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Fluorescence Correlation Analysis for Diagnosis Based on Molecular Dynamics

机译:基于分子动力学的荧光相关性诊断分析

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Fluorescence correlation spectroscopy is a powerful method in clinical laboratory where a lot of samples of patients will be determined because it enables to measure concentration and molecular weight of tested molecules without any physical separation steps. Nevertheless it may not yet be used as widely as one expected. The reason is that it is likely to be difficult for many users to understand the theoretical background. In this method, the users measured intensity fluctuation of fluorescence resulted from the molecules entering and exiting tiny volume element, namely Brownian motion in solution. Using the time series data of fluorescence intensity, the autocorrelation function was calculated. When the function was fit to the analytical model derived from diffusion theory, concentration and molecular weight of fluorophores were obtained. This minireview described the theoretical background of Brownian motion, physical meaning of the correlation analysis, and its usage properly dependent on samples from homogeneous solution to inhomogeneous cell. Furthermore the recent advances are also outlined.
机译:荧光相关光谱法是临床实验室中一种强大的方法,可以确定许多患者样品,因为它无需任何物理分离步骤即可测量被测分子的浓度和分子量。但是,它可能尚未像预期的那样广泛使用。原因是许多用户可能难以理解理论背景。在这种方法中,用户测量了由于分子进入和离开微小体积元素而引起的荧光强度波动,即溶液中的布朗运动。使用荧光强度的时间序列数据,计算自相关函数。当该函数适合从扩散理论推导的分析模型时,获得了荧光团的浓度和分子量。这篇简短的评论描述了布朗运动的理论背景,相关分析的物理意义,以及其用法正确取决于从均匀溶液到不均匀细胞的样品。此外,还概述了最近的进展。

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