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Simple Device for Multiplexed Electrophoretic Separations Using Gradient Elution Moving Boundary Electrophoresis with Channel Current Detection

机译:使用通道电流检测的梯度洗脱移动边界电泳进行电泳分离的简单装置

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摘要

A new microfluidic electrophoresis device and technique is described that is designed specifically for multiplexed, high-throughput separations. The device consists of an array of short (3 mm) capillaries connecting individual sample reservoirs to a common buffer reservoir. Each capillary in the array functions as both a separation channel and as a conductivity-based detection cell. The new technique is based upon the recently described gradient elution moving boundary electrophoresis (GEM-BE) technique, which uses a combination of an electric field and buffer counterflow to achieve electrophoretic separations in short capillaries or microfluidic channels. A high voltage drives electrophoresis of the sample analytes through each separation channel. At the start of a separation, the bulk counterflow of buffer through the channel is high, and none of the analytes of interest can enter the channel. The counterflow is then gradually reduced until each analyte, in turn, is able to enter the channel where it is detected as a moving boundary or step. With very short capillaries, only one step at a time is present in each capillary, and the electric current through the channels can then be used as the detector signal, without any extra detector hardware. The current vs time signal for each channel is then smoothed and differentiated to produce a set of simultaneous electropherograms. Because there is no light source or other added hardware required for detection, the system is simple and can be easily and inexpensively scaled up to perform large numbers of simultaneous analyses. As a first demonstration, a 16-channel array device is used for high-throughput, time-series measurements of enzyme activity and inhibition.
机译:描述了一种新的微流控电泳设备和技术,该设备和技术专为多重,高通量分离而设计​​。该设备由一系列短(3 mm)毛细管组成,这些毛细管将各个样品池连接到一个公共缓冲池。阵列中的每个毛细管都充当分离通道和基于电导率的检测池。新技术基于最近描述的梯度洗脱移动边界电泳(GEM-BE)技术,该技术使用电场和缓冲液逆流的组合在短毛细管或微流体通道中实现电泳分离。高压驱动样品分析物通过每个分离通道的电泳。在分离开始时,缓冲液通过通道的大部分逆流很高,并且所有感兴趣的分析物都无法进入通道。然后逐渐减少逆流,直到每种分析物依次进入通道,在通道中将其检测为运动边界或台阶。对于非常短的毛细管,每个毛细管中一次只能执行一个步骤,然后可以将通过通道的电流用作检测器信号,而无需任何额外的检测器硬件。然后将每个通道的电流与时间信号进行平滑和微分,以生成一组同时的电泳图。由于不需要检测光源或其他附加硬件,因此该系统非常简单,可以轻松,廉价地按比例放大以执行大量同时分析。作为第一个演示,一个16通道阵列设备用于酶活性和抑制作用的高通量,时间序列测量。

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