Photo-physical characterization of high triplet yield brominated fluoresceins by transient state (TRAST) spectroscopy.

IF 2.4 3区 化学 Q3 CHEMISTRY, ANALYTICAL Methods and Applications in Fluorescence Pub Date : 2023-10-03 DOI:10.1088/2050-6120/acfb59
Baris Demirbay, Glib Baryshnikov, Martin Haraldsson, Joachim Piguet, Hans Ågren, Jerker Widengren
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Abstract

Photo-induced dark transient states of fluorophores can pose a problem in fluorescence spectroscopy. However, their typically long lifetimes also make them highly environment sensitive, suggesting fluorophores with prominent dark-state formation yields to be used as microenvironmental sensors in bio-molecular spectroscopy and imaging. In this work, we analyzed the singlet-triplet transitions of fluorescein and three synthesized carboxy-fluorescein derivatives, with one, two or four bromines linked to the anthracence backbone. Using transient state (TRAST) spectroscopy, we found a prominent internal heavy atom (IHA) enhancement of the intersystem crossing (ISC) rates upon bromination, inferred by density functional theory calculations to take place via a higher triplet state, followed by relaxation to the lowest triplet state. A corresponding external heavy atom (EHA) enhancement was found upon adding potassium iodide (KI). Notably, increased KI concentrations still resulted in lowered triplet state buildup in the brominated fluorophores, due to relatively lower enhancements in ISC, than in the triplet decay. Together with an antioxidative effect on the fluorophores, adding KI thus generated a fluorescence enhancement of the brominated fluorophores. By TRAST measurements, analyzing the average fluorescence intensity of fluorescent molecules subject to a systematically varied excitation modulation, dark state transitions within very high triplet yield (>90%) fluorophores can be directly analyzed under biologically relevant conditions. These measurements, not possible by other techniques such as fluorescence correlation spectroscopy, opens for bio-sensing applications based on high triplet yield fluorophores, and for characterization of high triplet yield photodynamic therapy agents, and how they are influenced by IHA and EHA effects.

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通过瞬态(TRAST)光谱对高三重产率溴化荧光素的光物理表征。
荧光团的光诱导暗瞬态会在荧光光谱中造成问题。然而,它们通常的长寿命也使它们对环境高度敏感,这表明具有显著暗态形成产率的荧光团可以用作生物分子光谱和成像中的微环境传感器。在这项工作中,我们分析了荧光素和三种合成的羧基荧光素衍生物的单线态-三重态跃迁,其中一个、两个或四个溴与蒽骨架相连。使用瞬态(TRAST)光谱,我们发现溴化时系统间交叉(ISC)速率的内部重原子(IHA)显著增强,密度泛函理论计算推断,这是通过较高的三重态发生的,然后弛豫到最低的三重状态。在加入碘化钾(KI)后,发现了相应的外部重原子(EHA)增强。值得注意的是,KI浓度的增加仍然导致溴化荧光团中三重态积累的降低,这是由于ISC的增强相对低于三重态衰变。与对荧光团的抗氧化作用一起,添加KI从而产生溴化荧光团的荧光增强。通过TRAST测量,分析受到系统变化的激发调制的荧光分子的平均荧光强度,可以在生物相关条件下直接分析非常高的三重态产率(>90%)荧光团内的暗态跃迁。这些测量是荧光相关光谱等其他技术无法实现的,可用于基于高三重产率荧光团的生物传感应用,以及高三重产量光动力治疗剂的表征,以及它们如何受到IHA和EHA效应的影响。
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来源期刊
Methods and Applications in Fluorescence
Methods and Applications in Fluorescence CHEMISTRY, ANALYTICALCHEMISTRY, PHYSICAL&n-CHEMISTRY, PHYSICAL
CiteScore
6.20
自引率
3.10%
发文量
60
期刊介绍: Methods and Applications in Fluorescence focuses on new developments in fluorescence spectroscopy, imaging, microscopy, fluorescent probes, labels and (nano)materials. It will feature both methods and advanced (bio)applications and accepts original research articles, reviews and technical notes.
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