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三重激发态对显微镜下荧光素光漂白动力学的影响。

Influence of the triplet excited state on the photobleaching kinetics of fluorescein in microscopy.

作者信息

Song L, Varma C A, Verhoeven J W, Tanke H J

机构信息

Laboratory of Cytochemistry and Cytometry, Faculty of Medicine, Leiden University, The Netherlands.

出版信息

Biophys J. 1996 Jun;70(6):2959-68. doi: 10.1016/S0006-3495(96)79866-1.

Abstract

The investigation in this report aimed at providing photophysical evidence that the long-lived triplet excited state plays an important role in the non-single-exponential photobleaching kinetics of fluorescein in microscopy. Experiments demonstrated that a thiol-containing reducing agent, mercaptoethylamine (MEA or cysteamine), was the most effective, among other commonly known radical quenchers or singlet oxygen scavengers, in suppressing photobleaching of fluorescein while not reducing the fluorescence quantum yield. The protective effect against photobleaching of fluorescein in the bound state was also found in microscopy. The antibleaching effect of MEA let to a series of experiments using time-delayed fluorescence spectroscopy and nanosecond laser flash photolysis. The combined results showed that MEA directly quenched the triplet excited state and the semioxidized radical form of fluorescein without affecting the singlet excited state. The triplet lifetime of fluorescein was reduced upon adding MEA. It demonstrated that photobleaching of fluorescein in microscopy is related to the accumulation of the long-lived triplet excited state of fluorescein and that by quenching the triplet excited state and the semioxidized form of fluorescein to restore the dye molecules to the singlet ground state, photobleaching can be reduced.

摘要

本报告中的研究旨在提供光物理证据,证明长寿命三重态激发态在显微镜下荧光素的非单指数光漂白动力学中起重要作用。实验表明,在其他常见的自由基猝灭剂或单线态氧清除剂中,含硫醇的还原剂巯基乙胺(MEA或半胱胺)在抑制荧光素光漂白方面最为有效,同时又不降低荧光量子产率。在显微镜观察中还发现了MEA对结合态荧光素光漂白的保护作用。MEA的抗光漂白作用引发了一系列使用延时荧光光谱和纳秒激光闪光光解的实验。综合结果表明,MEA直接猝灭荧光素的三重态激发态和半氧化自由基形式,而不影响单线态激发态。加入MEA后,荧光素的三重态寿命缩短。这表明显微镜下荧光素的光漂白与荧光素长寿命三重态激发态的积累有关,并且通过猝灭荧光素的三重态激发态和半氧化形式,使染料分子恢复到单线态基态,可以减少光漂白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aecd/1225276/cfa45641294f/biophysj00048-0502-a.jpg

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