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Laser-Induced Fluorescence Detection System for Microfluidic Chips Based on an Orthogonal Optical Arrangement

机译:基于正交光学装置的微流控芯片激光诱导荧光检测系统

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摘要

In this work, a simple LIF detection system based on an orthogonal optical arrangement for microfluidic chips was developed. Highly sensitive detection was achieved by detecting the fluorescence light emitted in the microchannel through the sidewall of the chip to reduce scattered light interference from the laser source. A special crossed-channel configuration, with a 1.5-mm distance from the separation channel to the sidewall of the glass chip, was designed in order to facilitate collection of emitted fluorescence light through the sidewall. The significant difference in intensity distribution of scattered laser light on the chip plane observed in this study was fully exploited to optimize S/N ratio of detected signals by rejection of scattered light, both through systematic measurements and employing ray-tracing simulation. A fluorescence collection angle of 45 deg in the chip plane gave the best result, with a scattered light intensity 1/38 of that obtained at an angle of 90 deg. Sodium fluorescein and fluorescein isothiocyanate-labeled amino acids were used as model samples to demonstrate the performance of the LIF system. A detection limit (S/N velence 3) of 1.1 pM fluorescein was obtained, which is comparable to that of optimized confocal LIF systems for chip-based capillary electrophoresis. Apart from the high detection power, the system also has the advantages of simple optical structure, compactness, and ease in building.
机译:在这项工作中,开发了一种基于正交光学装置的微流控芯片简单的LIF检测系统。通过检测微通道中通过芯片侧壁发出的荧光以减少来自激光源的散射光干扰,可以实现高度灵敏的检测。设计了一种特殊的交叉通道配置,从分离通道到玻璃芯片的侧壁有1.5毫米的距离,以便于收集通过侧壁收集的荧光。在这项研究中观察到的在芯片平面上散射激光强度分布的显着差异,可以通过系统测量和光线追踪模拟来充分利用,通过散射光的抑制来优化检测信号的信噪比。芯片平面中45度的荧光收集角给出了最好的结果,其散射光强度是90度时获得的散射光强度的1/38。荧光素钠和荧光素异硫氰酸酯标记的氨基酸被用作模型样品,以证明LIF系统的性能。获得了1.1 pM荧光素的检测限(信噪比3),与基于芯片的毛细管电泳的优化共聚焦LIF系统的检测限相当。除了具有较高的检测能力外,该系统还具有光学结构简单,紧凑且易于构建的优点。

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