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使用改进的相图法处理荧光寿命图像:来自受体的同型 FRET。

Processing of fluorescence lifetime image using modified phasor approach: homo-FRET from the acceptor.

机构信息

Faculty of Automation, Guangdong University of Technology, Guangzhou, Guangdong, 510006, People's Republic of China.

出版信息

J Fluoresc. 2013 Jul;23(4):725-32. doi: 10.1007/s10895-013-1193-y. Epub 2013 Mar 15.

Abstract

As the hardware of FLIM technique becomes mature, the most important criterion for FLIM application is the correct interpretation of its data. In this research, first of all, a more orthogonal phasor approach, called as Modified Phasor Approach (MPA), is put forward. It is a way to calculate the lifetime of the complex fluorescent process, and a rule to measure how much the fluorescence process deviates from single exponential decay. Secondly, MPA is used to analysis the time-resolved fluorescence processes of the transfected CHO-K1 Cell lines expressing adenosine receptor A1R tagged by CYP and YFP, measured in the channel of the acceptor. The image of the fluorescence lifetime and the multiplication of the fluorescence lifetime and deviation from single exponential decay reveal the details of the Homo-FRET. In one word, MPA provides the physical meaning in its whole modified phasor space, and broadens the way for the application of the fluorescence lifetime imaging.

摘要

随着 FLIM 技术的硬件日趋成熟,FLIM 的应用最重要的标准是对其数据的正确解读。在本研究中,首先提出了一种更为正交的相量方法,称为修正相量方法(MPA)。这是一种计算复杂荧光过程寿命的方法,也是衡量荧光过程偏离单指数衰减程度的标准。其次,将 MPA 应用于分析通过 CYP 和 YFP 标记的表达腺苷受体 A1R 的转染 CHO-K1 细胞系在接受体通道中测量的时间分辨荧光过程。荧光寿命的图像以及荧光寿命与单指数衰减的乘法和偏差揭示了同型 FRET 的细节。总之,MPA 提供了其整个修正相量空间中的物理意义,并拓宽了荧光寿命成像的应用途径。

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