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A microfluidic device based on gravity and electric force driving for flow cytometry and fluorescence activated cell sorting

机译:基于重力和电力驱动的微流控设备,用于流式细胞仪和荧光激活细胞分选

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摘要

A novel method based on gravity and electric force driving of cells was developed for flow cytometry and fluorescence activated cell sorting in a microfluidic chip system.In the experiments cells flowed spontaneously under their own gravity in a upright microchip,passed through the detection region and then entered into the sorting electric field one by one at an average velocity of 0.55 mm s~(-1)and were fluorescence activated cell sorted(FACS)by a switch-off activation program.In order to study the dynamical and kinematic characteristics of single cells in gravity and electric field of microchannels a physical and numerical module based on Newton's Law of motion was established and optimized.Hydroxylpropylmethyl cellulose(HPMC)was used to minimize cell assembling,sedimentation and adsorption to microchannels.This system was applied to estimate the necrotic and apoptotic effects of ultraviolet(UV)light on HeLa cells by exposing them to UV radiation for 10,20 or 40 min and the results showed that UV radiation induced membrane damage contributed to the apoptosis and necrosis of HeLa cells.
机译:开发了一种基于重力和细胞驱动力的新方法,用于微流控芯片系统中的流式细胞术和荧光激活细胞分选。在实验中,细胞在自身重力作用下自发地流过直立的微芯片,经过检测区域,然后以0.55 mm s〜(-1)的平均速度逐一进入分选电场,并通过关断激活程序对其进行荧光激活细胞分选(FACS)。建立并优化了基于牛顿运动定律的物理和数值模块,并利用羟丙基甲基甲基纤维素(HPMC)最大限度地减少了细胞的组装,沉淀和对微通道的吸附。紫外线(HeLa cell)暴露10,20或40 min对紫外线(HeLa cell)的凋亡和凋亡效应表明紫外线辐射引起的膜损伤促进了HeLa细胞的凋亡和坏死。

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