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一种包含横向-轴向管状系统的豚鼠心室心肌细胞模型。

A model of the guinea-pig ventricular cardiac myocyte incorporating a transverse-axial tubular system.

作者信息

Pásek Michal, Simurda Jiri, Orchard Clive H, Christé Georges

机构信息

Institute of Thermomechanics, Czech Academy of Science-branch Brno, Czech Republic.

出版信息

Prog Biophys Mol Biol. 2008 Jan-Apr;96(1-3):258-80. doi: 10.1016/j.pbiomolbio.2007.07.022. Epub 2007 Aug 11.

Abstract

A model of the guinea-pig cardiac ventricular myocyte has been developed that includes a representation of the transverse-axial tubular system (TATS), including heterogeneous distribution of ion flux pathways between the surface and tubular membranes. The model reproduces frequency-dependent changes of action potential shape and intracellular ion concentrations and can replicate experimental data showing ion diffusion between the tubular lumen and external solution in guinea-pig myocytes. The model is stable at rest and during activity and returns to rested state after perturbation. Theoretical analysis and model simulations show that, due to tight electrical coupling, tubular and surface membranes behave as a homogeneous whole during voltage and current clamp (maximum difference 0.9 mV at peak tubular INa of -38 nA). However, during action potentials, restricted diffusion and ionic currents in TATS cause depletion of tubular Ca2+ and accumulation of tubular K+ (up to -19.8% and +3.4%, respectively, of bulk extracellular values, at 6 Hz). These changes, in turn, decrease ion fluxes across the TATS membrane and decrease sarcoplasmic reticulum (SR) Ca2+ load. Thus, the TATS plays a potentially important role in modulating the function of guinea-pig ventricular myocyte in physiological conditions.

摘要

已经建立了豚鼠心室肌细胞模型,该模型包含对横向轴管系统(TATS)的描述,包括表面膜和管膜之间离子通量途径的异质分布。该模型再现了动作电位形状和细胞内离子浓度的频率依赖性变化,并能复制显示豚鼠心肌细胞管腔与外部溶液之间离子扩散的实验数据。该模型在静息和活动时稳定,受到扰动后能恢复到静息状态。理论分析和模型模拟表明,由于紧密的电耦合,在电压钳和电流钳期间,管膜和表面膜表现为一个均匀的整体(在管内向钠电流峰值为-38 nA时,最大差异为0.9 mV)。然而,在动作电位期间,TATS中受限的扩散和离子电流导致管内Ca2+耗尽和管内K+积累(在6 Hz时,分别高达细胞外总体值的-19.8%和+3.4%)。这些变化进而减少跨TATS膜的离子通量,并降低肌浆网(SR)的Ca2+负荷。因此,在生理条件下,TATS在调节豚鼠心室肌细胞功能方面可能起着重要作用。

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