兔心脏末梢嵴细胞:一个模型

S. Demir, John W. Clark, W. Giles
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摘要

我们基于全细胞电压钳记录的实验结果以及酶分离的单个起搏器细胞的动作电位数据,建立了兔终末嵴细胞的数学模型。它由两个部分组成,一个是肌膜的霍奇金-赫胥黎(HH)模型,一个是细胞内和细胞外介质的液室模型。HH模型包括哺乳动物心脏起搏器细胞中已知离子电流(INa, ICa, L, ICa, T, IK, Ito, If, IK1, ic1)的方程,以及Na+ /K+和Ca2+泵和Na+ /Ca2+交换器。流体室模型是基于细胞内介质中离子浓度(Na+, K+和Ca2+)的物质平衡;假定细胞外培养基中的浓度是恒定的。提供细胞内介质中的Ca2+缓冲,以及肌浆网(SR)对Ca2+的摄取和释放。我们通过讨论和比较模型生成的结果与数据来模拟每个通道的功能作用。我们的模型能够很好地拟合来自几个已发表来源的实验数据,因此可以用来提供对离子电流的生物物理相互作用的见解,这些离子电流在兔终嵴细胞中产生起搏器电位和动作电位。
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The crist a terminalis cell in the rabbit heart: A model
We have developed a mathematical model for a rabbit crista terminalis cell which is based on experimental results from whole-cell voltage clamp recordings as well as action potential data from enzymatically isolated single pacemaker cells. It consists of two parts, a Hodgkin-Huxley (HH) model of sarcolemma, and a fluid compartment model of the intra- and extracellular media. The HH model includes equations for the known ionic currents (INa, ICa, L, ICa, T, IK, Ito, If, IK1, ICl) in mammalian cardiac pacemaker cells, as well as the Na+ /K+ and Ca2+ pumps and the Na+ /Ca2+ exchanger. The fluid compartment model is based on a material balance for the ion concentrations in the intracellular medium (Na+, K+ and Ca2+); the concentrations are assumed to be constant in the extracellular medium. Provision is made for Ca2+ buffering in the intracellular medium, as well as the uptake and release of Ca2+ by the sarcoplasmic reticulum (SR). We simulate the functional role of each channel by discussing and comparing the model-generated results with the data. Our model is able to provide good fits to experimental data from several published sources, and therefore can be used to provide insights into the biophysical interactions of the ionic currents that generate the pacemaker potential and action potential in a rabbit crista terminalis cell.
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