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High-throughput micro capillary electrophoresis chip for bio-analytical application utilizing multi-wavelength detection

机译:高通量微毛细管电泳芯片,用于多波长检测的生物分析应用

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This paper presents a novel microfluidic device for high-throughput capillary electrophoresis (CE) analysis utilizing multi-wavelength detection. In general, fluorescent dye can only be excited using a specific range of wavelength and then it will emit specific fluorescence signal with a longer wavelength. In this study, pairs of multi-mode optic fiber are embedded at the downstream of the separation channel of the CE chips for multiple-wavelength fluorescence detection. The proposed device could detect multiple samples with different kinds of fluorescence labeling in the same channel in a single run. Experimental results show that a mixture of Rhodamine B and FITC fluorescein can be detected individually while using different kinds of light source for fluorescence excitation. Sample moving speed in the microchannel and DNA fragments are also measured and detected using the proposed device.
机译:本文提出了一种利用多波长检测技术进行高通量毛细管电泳(CE)分析的新型微流控设备。通常,荧光染料只能在特定波长范围内激发,然后会发出更长波长的特定荧光信号。在这项研究中,成对的多模光纤嵌入在CE​​芯片分离通道的下游,用于多波长荧光检测。所提出的设备可以在一次运行中检测在同一通道中具有不同种类荧光标记的多个样品。实验结果表明,若使用不同种类的光源进行荧光激发,则可以分别检测若丹明B和FITC荧光素的混合物。使用建议的设备还可以测量和检测样品在微通道和DNA片段中的移动速度。

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