Corrias Alberto, Buist Martin L
Division of Bioengineering, National University of Singapore, 9 Engineering Drive 1, Singapore 117576, Singapore.
Ann Biomed Eng. 2007 Sep;35(9):1595-607. doi: 10.1007/s10439-007-9324-8. Epub 2007 May 8.
A physiologically realistic quantitative description of the electrical behavior of a gastric smooth muscle (SM) cell is presented. The model describes the response of a SM cell when activated by an electrical stimulus coming from the network of interstitial cells of Cajal (ICC) and is mediated by the activation of different ion channels species in the plasma membrane. The conductances (predominantly Ca2+ and K+) that are believed to substantially contribute to the membrane potential fluctuations during slow wave activity have been included in the model. A phenomenological description of intracellular Ca2+ dynamics has also been included because of its primary importance in regulating a number of cellular processes. In terms of shape, duration, and amplitude, the resulting simulated smooth muscle depolarizations (SMDs) are in good agreement with experimentally recordings from mammalian gastric SM in control and altered conditions. This model has also been designed to be suitable for incorporation into large scale multicellular simulations.
本文提出了一种对胃平滑肌(SM)细胞电行为的生理现实定量描述。该模型描述了SM细胞在受到来自 Cajal 间质细胞(ICC)网络的电刺激激活时的反应,并且由质膜中不同离子通道种类的激活介导。该模型纳入了据信在慢波活动期间对膜电位波动有重大贡献的电导(主要是Ca2+和K+)。由于细胞内Ca2+动力学在调节许多细胞过程中的首要重要性,还纳入了对其的唯象描述。在形状、持续时间和幅度方面,所产生的模拟平滑肌去极化(SMD)与在对照和改变条件下哺乳动物胃SM的实验记录高度一致。该模型还被设计为适合纳入大规模多细胞模拟。