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Reversible photoswitching enables single-molecule fluorescence fluctuation spectroscopy at high molecular concentration.

机译:可逆的光开关使高分子浓度的单分子荧光波动光谱成为可能。

摘要

We demonstrate that photoswitchable markers enable fluorescence fluctuation spectroscopy at high molecular concentration. Reversible photoswitching allows precise control of the density of fluorescing entities, because the equilibrium between the fluorescent ON- and the dark OFF-state can be shifted through optical irradiation at a specific wavelength. Depending on the irradiation intensity, the concentration of the ON-state markers can be up to 1,000 times lower than the actual concentration of the labeled molecular entity. Photoswitching expands the range of single-molecule detection based experiments such as fluorescence fluctuation spectroscopy to large entity concentrations in the micromolar range.
机译:我们证明光开关标记物可以在高分子浓度下实现荧光波动光谱。可逆的光开关可以精确控制发荧光实体的密度,因为可以通过特定波长的光照射来改变荧光“开”和暗“关”状态之间的平衡。根据照射强度,ON状态标记的浓度可能比标记分子实体的实际浓度低多达1,000倍。光开关将基于单分子检测的实验范围(例如荧光波动光谱)扩展到微摩尔范围内的大实体浓度。

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