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A New FRAP/FRAPa Method for Three-Dimensional Diffusion Measurements Based on Multiphoton Excitation Microscopy

机译:基于多光子激发显微镜的三维扩散测量的FRAP / FRAPa新方法

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摘要

We present a new convenient method for quantitative three-dimensionally resolved diffusion measurements based on the photobleaching (FRAP) or photoactivation (FRAPa) of a disk-shaped area by the scanning laser beam of a multiphoton microscope. Contrary to previously reported spot-photobleaching protocols, this method has the advantage of full scalability of the size of the photobleached area and thus the range of diffusion coefficients, which can be measured conveniently. The method is compatible with low as well as high numerical aperture objective lenses, allowing us to perform quantitative diffusion measurements in three-dimensional extended samples as well as in very small volumes, such as cell nuclei. Furthermore, by photobleaching/photoactivating a large area, diffusion along the optical axis can be measured separately, which is convenient when studying anisotropic diffusion. First, we show the rigorous mathematical derivation of the model, leading to a closed-form formula describing the fluorescence recovery/redistribution phase. Next, the ability of the multiphoton FRAP method to correctly measure absolute diffusion coefficients is tested thoroughly on many test solutions of FITC-dextrans covering a wide range of diffusion coefficients. The same is done for the FRAPa method on a series of photoactivatable green fluorescent protein solutions with different viscosities. Finally, we apply the method to photoactivatable green fluorescent protein diffusing freely in the nucleus of living NIH-3T3 mouse embryo fibroblasts.
机译:我们提出了一种新的方便的方法,用于通过多光子显微镜的扫描激光束对盘状区域进行光漂白(FRAP)或光活化(FRAPa)进行定量的三维分辨扩散测量。与先前报道的点光漂白协议相反,此方法的优点是光漂白区域的大小具有完全可扩展性,因此可以方便地测量扩散系数的范围。该方法与低数值孔径物镜和高数值孔径物镜兼容,从而使我们能够在三维扩展样品以及非常小的体积(如细胞核)中进行定量扩散测量。此外,通过大面积的光漂白/光活化,可以分别测量沿光轴的扩散,这在研究各向异性扩散时很方便。首先,我们显示了模型的严格数学推导,从而得出了描述荧光恢复/再分布阶段的封闭式公式。接下来,在涵盖广泛扩散系数的FITC-dextrans的许多测试溶液中,全面测试了多光子FRAP方法正确测量绝对扩散系数的能力。对于FRAPa方法,对一系列具有不同粘度的可光激活的绿色荧光蛋白溶液也进行了相同的操作。最后,我们将该方法应用于可光活化的绿色荧光蛋白,在生活的NIH-3T3小鼠胚胎成纤维细胞的核中自由扩散。

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