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Fluorescence Correlation Spectroscopy for Rapid Multicomponent Analysis in a Capillary Electrophoresis System

机译:荧光相关光谱法在毛细管电泳系统中进行快速多组分分析

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We describe a new technique for performing multicomponent analysis using a combination of capillary electrophoresis (CE) and fluorescence correlation spectroscopy (FCS), which we refer to as CE/FCS. FCS is a highly sensitive and rapid optical technique that is often used to perform multicomponent analysis in static solutions based on the different diffusion limes of the analyte species through the detection region of a tightly focused laser beam. In CE/FCS, transit times are measured for a mixture of analytes continuously flowing through a microcapillary in the presence of an electric field. Application of an electric field between the inlet and outlet of the capillary alters the transit times, depending on the magnitude and polarity of the applied field and the electrophoretic mobilities of the analytes. Multicomponent analysis is accomplished without the need to perform a chemical separation, due to the different electrophoretic mobilities of the analytes. This technique is particularly applicable to ultradilute solutions of analyte. We have used CE/FCS to analyze subnanomolar aqueous solutions containing mixtures of Rhodamine 6G (R6G) and R6G-labeled deoxycytosine triphosphate nucleotides. Under these conditions, fewer than two molecules were typically present in the detection region at a time. The relative concentrations of the analytes were determined with uncertainties of ~10%. Like diffusional FCS, this technique is highly sensitive and rapid. Concentration detection limits are below 10↑(-11) M, and analysis times are tens of seconds or less. However, CE/FCS does not require the diffusion coefficients of the analytes to be significantly different and can, therefore, be applied to multicomponent analysis of systems that would be difficult or impossible to study by diffusional FCS.
机译:我们描述了一种使用毛细管电泳(CE)和荧光相关光谱(FCS)组合进行多组分分析的新技术,我们将其称为CE / FCS。 FCS是一种高度灵敏且快速的光学技术,通常用于在静态溶液中执行多种成分分析,该方法基于分析物物种通过紧密聚焦的激光束的检测区域而产生的不同扩散石灰。在CE / FCS中,在存在电场的情况下,测量连续流过微毛细管的分析物混合物的传输时间。在毛细管的入口和出口之间施加电场会改变传输时间,具体取决于施加电场的大小和极性以及分析物的电泳迁移率。由于分析物的电泳迁移率不同,因此无需进行化学分离即可完成多组分分析。该技术特别适用于分析物的超稀溶液。我们已使用CE / FCS分析亚纳摩尔水溶液,其中包含若丹明6G(R6G)和R6G标记的脱氧胞嘧啶三磷酸核苷酸的混合物。在这些条件下,一次检测区域中通常少于两个分子。确定的分析物相对浓度约为10%。像扩散FCS一样,此技术非常灵敏且快速。浓度检测极限低于10↑(-11)M,分析时间为数十秒或更短。但是,CE / FCS不需要分析物的扩散系数有显着差异,因此可以应用于很难通过扩散FCS研究的系统的多组分分析。

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