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首页> 外文期刊>American Journal of Physiology >Modeling cell volume regulation in nonexcitable cells: the roles of the Na+ pump and of cotransport systems.
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Modeling cell volume regulation in nonexcitable cells: the roles of the Na+ pump and of cotransport systems.

机译:在不可激发细胞中模拟细胞体积调节:Na +泵和共转运系统的作用。

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The purpose of this study is to contribute to understanding the role of Na+-K+-ATPase and of ionic cotransporters in the regulation of cell volume, by employing a model that describes the rates of change of the intracellular concentrations of Na+, K+, and Cl-, of the cell volume, and of the membrane potential. In most previous models of dynamic cellular phenomena, Na+-K+-ATPase is incorporated via phenomenological formulations; the enzyme is incorporated here via an explicit kinetic scheme. Another feature of the present model is the capability to perform short-term cell volume regulation mediated by cotransporters of KCl and NaCl. The model is employed to perform numerical simulations for a "typical" nonpolarized animal cell. Basically, the results are consistent with the view that the Na+ pump mainly plays a long-term role in the maintenance of the electrochemical gradients of Na+ and K+ and that short-term cell volume regulation is achieved via passive transport, exemplified in this case by the cotransport of KCl and NaCl.
机译:这项研究的目的是通过采用描述细胞内Na +,K +和Cl浓度变化速率的模型,有助于理解Na + -K + -ATPase和离子共转运蛋白在细胞体积调节中的作用。 -,细胞体积和膜电位。在大多数以前的动态细胞现象模型中,Na + -K + -ATPase是通过现象学的方法引入的。通过明确的动力学方案将酶并入此处。本模型的另一个特征是能够执行由KCl和NaCl的共转运蛋白介导的短期细胞体积调节的能力。该模型用于对“典型”非极化动物细胞进行数值模拟。基本上,结果与以下观点一致:Na +泵主要在维持Na +和K +的电化学梯度中起长期作用,并且通过被动运输实现了短期细胞体积调节,在这种情况下可以举例说明氯化钾和氯化钠的共同运输。

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