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COINCIDENCE ERROR DURING MEASUREMENT OF CELLULAR OSMOTIC PROPERTIES BY THE ELECTRICAL SENSING ZOIIEMETHOD

机译:用电传感方法测量细胞渗透性能时的巧合误差

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摘要

Coincidence is a phenomenon that occurs when electrical sensing zone instruments fail to temporally resolve two or more particles passing through the sensing zone in close proximity. We have investigated the potential for coincidence errors to confound the estimation of cellular osmotic properties: A mathematical model was developed to predict the magnitude of coincidence error as a function of the instrument sensing volume, the cell concentration, and the degree of cell aggregation The model was validated in a representative instrument (Coulter counter model Z2, with a 100-um aperture tube), for which the sensing volume was estimated to be approximately 2 nL. Furthermore, we measured the degree of cell aggregation in trypsinized cultures of MIN6 cells, and used these data to estimate the effect of coincidence on MIN6 cell volume measurements. Finally, we simulated water transport experiments, and determined the sensitivity of estimates of the osmotically inactive volume and the membrane water permeability to coincidence error Our results revealed that coincidence can result in significant overestimation of these two parameter values for high cell concentrations and for suspensions containing cell aggregates.
机译:巧合是一种现象,当电感应区仪器无法暂时分辨通过紧邻感应区的两个或多个粒子时。我们研究了巧合误差的可能性,混淆了细胞渗透特性的估计:开发了一个数学模型来预测巧合误差的大小,该误差随仪器感测体积,细胞浓度和细胞聚集程度而变。在具有代表性的仪器(带100um孔径管的Coulter计数器型号Z2)中进行了验证,该仪器的感应体积估计约为2 nL。此外,我们测量了MIN6细胞经胰蛋白酶消化的培养物中的细胞聚集程度,并使用这些数据来估计巧合性对MIN6细胞体积测量的影响。最后,我们模拟了水传输实验,并确定了渗透失活量和膜水渗透率估计值对重合误差的敏感性。我们的结果表明,重合可能导致高细胞浓度和含有细胞聚集体。

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