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首页> 外文期刊>Biophysical Journal >A generalization of theory for two-dimensional fluorescence recovery after photobleaching applicable to confocal laser scanning microscopes.
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A generalization of theory for two-dimensional fluorescence recovery after photobleaching applicable to confocal laser scanning microscopes.

机译:适用于共聚焦激光扫描显微镜的光漂白后二维荧光恢复理论的一般化。

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摘要

Fluorescence recovery after photobleaching (FRAP) using confocal laser scanning microscopes (confocal FRAP) has become a valuable technique for studying the diffusion of biomolecules in cells. However, two-dimensional confocal FRAP sometimes yields results that vary with experimental setups, such as different bleaching protocols and bleaching spot sizes. In addition, when confocal FRAP is used to measure diffusion coefficients (D) for fast diffusing molecules, it often yields D-values that are one or two orders-of-magnitude smaller than that predicted theoretically or measured by alternative methods such as fluorescence correlation spectroscopy. Recently, it was demonstrated that this underestimation of D can be corrected by taking diffusion during photobleaching into consideration. However, there is currently no consensus on confocal FRAP theory, and no efforts have been made to unify theories on conventional and confocal FRAP. To this end, we generalized conventional FRAP theory to incorporate diffusion during photobleaching so that analysis by conventional FRAP theory for a circular region of interest is easily applicable to confocal FRAP. Finally, we demonstrate the accuracy of these new (to our knowledge) formulae by measuring D for soluble enhanced green fluorescent protein in aqueous glycerol solution and in the cytoplasm and nucleus of COS7 cells.
机译:使用共聚焦激光扫描显微镜(共焦FRAP)进行光漂白后的荧光恢复(FRAP)已成为研究细胞中生物分子扩散的重要技术。但是,二维共焦FRAP有时会产生随实验设置(例如不同的漂白方案和漂白点大小)而变化的结果。此外,当使用共焦FRAP测量快速扩散分子的扩散系数(D)时,其D值通常比理论上预测的值或通过其他方法(例如荧光相关性)测得的值小一两个数量级。光谱学。最近,证明了可以通过考虑光漂白期间的扩散来校正D的这种低估。但是,目前对共焦FRAP理论尚未达成共识,也没有为统一常规和共焦FRAP理论进行任何努力。为此,我们对常规FRAP理论进行了概括,以纳入光漂白过程中的扩散,因此通过常规FRAP理论对感兴趣的圆形区域进行分析很容易应用于共焦FRAP。最后,我们通过测量甘油水溶液中以及COS7细胞的细胞质和细胞核中可溶性增强的绿色荧光蛋白的D来证明这些新(据我们所知)公式的准确性。

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