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A compactly integrated laser-induced fluorescence detector for microchip electrophoresis

机译:紧凑集成的激光诱导荧光检测器,用于微芯片电泳

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摘要

A simple and easy-to-use integrated laser-induced fluorescence detector for microchip electrophoresis was constructed and evaluated. The fluid channels and optical fiber channels in the glass microchip were fabricated using standard photolithographic techniques and wet chemical etching. A 473 nm diode-pumped laser was used as the excitation source, and the collimation and collection optics and mirrors were discarded by using a multimode optical fiber to couple the excitation light straight into the microchannel and placing the microchip directly on the top of the photomultiplier tube. A combination of filter systems was incorporated into a poly(dimethylsiloxane) layer, which was reversibly sealed to the bottom of the microchip to eliminate the scattering excitation light reaching to the photomultiplier tube. Fluorescein/calcein samples were taken as model analytes to evaluate the performance with respect to design factors. The detection limits were 0.05 mum for fluorescein and 0.18 mum for calcein, respectively. The suitability of this simple detector for fluorescence detection was demonstrated by baseline separation of fluorescein isothiocyanate (FITC)-labeled arginine, phenylalanine, and glycine and FITC within 30 s at separation length of 3.8 cm and electrical field strength of 600 V/cm.
机译:构造并评估了一种简单易用的集成激光诱导荧光检测器,用于微芯片电泳。玻璃微芯片中的流体通道和光纤通道是使用标准的光刻技术和湿法化学蚀刻制成的。使用473 nm二极管泵浦激光器作为激发源,并通过使用多模光纤将激发光直接耦合到微通道中并将微芯片直接放在光电倍增管的顶部来丢弃准直和收集光学器件和反射镜。管。将过滤器系统的组合合并到聚二甲基硅氧烷层中,该层可逆地密封在微芯片的底部,以消除到达光电倍增管的散射激发光。将荧光素/钙黄绿素样品用作模型分析物,以评估相对于设计因素的性能。荧光素的检出限分别为0.05 mum和钙黄绿素的检出限为0.18 mum。通过在3.8 cm的分离长度和600 V / cm的电场强度下于30 s内对异硫氰酸荧光素(FITC)标记的精氨酸,苯丙氨酸和甘氨酸和FITC进行基线分离,证明了这种简单的检测器适用于荧光检测。

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