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培养的人骨骼肌细胞的兴奋-收缩偶联以及基础胞质Ca2+与兴奋性之间的关系。

Excitation-contraction coupling of cultured human skeletal muscle cells and the relation between basal cytosolic Ca2+ and excitability.

作者信息

Benders A A, Oosterhof A, Wevers R A, Veerkamp J H

机构信息

Department of Biochemistry, University of Nijmegen, Nijmegen, The Netherlands.

出版信息

Cell Calcium. 1997 Jan;21(1):81-91. doi: 10.1016/s0143-4160(97)90099-3.

Abstract

Cultured human skeletal muscle cells are frequently used as a model to study muscle pathology, in which Ca2+ homeostasis might be affected. However, their excitation-contraction (E-C) coupling has been poorly investigated. In order to elucidate E-C coupling of cultured muscle cells, we activated the acetylcholine receptors, voltage-dependent Na+ channels, dihydropyridine receptors or ryanodine receptors both in the presence and absence of external Ca2+, as well as after specific inhibition, and measured the effects on the cytosolic Ca2+ concentration ([Ca2+]i) using Fura-2. Furthermore, we examined the excitability of these cells during iterative high (125 mM) K+ stimulation with various repolarisation intervals. The resting [Ca2+]i in muscle cells of controls is about 130 nM. Acetylcholine, veratridine, high K+ and caffeine elicit dose-dependent Ca2+ transients, which are independent of extracellular Ca2+ and can be inhibited by alpha-bungarotoxin, tetrodotoxin, nifedipine or ryanodine. During repetitive K+ stimulation, the excitability of the muscle cells depends on the repolarisation interval between successive stimulations. Upon shortening the repolarisation time the Ca2+ transients become smaller and slower. Thereby, the basal [Ca2+]i rises, the Ca2+ response amplitude declines and both the half-increase and half-decay time increase. However, if the basal [Ca2+]i equals the resting [Ca2+]i the initial Ca2+ response can be recovered. The intracellular pH of 7.23, measured by BCECF, is unaffected by repeated K+ stimulation, whatever the repolarisation interval was. In conclusion, cultured human skeletal muscle cells possess a 'skeletal muscle type' of E-C coupling and their excitability at iterative stimulation is set by their basal [Ca2+]i.

摘要

培养的人骨骼肌细胞经常被用作研究肌肉病理学的模型,其中钙稳态可能会受到影响。然而,它们的兴奋-收缩(E-C)偶联却很少被研究。为了阐明培养的肌肉细胞的E-C偶联,我们在有和没有细胞外钙的情况下,以及在特异性抑制后,激活乙酰胆碱受体、电压依赖性钠通道、二氢吡啶受体或兰尼碱受体,并使用Fura-2测量对细胞质钙浓度([Ca2+]i)的影响。此外,我们在不同的复极化间隔下,用高(125 mM)钾进行反复刺激时,检查了这些细胞的兴奋性。对照组肌肉细胞的静息[Ca2+]i约为130 nM。乙酰胆碱、藜芦碱、高钾和咖啡因引起剂量依赖性的钙瞬变,这些瞬变与细胞外钙无关,并且可以被α-银环蛇毒素、河豚毒素、硝苯地平或兰尼碱抑制。在反复的钾刺激过程中,肌肉细胞的兴奋性取决于连续刺激之间的复极化间隔。缩短复极化时间时,钙瞬变变得更小、更慢。由此,基础[Ca2+]i升高,钙反应幅度下降,半增加和半衰减时间均增加。然而,如果基础[Ca2+]i等于静息[Ca2+]i,则初始钙反应可以恢复。无论复极化间隔如何,用BCECF测量的细胞内pH值7.23不受反复钾刺激的影响。总之,培养的人骨骼肌细胞具有一种“骨骼肌类型”的E-C偶联,并且它们在反复刺激时的兴奋性由其基础[Ca2+]i设定。

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