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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >A Multiparametric Fluorescence Probe to Understand the Physicochemical Properties of Small Unilamellar Lipid Vesicles in Poly(ethylene glycol)-Water Medium
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A Multiparametric Fluorescence Probe to Understand the Physicochemical Properties of Small Unilamellar Lipid Vesicles in Poly(ethylene glycol)-Water Medium

机译:多球荧光探针以了解聚(乙二醇)水中小单位脂质囊泡的物理化学性质

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摘要

FDAPT (2 -formyl- 5 -(4'-N,N-dimethylaminophenyl)thiophene) efficiently senses the minimum alteration of lipid bilayer microenvironment with all six different fluorescence parameters namely emission wavelength, fluorescence intensity, steady-state anisotropy, and their corresponding timedependent parameters (Sahu et al., J. Phys. Chem. B 2018, 122, 7308-7318). In the present work, the effect of poly(ethylene glycol) on the small unilamellar vesicle is demonstrated with the emission behavior of the FDAPT probe. A medium and a high molecular weight PEG were chosen to perturb the lipid vesicles. The alteration of the bilayer polarity, water content inside bilayer, lipid packing density in the perturbed vesicles reflect significant changes in different fluorescence parameters of FDAPT probe. The effect of PEG on the unilamellar vesicle was rationalized with the alteration of the emission behavior, fluorescence lifetime, steady- state anisotropy and anisotropy decay of the probe. The simple and convenient fluorescence measurements provide new insights into the effect of PEG on the packing density, water volume, micro polarity, and microviscosity of the small unilamellar vesicle. The physiological understanding was extended to rationalize the cryoprotecting behavior of PEG.
机译:FDAPT(2-甲酰基-5 - (4'-N,N-二甲基氨基苯基)噻吩有效地感测了所有六种不同荧光参数的脂质双层微环境的最小变化,即发射波长,荧光强度,稳态各向异性及其相应的时间依赖参数(Sahu等,J. phys。化学。B 2018,122,7308-7318)。在本作的工作中,用FDAPT探针的排放行为对Poly(乙二醇)对小单层囊泡的影响。选择培养基和高分子量PEG以扰乱脂质囊泡。双层极性的改变,双层内部的水含量,扰动囊泡中的脂质填料密度反映了FDAPT探针的不同荧光参数的显着变化。 PEG对Unilamellar囊泡的效果随着排放行为,荧光寿命,稳态各向异性和探针各向异性衰减的改变而合理化。简单且方便的荧光测量为PEG对小单层囊泡的填料密度,水量,微观极性和微粘性的影响提供了新的见解。延长生理学理解以合理化PEG的冷冻保护行为。

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