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Fluorescence correlation spectroscopy for ultrasensitive DNA analysis in continuous flow capillary electrophoresis.

机译:荧光相关光谱用于连续流毛细管电泳中超灵敏的DNA分析。

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Continuous flow capillary electrophoresis (CFCE) is non-separations based analytical technique based on the free solution electrophoretic mobility of biological molecules such as DNA, RNA, peptides, and proteins. The electrophoretic mobilities and translational diffusion constants of the analyte molecules are determined using single molecule detection methods, including fluorescence correlation spectroscopy (FCS). CFCE is used to resolve multiple components in a mixture of analytes, measure electrophoretic mobility shifts due to binding interactions, and study the hydrodynamic and electrostatic properties of biological molecules in solution. Often this information is obtained with greater speed and sensitivity than conventational separations-based capillary-zone electrophoresis. This paper will focus on the application of two-beam fluorescence cross-correlation spectroscopy as a versatile detection method for CFCE and explore several applications to the study of the solution properties of single-stranded DNA.
机译:连续流毛细管电泳(CFCE)是一种基于非分离的分析技术,基于生物分子(如DNA,RNA,肽和蛋白质)的自由溶液电泳迁移率。使用单分子检测方法(包括荧光相关光谱法(FCS))确定分析物分子的电泳迁移率和翻译扩散常数。 CFCE用于解析分析物混合物中的多种成分,测量由于结合相互作用而引起的电泳迁移率变化,并研究溶液中生物分子的流体动力学和静电特性。通常,与基于常规分离的毛细管区带电泳相比,以更快的速度和更高的灵敏度获得此信息。本文将着重介绍两束荧光互相关光谱技术作为CFCE通用检测方法的应用,并探讨几种在研究单链DNA溶液性质方面的应用。

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