首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Measuring Surface Binding Thermodynamics and Kinetics by Using Total Internal Reflection with Fluorescence Correlation Spectroscopy: Practical Considerations
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Measuring Surface Binding Thermodynamics and Kinetics by Using Total Internal Reflection with Fluorescence Correlation Spectroscopy: Practical Considerations

机译:通过使用全内反射和荧光相关光谱法测量表面结合热力学和动力学:实际考虑

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摘要

The combination of total internal reflection illumination and fluorescence correlation spectroscopy (TIR-FCS) is an emerging method useful for, among a number of things, measuring the thermodynamic and kinetic parameters describing the reversible association of fluorescently labeled ligands in solution with immobilized, nonfluorescent surface binding sites. However, there are many parameters (both instrumental and intrinsic to the interaction of interest) that determine the nature of the acquired fluorescence fluctuation autocorrelation functions. In this work, we define criteria necessary for successful measurements and then systematically explore the parameter space to define conditions that meet the criteria. The work is intended to serve as a guide for experimental design, in other words, to provide a methodology to identify experimental conditions that will yield reliable values of the thermodynamic and kinetic parameters for a given interaction.
机译:全内反射照明和荧光相关光谱法(TIR-FCS)的结合是一种新兴方法,可用于测量热力学和动力学参数,这些参数描述了溶液中固定有荧光表面的荧光标记配体的可逆结合结合位点。但是,有许多参数(感兴趣的相互作用的仪器参数和内在参数)决定了所获取的荧光波动自相关函数的性质。在这项工作中,我们定义了成功进行测量所必需的标准,然后系统地探索参数空间以定义满足条件的条件。这项工作旨在作为实验设计的指南,换句话说,是提供一种方法来识别实验条件,该条件将为给定的相互作用产生可靠的热力学和动力学参数值。

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