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Ischemia alters sensitivity of action potential to the sodium-potassium pump

机译:缺血改变了钠 - 钾泵的动作电位的敏感性

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Ischemia increases extracellular concentration of potassium, [K], reduces the cytosolic ATP concentrations, and reduces cytosolic pH. The sodium-potassium pump, I, is an ATPase that maintains the ionic gradients across the cell membrane required to drive the action potential (AP) and depends on these parameters. The suitability of biophysically detailed mathematical models to study pathophysiological conditions is in their capability to produce physiological responses to parameter alterations. This study evaluated the sensitivity of I parameters and of [K] to AP in a human ventricle cell model using forward sensitivity analysis. The derivative based forward sensitivity of the O'Hara et af. model AP to [K], ATP, and pH was estimated using diference quotient algorithms. The FSA was verified by computing I-concentration curves for each of the three parameters. AP alterations under small and large alterations of the parameters were also computed. The model's AP has sensitivity to the ischemic parameters in agreement with experimental data. The sensitivity of the AP to pH, however, was found to be small. This could be improved by further developing the I formulation. FSA is a straightforward method serving as a first port of call to evaluate model suitability.
机译:缺血增加细胞外浓度[K],减少胞质ATP浓度,降低细胞溶质pH值。钠钾泵I,I,I,I,其是保持在驱动动作电位(AP)所需的细胞膜上的离子梯度并取决于这些参数。生物物理学详细的数学模型的适用性研究病理生理病症是他们对参数改变产生生理反应的能力。该研究使用前向灵敏度分析评估了在人心室模型中的I参数和[K]对AP的敏感性。基于o'hara et af的衍生性前瞻性敏感性。使用差异商算法估计模型AP至[k],ATP和pH。通过计算三个参数中的每一个的I浓度曲线来验证FSA。还计算了小型和大幅改变参数的AP改变。该模型的AP与实验数据一致地对缺血参数具有敏感性。然而,发现AP对pH的敏感性很小。这可以通过进一步发展我的制定来改善。 FSA是一种直接的方法,用作评估型号适用性的第一封呼叫端口。

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