to exogenous ACh appeared unaffected by K+. To determine whether the hyperresponsiveness in 12 mM K+ was due, in part, to augmented ACh release from intramural airway nerves, experiments were done using TSM preparations incubated with [3H]choline to measure [3H]ACh release at rest and during EFS. Although resting [3H]ACh release increased progressively in higher K+, release evoked by EFS was maximal in 12 mM K+ and declined in higher concentrations. We conclude that small elevations in the extracellular K+ concentration augment responsiveness of the airways, by increasing the release of ACh both at rest and during EFS from intramural cholinergic nerve terminals. Larger increases in K+ appear to be inhibitory, possibly due to voltage-dependent effects that occur both pre- and postsynaptically.

摘要

我们研究了钾离子诱导的去极化对雪貂气管平滑肌(TSM)对胆碱能刺激反应性的可能的突触前和突触后效应。为了评估机电活动,在电场刺激(EFS)或外源性乙酰胆碱(ACh)之前和之后,在含有6、12、18或24 mM钾离子的缓冲液中同时记录细胞膜电位(Em)和张力(Tm)。在6 mM钾离子中,Em为-58.1±1.0 mV(平均值±标准误)。在12 mM钾离子中,Em去极化至-52.3±0.9 mV,基础Tm没有变化,并且在短刺激持续时间下,对EFS的兴奋性接头电位和收缩反应均大于在6 mM钾离子中。在较高的钾离子浓度下没有发生这种增强作用,尽管静息Em和Tm在高于12 mM钾离子时逐渐增加。雪貂TSM对外源性ACh的敏感性似乎不受钾离子的影响。为了确定在12 mM钾离子中的高反应性是否部分归因于壁内气道神经中ACh释放的增加,使用与[3H]胆碱一起孵育的TSM制剂进行实验,以测量静息和EFS期间的[3H]ACh释放。尽管静息[3H]ACh释放在较高的钾离子浓度下逐渐增加,但EFS诱发的释放在12 mM钾离子中最大,并在更高浓度下下降。我们得出结论,细胞外钾离子浓度的小幅升高通过增加静息和EFS期间壁内胆碱能神经末梢的ACh释放来增强气道的反应性。钾离子浓度的较大升高似乎具有抑制作用,可能是由于突触前和突触后发生的电压依赖性效应。

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