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首页> 外文期刊>Journal of Colloid and Interface Science >Spectroscopic probing of location and dynamics of an environment-sensitive intramolecular charge transfer probe within liposome membranes
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Spectroscopic probing of location and dynamics of an environment-sensitive intramolecular charge transfer probe within liposome membranes

机译:脂质体膜内环境敏感的分子内电荷转移探针的位置和动力学的光谱探测

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摘要

The present work demonstrates the interaction of an intramolecular charge transfer (ICT) probe 5-(4-dimethylamino-phenyl)-penta-2,4-dienoic acid methyl ester (DPDAME) with liposome membranes of dimyristoyl-l-α-phosphatidylcholine (DMPC) and dimyristoyl-l-α-phosphatidylglycerol (DMPG) studied by steady-state absorption, emission and time-resolved emission techniques. A huge hypsochromic shift together with remarkable enhancement of fluorescence quantum yield of the polarity sensitive ICT emission of DPDAME upon interaction with the lipids has been rationalized in terms of incorporation of the probe into hydrophobic interior of the lipids. Compelling evidences for penetration of the probe into the hydrocarbon interior of the lipids have been deduced from intertwining different experimental results e.g., micropolarity in the immediate vicinity of the probe in lipid environments, steady-state anisotropy, red-edge excitation shift (REES), fluorescence quenching experiments and time-resolved measurements. The rotational relaxation dynamics study of the membrane-bound probe unveils the impartation of high degree of motional rigidity. Wavelength-selective emission behaviour paves way for monitoring of solvent-relaxation in the membranes. Overall, the ICT probe DPDAME displays its commendable sensitivity in deciphering the microheterogeneous environments of liposomal membranes of DMPC and DMPG and promises a new membrane-polarity sensitizing probe.
机译:本工作证明了分子内电荷转移(ICT)探针5-(4-二甲基氨基-苯基)-戊-2,4-二烯酸甲酯(DPDAME)与二肉豆蔻酰基-1-α-磷脂酰胆碱的脂质体膜的相互作用( DMPC)和二豆蔻油基1-α-磷脂酰甘油(DMPG)通过稳态吸收,发射和时间分辨发射技术进行了研究。通过将探针掺入脂质的疏水性内部,已合理化了巨大的变色位移,以及与脂质相互作用时DPDAME的极性敏感ICT发射的荧光量子产率的显着提高。相互交织的不同实验结果,例如在脂质环境中探针附近的微极性,稳态各向异性,红边激发位移(REES),荧光猝灭实验和时间分辨测量。膜结合探针的旋转弛豫动力学研究揭示了高度的运动刚度。波长选择性发射行为为监测膜中的溶剂松弛铺平了道路。总体而言,ICT探针DPDAME在破译DMPC和DMPG脂质体膜的微异质环境方面显示出其可称的灵敏度,并有望成为一种新型的膜极性敏化探针。

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