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High-speed free-flow electrophoresis on chip

机译:芯片上高速自由流动电泳

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A microfluidic device has been developed for continuous separation in free-flow electrophoresis (FFE) mode. A mixture of two fluorescent reagents is separated into two component streams in 75 ms using a sample flow rate of 2 nL/s. The residence time of sample in the whole separation compartment is 2 s. The separation bed volume is 0.2 muL. The chip has also been used for free-flow electrophoresis of fluorescein-5-isothiocyanate-labeled amino acids in both aqueous and binary media. The short residence time and small sample flow rate make the FFE chip feasible for on-line monitoring on production fines and other chemical or biochemical processes. The in-house-made chip was composed of a plain glass substrate of 1.5-mm thickness and a PDMS layer of 0.3-mm, thickness with micromachined channels. The channel design presented in this paper is versatile. With the same kind of PDMS substrates, chips for various purposes can be made depending on the locations of the reservoirs, which are cut out on the PDMS substrate. The results presented verify the scaling laws and allow prediction of FFE performances comparable to what is now state of the art on capillary electrophoresis chips. [References: 20]
机译:已经开发出一种微流体装置,用于在自由流动电泳(FFE)模式下进行连续分离。使用2 nL / s的样品流速,在75毫秒内将两种荧光试剂的混合物分离为两个组分流。样品在整个分离室中的停留时间为2 s。分离床体积为0.2μL。该芯片还已用于在水性介质和二元介质中对5号异硫氰酸荧光素标记的氨基酸进行自由流动电泳。短的停留时间和小的样品流速使FFE芯片可用于在线监测生产罚款和其他化学或生化过程。内部制造的芯片由1.5毫米厚的普通玻璃基板和0.3毫米厚的PDMS层组成,并带有微加工通道。本文介绍的通道设计是通用的。使用相同种类的PDMS基板,可以根据在PDMS基板上切出的储液器的位置制作用于各种目的的切屑。呈现的结果验证了定标律,并允许对FFE性能的预测与毛细管电泳芯片上的最新技术相当。 [参考:20]

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