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Line laser beam based laser-induced fluorescence detection system for microfluidic chip electrophoresis analysis

机译:基于线激光束的激光诱导荧光检测系统,用于微流控芯片电泳分析

摘要

In this work, a new laser-induced fluorescence (LIF) detection system based on a line laser beam for microfluidic chip electrophoresis analysis was developed. This detection system had the advantages of simple optical structure, compactness, and ease in constructing. Highly sensitive detection was realized by detecting the fluorescence light emitted in the micro-channel through the vertical intersection between the line laser source and micro-channel. The filtered line source was established by a bevel laser beam and a micro-gap which could facilitate the alignment of line laser beam with the microfluidic channel. Both the theoretical analysis and experimental study demonstrated that the detection system with a 0.07 mm-width micro-gap had enough sensitivity and adequate separation efficiency. By this system, a detection limit (S/N 12) of 1.284 × 10-10 M fluorescein isothiocyanate was obtained, and the plate number could reach to 6100, which were comparable to those of optimized confocal or orthogonal LIF systems for microchip based capillary electrophoresis. The reproductibility of the detection system was evaluated by Sybr Green labeled DNA markers contained five fragments. Finally, the multi-PCR products including 165 bp, 266 bp, 378 bp and 881 bp fragments could be successfully achieved for baseline separation by this system within 4 min. The work undertaken can gear toward a semi-automated handheld system with substantial time and cost saving.
机译:在这项工作中,开发了一种基于线激光束的微流控芯片电泳分析的新型激光诱导荧光(LIF)检测系统。该检测系统具有光学结构简单,紧凑,易于构造的优点。通过检测在线激光源和微通道之间的垂直交叉点在微通道中发出的荧光,可以实现高度灵敏的检测。通过斜角激光束和微间隙建立滤波后的线源,这可以促进线激光束与微流体通道的对准。理论分析和实验研究均表明,具有0.07 mm宽度的微间隙的检测系统具有足够的灵敏度和足够的分离效率。通过该系统,检出限(S / N> 12)为1.284×10-10 M异硫氰酸荧光素,板数可以达到6100,与针对基于微芯片的优化共聚焦或正交LIF系统可比毛细管电泳。通过包含五个片段的Sybr Green标记的DNA标记评估了检测系统的可重复性。最后,通过该系统,可以在4分钟内成功实现包括165 bp,266 bp,378 bp和881 bp片段的多PCR产物的基线分离。所进行的工作可以适应半自动手持系统,并节省大量时间和成本。

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