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Modeling of regulatory volume decrease in mesangial cells

机译:肾小球系膜细胞调节体积减少的模型

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An electromechanical model, combining stretch-activated ion channels and mechanical function of mesangial cell membrane, was formulated to approach and analyze hypotonically-induced swelling in isolated kidney mesangial cells. Simulation results showed that the osmotic gradient was rapidly nullified by solute efflux and water dilution within 15 seconds, followed by a negative overshooting that gradually returned to the baseline. It is suggested that the reversed osmotic gradient may be partially responsible for volume shrinkage after initial swelling in mesangial cells.
机译:建立了一个机电模型,结合了拉伸激活的离子通道和肾小球膜细胞膜的机械功能,以处理和分析低渗诱导的肾小球肾小球膜细胞的肿胀。仿真结果表明,渗透梯度在15秒内被溶质外排和水稀释迅速消除,随后出现负超调现象,逐渐回到基线。提示在肾小球系膜细胞最初溶胀后,反渗透梯度可能是体积缩小的部分原因。

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