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使用衰减时间分布对频域中测量的荧光衰减动力学进行分析。

Analysis of fluorescence decay kinetics measured in the frequency domain using distributions of decay times.

作者信息

Lakowicz J R, Cherek H, Gryczynski I, Joshi N, Johnson M L

机构信息

University of Maryland, School of Medicine, Department of Biological Chemistry, Baltimore 21201.

出版信息

Biophys Chem. 1987 Oct;28(1):35-50. doi: 10.1016/0301-4622(87)80073-x.

Abstract

We describe the theoretical and practical aspects of analyzing complex fluorescence decay kinetics using continuous distributions of decay times. Our analysis uses frequency-domain data, provides for global analysis of multiple data sets and includes the possibility of excited-state processes. Simulated data were used to estimate the types of distributions which can be reasonably recovered from the measurements. Additionally, we describe a variety of distributions recovered from experimental data. For mixtures of one, two or three exponentially decaying fluorophores we recovered narrow lifetime distributions, which are essentially identical to a multiexponential decay. Similarly, a two-state excited-state reaction also yielded a narrow distribution with negative preexponential factors. The presence of time-dependent spectral relaxation of labeled lipids results in a wide distribution of decay times, which becomes narrower for faster relaxation rates at higher temperatures. Hence, the decay-time distributions appear to be sensitive to the dynamics of the environment surrounding the fluorophore. Additionally, distributions of decay times were observed to result from transient effects in collisional quenching, from energy transfer in the presence of a range of donor-to-acceptor distances, and for several single-tryptophan proteins.

摘要

我们描述了使用衰减时间的连续分布来分析复杂荧光衰减动力学的理论和实践方面。我们的分析使用频域数据,可对多个数据集进行全局分析,并考虑了激发态过程的可能性。利用模拟数据来估计能够从测量中合理恢复的分布类型。此外,我们还描述了从实验数据中恢复的各种分布。对于由一、二或三种指数衰减荧光团组成的混合物,我们恢复了窄寿命分布,其本质上与多指数衰减相同。同样,双态激发态反应也产生了具有负指数前因子的窄分布。标记脂质的时间依赖性光谱弛豫的存在导致衰减时间的广泛分布,在较高温度下,弛豫速率越快,分布越窄。因此,衰减时间分布似乎对荧光团周围环境的动力学敏感。此外,观察到衰减时间分布是由碰撞猝灭中的瞬态效应、存在一系列供体 - 受体距离时的能量转移以及几种单色氨酸蛋白导致的。

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