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Optimization of Native Fluorescence Detection of Proteins Using a Pulsed Nanolaser Excitation Source

机译:使用脉冲纳米激光激发源优化蛋白质的天然荧光检测

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摘要

We present a mathematical description of the signal-to-noise ratio (S/N) in a fluorescence-based protein detector for capillary electrophoresis that uses a pulsed ultraviolet (UV) laser at 266 nm as an excitation source. The model accounts for photobleaching, detector volume, laser repetition rate, and analyte flow rate. We have experimentally characterized such a system, and we present a comparison of the experimental data with the predictions of the model. Using the model, the system was optimized for test analytes tryptophan, tyrosine, bovine serum albumin (BSA), and conalbumin, producing detection limits (3sigma) of 0.67 nM, 5.7 nM, 0.9 nM, and 1.5 nM, respectively. Based on the photobleaching data, a photo-bleaching cross-section of 1.4 X 10~(-18) cm~(2) at 266 nm was calculated for tryptophan.
机译:我们提出了一种基于荧光的毛细管电泳蛋白质检测器中信噪比(S / N)的数学描述,该检测器使用266 nm的脉冲紫外(UV)激光作为激发源。该模型考虑了光漂白,检测器体积,激光重复率和分析物流速。我们已经实验性地描述了这样一个系统,并提出了实验数据与模型预测的比较。使用该模型,该系统针对测试分析物色氨酸,酪氨酸,牛血清白蛋白(BSA)和伴清蛋白进行了优化,检测限(3sigma)分别为0.67 nM,5.7 nM,0.9 nM和1.5 nM。根据光漂白数据,色氨酸在266 nm处的光漂白截面为1.4 X 10〜(-18)cm〜(2)。

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