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Improved Current-Monitoring Method for Low Electroosmotic Flow Measurement in Modified Microchip

机译:改进的微芯片低电渗流量测量电流监测方法

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摘要

Current-monitoring method is a widely used approach to measure electroosmotic flow (EOF) in microchip, but low and zero EOF is difficult to be measured. In this report, the mechanism of current-monitoring method was explained with Kohlraush regulation function principle, and an improved current-monitoring method was developed for low EOF measurement with tilting microchip. Fluid flow in the channel was accelerated with the help of hydrostatic pressure generated by tilting microchip, the time of dilute solution displacing the concentrated one in channel was shortened. EOF could be calculated according to the time difference between twice experiments under two different applied voltages by tilting microchip. Low even zero EOF could be measured by this improved current-monitoring method. Three modified microchips were characterized to verify the method. EOF in microchannels modified with poly(vinyl alcohol), bovine serum albumin and myoglobin were 0.27 ± 0.05, 0.16 ± 0.05 and −0.45 ± 0.04 × 10−4 cm2 V−1 s−1, respectively. Keywords Microchip capillary electrophoresis - Low electroosmotic flow measurement - Tilting microchip - Hydrostatic pressure
机译:电流监控方法是测量微芯片中电渗流(EOF)的一种广泛使用的方法,但是难以测量低EOF和零EOF。在这篇报告中,用Kohlraush调节函数原理解释了电流监测方法的原理,并开发了一种改进的电流监测方法用于倾斜微芯片的低EOF测量。借助于倾斜微芯片产生的静水压力加速了通道中的流体流动,缩短了稀释溶液将浓缩的溶液置换到通道中的时间。可以通过倾斜微芯片,根据两次施加不同电压下两次实验之间的时间差来计算EOF。通过这种改进的电流监控方法,甚至可以测量甚至低的零EOF。对三个改进的微芯片进行了表征,以验证该方法。聚乙烯醇,牛血清白蛋白和肌红蛋白修饰的微通道的EOF分别为0.27±0.05、0.16±0.05和-0.45±0.04×10 -4 cm 2 V -1 s -1 。关键词微芯片毛细管电泳-低电渗流量测量-倾斜微芯片-静水压力

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