首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >A facile light-emitting-diode induced fluorescence detector coupled to an integrated microfluidic device for microchip electrophoresis
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A facile light-emitting-diode induced fluorescence detector coupled to an integrated microfluidic device for microchip electrophoresis

机译:一种方便的发光二极管诱导的荧光检测器,与集成的微流控装置耦合,用于微芯片电泳

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摘要

In this paper, a compact and inexpensive light emitting diode induced fluorescence (LED-IF) detector with simplified optical configuration was developed and assembled in an integrated microfluidic device for microscale electrophoresis. The facile detector mainly consisted of an LED, a focusing pinhole, an emission filter and a photodiode, and was encapsulated in the upper layer of an aluminum alloy device with two layers. At the bottom layer, integrated circuit (IC) was assembled to manipulate the voltage for sample injection and separation, LED emission and signal amplifying. A high-power LED with fan-shaped heat sink was used as excitation source. The excitation light was focused by a 1.1 mm diameter pinhole fabricated in a thin piece of silver foil, and the obtained sensitivity was about 3 times as high as that using electrode plate. Other important parameters including LED driven current, fluorescence collection angle and detection distance have also been investigated. Under optimal conditions, considerable high-response of 0.09 fmol and 0.18 fmol mass detection limits at 0.37 nL injection volume for sodium fluorescein (SF) and FITC was achieved, respectively. This device has been successfully employed to separate penicillamine (PA) enantiomers. Due to such significant features as low-cost, integration, miniaturization, and ease of commercialization, the presented microfluidic device may hold great promise for clinical diagnostics and bioanalytical applications.
机译:在本文中,开发了一种紧凑且便宜的具有简化的光学结构的发光二极管感应荧光(LED-IF)检测器,并将其组装在用于微尺度电泳的集成微流控设备中。方便的探测器主要由LED,聚焦针孔,发射滤光片和光电二极管组成,并封装在两层铝合金装置的上层中。在底层,组装了集成电路(IC),以控制用于样品注入和分离,LED发射和信号放大的电压。具有扇形散热器的大功率LED被用作激励源。激发光通过在银箔薄片中制造的直径为1.1 mm的针孔聚焦,并且所获得的灵敏度约为使用电极板的灵敏度的3倍。还研究了其他重要参数,包括LED驱动电流,荧光收集角度和检测距离。在最佳条件下,荧光素钠(SF)和FITC分别在0.37 nL进样量下获得了0.09 fmol和0.18 fmol质量检测极限的相当高的响应。该装置已成功用于分离青霉素(PA)对映体。由于诸如低成本,集成,小型化和易于商业化的显着特征,所提出的微流体装置对于临床诊断和生物分析应用可能具有广阔的前景。

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