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在微芯片设备上对单个发色团分子进行计数以实现超灵敏分析和分离。

Counting single chromophore molecules for ultrasensitive analysis and separations on microchip devices.

作者信息

Fister J C, Jacobson S C, Davis L M, Ramsey J M

机构信息

Oak Ridge National Laboratory, P.O. Box 2008, Oak Ridge, Tennessee 37831-6142.

出版信息

Anal Chem. 1998 Feb 1;70(3):431-7. doi: 10.1021/ac9707242.

Abstract

Separations of 15 pM rhodamine 6G and 30 pM rhodamine B performed in a micromachined electrophoresis channel were detected by counting fluorescence bursts from individual molecules. The migration times, peak widths, and analyte concentrations were estimated from the number and the migration time distribution of the detected molecules. Concentration detection limits estimated at >99% confidence were 1.7 pM rhodamine 6G and 8.5 pM rhodamine B. The separations required <35 s and the relative migration time uncertainties were less than 2.0%. These are the lowest detection limits reported for microchip separation devices and the first example of single-chromophore molecular counting for detection of chemical separations.

摘要

在微机械加工的电泳通道中对15皮摩尔的罗丹明6G和30皮摩尔的罗丹明B进行分离,通过对单个分子的荧光猝发进行计数来检测。根据检测到的分子数量和迁移时间分布估算迁移时间、峰宽和分析物浓度。在置信度>99%时估算的浓度检测限为1.7皮摩尔的罗丹明6G和8.5皮摩尔的罗丹明B。分离所需时间<35秒,相对迁移时间不确定度小于2.0%。这些是微芯片分离装置所报道的最低检测限,也是用于化学分离检测的单发色团分子计数的首个实例。

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