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Mathematical Modelling of Ca2+ Oscillations in Airway Smooth Muscle Cells

机译:气道平滑肌细胞CA2 +振动的数学建模

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The action of different agonists such as acetylcholine on the membrane of airway smooth muscle cells may induce cytosolic Ca2+ oscillations which can be a part of the Ca2+ signalling pathway, eventually leading to cell contraction. The aim of the present study is to present a mathematical model of the possible effect of the initial Ca2+ distribution within the cell on the form and frequency of induced Ca2+ oscillations. It takes into account intracellular Ca2+ stores such as sarcoplasmic reticulum and cytosolic proteins as well as Ca2+ exchange across the plasma membrane. We are able to demonstrate a closer agreement of model predictions with observed Ca2+ traces for a significantly wider range of parameter values, as was previously reported. We show also that the total cellular Ca2+ content is an important system parameter especially because of the content in sarcoplasmic reticulum. At a total Ca2+ increase of about 20%, the oscillation frequency increases by 25%; also, damped oscillations become sustained. Cases are indicated in which such a situation could occur.
机译:不同激动剂如乙酰胆碱在气道平滑肌细胞膜上的作用可以诱导细胞溶胶Ca2 +振荡,其可以是Ca2 +信号通路的一部分,最终导致细胞收缩。本研究的目的是呈现在诱导的CA2 +振荡的细胞内初始CA2 +分布的可能效果的数学模型。它考虑了细胞内Ca2 +储存,例如肌肉网和细胞溶质蛋白以及血浆膜的Ca2 +交换。我们能够逐步逐步与观察到的CA2 +迹线进行模型预测的协议,以便如前所述,有明显更广泛的参数值。我们还表明,总细胞CA2 +含量是一个重要的系统参数,尤其是因为肌肉网上的含量。总CA2 +增加约20%,振荡频率增加25%;此外,阻尼振荡变得持续。表明案件可能发生这种情况。

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