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Mean residence time of molecules diffusing in a cell bounded by a semi-permeable membrane: Monte Carlo simulations and an expression relating membrane transition probability to permeability

机译:分子在以半透膜为边界的细胞中扩散的平均停留时间:蒙特卡洛模拟和将膜转变概率与渗透率相关的表达式

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The rapid exchange of water across erythrocyte membranes is readily measured using an NMR method that entails doping a suspension of cells with a moderately high concentration of Mn2+ and measuring the rate of transverse relaxation of the nuclear magnetisation. Analysis of the data yields an estimate of the rate constant for membrane transport, from which the membrane permeability can be determined. It is assumed in the analysis that the efflux rate of the water is solely a function of the rate of membrane permeation and that the time it takes for intracellular water molecules to diffuse to the membrane is relatively insignificant. The limits of this assumption were explored by using random-walk simulations of diffusion in cells modelled as parallel planes, spheres, and biconcave discs. The rate of membrane transport was specified in terms of a transition probability but it was not initially clear what the relationship should be between this parameter and the diffusional membrane permeability P-d. This relationship was derived and used to show that the mean residence time for a water molecule is determined by P-d when the diffusion coefficient is above a certain threshold value; it is determined by the distance to the membrane below that value. [References: 12]
机译:使用NMR方法可以轻松测量水在红细胞膜上的快速交换,该方法需要用中等浓度的Mn2 +掺杂细胞悬浮液,并测量核磁化强度的横向弛豫速率。数据分析得出膜运输速率常数的估计值,从中可以确定膜的渗透性。在分析中假设水的流出速率仅是膜渗透速率的函数,并且细胞内水分子扩散至膜所花费的时间相对较小。通过使用随机游走模拟在平行平面,球形和双凹面圆盘中建模的单元格中的扩散,探索了这一假设的极限。膜转移速率是根据转移概率来指定的,但最初尚不清楚该参数与扩散膜渗透率P-d之间的关系。推导了这种关系,并用于表明当扩散系数高于某个阈值时,水分子的平均停留时间由P-d决定;它取决于到该值以下的膜的距离。 [参考:12]

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