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Dipolar relaxation in a lipid bilayer detected by a fluorescent probe, 4 ''-dimethylaminochalcone

机译:通过荧光探针4''-二甲基氨基查耳酮检测到的脂质双层中的偶极弛豫

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The dynamic behavior of polar molecules in egg phosphatictylcholine (PC) bilayers has been studied using a membrane fluorescent probe, 4"-dimethylaminochalcone (DMAC). Time and spectrally resolved fluorescence spectroscopy of DMAC incorporated in PC liposomes, as compared to studies of the probe in organic solvents, shows the existence of two independent populations, associated with different extent and speed of dipolar solvent relaxation. The first DMAC population represents approximately 69% of the fluorescence-emitting molecules, has a short fluorescence decay time (0.32 ns) and undergoes Stokes shift of 80 nm. The remaining 31% fraction of DMAC molecules has a decay time of 0.74 ns and undergoes a high (106 nm) Stokes shift. A fraction of the shift, ca. 24 nm for the first and 46 nm for the second population, is attributed to the fast (< 0.1 ns) rotational relaxation of nearby dipolar molecules, which might be water. This two-state model accounts we] I for the detailed fluorescence properties of DMAC in egg PC, i.e. its broadened steady-state spectrum, its average fluorescence quantum yield and its complex wavelength-dependent fluorescence decays. (c) 2006 Elsevier Ireland Ltd. All rights reserved.
机译:已使用膜荧光探针4“-二甲基氨基查耳酮(DMAC)研究了鸡蛋磷脂酰胆碱(PC)双层中极性分子的动态行为。掺入PC脂质体中的DMAC的时间和光谱分辨荧光光谱,与该探针的研究相比在有机溶剂中,表明存在两个独立的种群,与偶极溶剂弛豫的程度和速度不同,第一个DMAC种群约占荧光发射分子的69%,具有短的荧光衰减时间(0.32 ns)并经历斯托克斯位移为80 nm,剩余的31%的DMAC分子的衰减时间为0.74 ns,并经历了高(106 nm)斯托克斯位移,该位移的一部分,第一个约为24 nm,第二个约为46 nm。第二种群归因于附近的偶极分子(可能是水)的快速旋转旋转(<0.1 ns),这种二态模型说明了详细荧光的存在。蛋PC中DMAC的特性,即其稳态光谱变宽,其平均荧光量子产率和其复杂的与波长相关的荧光衰减。 (c)2006 Elsevier Ireland Ltd.保留所有权利。

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