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FRET-FLIM Microscopy

机译:FRET-FLIM显微镜

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摘要

Visualizing and quantifying protein-protein interactions is a recent trend in biomedical imaging. The current advances in fluorescence microscopy coupled with the development of new fluorescent probes provide the tools to study protein interactions in living specimens. Spectral bleed-through or cross talk is a problem in one- and two-photon microscopy to recognize whether one is observing the sensitized emission or the bleed-through signals. In contrast, FLIM (fluorescence lifetime imaging microscopy) or lifetime measurements are independent to excitation intensity or fluorophore concentration. The combination of FLIM and FRET will provide high spatial (nanometer) and temporal (nanoseconds) resolution when compared to steady state FRET imaging. Importantly, spectral bleed-through is not an issue in FLIM imaging because only the donor that permit energy transfer will influence the fluorescence lifetime of the donor. By measuring the donor lifetime in the presence and the absence of acceptor one can accurately calculate the FRET efficiency and the distance between donor- and acceptor- labeled proteins. Moreover, the FRET-FLIM technique allows monitoring more than one pair of protein interactions in a single living cell.
机译:可视化和定量蛋白质 - 蛋白质相互作用是近期生物医学成像的趋势。荧光显微镜的目前进展与新型荧光探针的开发相结合,提供了研究活页样中蛋白质相互作用的工具。光谱渗透或串扰是一种和双光子显微镜中的问题,以识别一个人是否是观察敏化发射或渗透信号。相反,Flim(荧光寿命显微镜)或寿命测量与激发强度或荧光团浓度无关。与稳态FRET成像相比,FLIM和FRET的组合将提供高空间(纳米)和时间(纳秒)分辨率。重要的是,光谱渗透不是在FLIM成像中的问题,因为只有允许能量转移的供体会影响供体的荧光寿命。通过测量存在的供体寿命和缺乏受体,可以准确地计算任何备注效率和供体和受体标记的蛋白质之间的距离。此外,FRET-FLIM技术允许在单个活细胞中监测多于一对蛋白质相互作用。

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