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首页> 外文期刊>Analytica chimica acta >Progression of change in membrane capacitance and cytoplasm conductivity of cells during controlled starvation using dual-frequency DEP cytometry
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Progression of change in membrane capacitance and cytoplasm conductivity of cells during controlled starvation using dual-frequency DEP cytometry

机译:双频DEP细胞测定法控制饥饿期间细胞膜电容和细胞质电导率的变化进展

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摘要

The dielectric properties of cells are directly related to their morphological and physiological properties and can be used to monitor their status when exposed to stress conditions. In this work, dual-frequency dielectrophoresis (DEP) cytometry was employed to measure changes in the membrane capacitance and cytoplasm conductivity of single Chinese hamster ovary (CHO) cells during the progression of starvation-induced apoptosis. Our dual-frequency DEP cytometer enables simultaneous measurement of multiple dielectric properties of single cells and identification of their state (viable or apoptotic) within a heterogeneous sample. We employed one frequency to determine each cell's viability state and the other frequency to characterize the change in membrane capacitance or cytoplasm conductivity. Cells were starved by incubation in a medium lacking glucose and glutamine and monitored every 12 h over a 64 h period. Our results showed a subpopulation of early apoptotic cells emerged after 40 h in the starvation medium, which rapidly increased during the next 12 h. After 52 h, a complete transition from viable to apoptotic state was observed. Analyzing the subpopulation of viable cells over the first 52 h showed that the membrane capacitance gradually declined from an initial value of 2.0 to 1.2 mu F/cm(2), and was 0.9 mu F/cm(2) for apoptotic cells. The cytoplasm conductivity of viable cells initially remained constant and then declined from 0.40 to 0.27 S/m after 40 h, coinciding with onset of apoptotic processes. A dramatic decrease in cytoplasm conductivity from 0.27 to 0.07 S/m was observed after 52 h, corresponding to apoptotic cells. As membrane capacitance is related to membrane morphology and cytoplasm conductivity is related to intracellular ion concentrations, the results indicate that during controlled starvation the cell membrane smooths gradually whereas intracellular ion concentrations are initially maintained near homeostatic levels until a later dramatic decline occurs. (C) 2019 Elsevier B.V. All rights reserved.
机译:细胞的介电性质与其形态和生理特性直接相关,并且可用于在暴露于应力条件时监测其状态。在这项工作中,使用双频介电泳(DEP)细胞仪在饥饿诱导的细胞凋亡的进展过程中测量单个中国仓鼠卵巢(CHO)细胞的膜电容和细胞质电导率的变化。我们的双倍频DEP细胞仪能够同时测量单细胞的多种介电性质,并在异质样品中鉴定它们的状态(可行或凋亡)。我们使用一种频率来确定每个小区的活力状态和其他频率,以表征膜电容或细胞质电导率的变化。通过在缺乏葡萄糖和谷氨酰胺的培养基中孵育并在64小时内每12小时监测细胞。我们的结果表明,在饥饿培养基中40小时后出现的早期凋亡细胞亚群,在接下来的12小时内迅速增加。 52小时后,观察到从可行的凋亡状态完全过渡。在前52h上分析活细胞的亚沉积,表明膜电容从2.0至1.2μF/ cm(2)的初始值逐渐下降,并且凋亡细胞为0.9μF/ cm(2)。活细胞的细胞质电导率最初保持恒定,然后在40小时后从0.40至0.27 s / m下降,与凋亡过程一致。在52小时后观察到细胞质导电率从0.27至0.07 s / m的显着降低,对应于凋亡细胞。由于膜电容与膜形态相关和细胞质导电性与细胞内离子浓度有关,结果表明,在受控饥饿期间,细胞膜逐渐平滑,而细胞内离子浓度最初保持在稳态水平附近,直至发生后来的戏剧性下降。 (c)2019年Elsevier B.V.保留所有权利。

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