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Visualization of Membrane Rafts Using a Perylene Monoimide Derivative and Fluorescence Lifetime Imaging

机译:使用a单酰亚胺衍生物和荧光寿命成像可视化膜筏

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摘要

A new membrane probe, based on the perylene imide chromophore, with excellent photophysical properties (high absorption coefficient, quantum yield (QY) ≈ 1, high photostability) and excited in the visible domain is proposed for the study of membrane rafts. Visualization of separation between the liquid-ordered (Lo) and the liquid-disordered (Ld) phases can be achieved in artificial membranes by fluorescence lifetime imaging due to the different decay times of the membrane probe in the two phases. Rafts on micrometer-scale in cell membranes due to cellular activation can also be observed by this method. The decay time of the dye in the Lo phase is higher than in organic solvents where its QY is 1. This allows proposing a (possible general) mechanism for the decay time increase in the Lo phase, based on the local field effects of the surrounding molecules. For other fluorophores with QY 1, the suggested mechanism could also contribute, in addition to effects reducing the nonradiative decay pathways, to an increase of the fluorescence decay time in the Lo phase.
机译:提出了一种新的基于probe酰亚胺发色团的膜探针,该探针具有优异的光物理性质(高吸收系数,量子产率(QY)≈1,高光稳定性),并且在可见光区被激发,用于研究膜筏。由于膜探针在两相中的衰减时间不同,因此可以通过荧光寿命成像在人工膜中实现液序(Lo)相和液序(Ld)相之间分离的可视化。通过细胞活化也可以在细胞膜上观察到微米级的筏。染料在Lo相中的衰变时间比有机溶剂中QY为1的衰变时间长。这可以根据周围环境的局部场效应提出一种(可能的)机制,以提高Lo相中衰变时间。分子。对于QY <1的其他荧光团,除了减少非辐射衰变途径的作用外,建议的机理还可能有助于增加Lo相中的荧光衰变时间。

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