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Recovery of Photoinduced Reversible Dark States Utilized for Molecular Diffusion Measurements

机译:恢复用于分子扩散测量的光致可逆暗态

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For a spatially restricted excitation volume, the effective modulation of the excitation in time is influenced by the passage times of the molecules through the excitation volume. By applying an additional time-modulated excitation, the buildup of photoinduced reversible dark states in fluorescent molecules can be made to vary significantly with their passage times through the excitation volume. The variations in the dark state populations are reflected by the time-averaged fluorescence intensity, which thus can be used to characterize the mobilities of the molecules. The concept was experimentally verified by measuring the fluorescence response of freely diffusing cyaninefluorophores(Cy5), undergoingtrans-cisisomerization when subject to time-modulated excitation in a focused laser beam. From the fluorescence response, and by applying a simple photodynamic model, the transition times of the Cy5 molecules could be well reproduced when applying different laminar flow speeds through the detection volume. The presented approach puts no constraints on sample concentration, no requirements for high time resolution or sensitivity in the detection, nor requires a high fluorescence brightness of the characterized molecules. This can make the concept useful for a broad range of biomolecular mobility studies.
机译:对于在空间上受限制的激发体积,在时间上激发的有效调制受到分子通过激发体积的通过时间的影响。通过施加额外的时间调制激发,可以使荧光分子中光诱导的可逆暗态的积累随着其通过激发体积的时间而显着变化。暗态种群的变化由时间平均荧光强度反映,因此可用于表征分子的迁移率。该概念通过测量自由扩散的花菁荧光团(Cy5)的荧光响应进行了实验验证,当在聚焦激光束中受到时间调制的激发时,它会经历反式-顺式异构化。根据荧光响应,并通过应用简单的光动力学模型,当通过检测体积应用不同的层流速度时,可以很好地再现Cy5分子的跃迁时间。提出的方法对样品浓度没有限制,对检测中的高时间分辨率或灵敏度没有要求,也不需要表征分子的高荧光亮度。这可以使该概念对广泛的生物分子迁移率研究有用。

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