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Label-free analysis in chip electrophoresis applying deep UV fluorescence lifetime detection

机译:应用深紫外荧光寿命检测的芯片电泳中无标记分析

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Herein we introduce deep UV fluorescence lifetime detection in microfluidics applied for label-free detection and identification of various aromatic analytes in chip electrophoresis. For this purpose, a frequency quadrupled Nd:YAG (neodymium-doped yttrium aluminum garnet) picosecond laser at 266 nm was incorporated into an inverse fluorescence microscope setup with time-correlated single photon counting detection. This allowed recording of photon timing with sub-nanosecond precision. Thereby fluorescence decay curves are gathered on-the-fly and average lifetimes can be determined for each substance in the electropherogram. The aromatic compounds serotonin, propranolol, 3-phenoxy-1,2-propanediol and tryptophan were electrophoretically separated using a fused-silica microchip. Average lifetimes were independently determined for each compound via bi-exponential tail fitting. Time-correlated single photon counting also allows the discrimination of background fluorescence in the time domain. This results in improved signal-to-noise-ratios as demonstrated for the above model analytes. Microchip electrophoretic separations with fluorescence lifetime detection were also performed with a protein mixture containing lysozyme, trypsinogen and chymotrypsinogen emphasizing the potential for biopolymer analysis.
机译:在本文中,我们介绍了微流控技术中的深紫外荧光寿命检测,该检测技术可用于无标记检测和芯片电泳中各种芳香族分析物的无标记检测。为此,将频率为266 anm的四倍频Nd:YAG(掺钕钇铝石榴石)皮秒激光结合到具有时间相关单光子计数检测功能的逆荧光显微镜装置中。这允许以亚纳秒精度记录光子定时。从而可以实时收集荧光衰减曲线,并可以确定电泳图中每种物质的平均寿命。使用熔融二氧化硅微芯片电泳分离芳香族化合物5-羟色胺,普萘洛尔,3-苯氧基-1,2-丙二醇和色氨酸。通过双指数尾部拟合分别确定每种化合物的平均寿命。与时间相关的单光子计数还可以在时域中区分背景荧光。如以上模型分析物所证明的,这导致改善的信噪比。还使用含有溶菌酶,胰蛋白酶原和胰凝乳蛋白酶原的蛋白混合物进行了具有荧光寿命检测的微芯片电泳分离,强调了生物聚合物分析的潜力。

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