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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Photophysical behavior of a new cholesterol attached coumarin derivative and fluorescence spectroscopic studies on its interaction with bile salt systems and lipid bilayer membranes
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Photophysical behavior of a new cholesterol attached coumarin derivative and fluorescence spectroscopic studies on its interaction with bile salt systems and lipid bilayer membranes

机译:一种新的胆固醇连接香豆素衍生物的光物理行为及其与胆盐系统和脂质双层膜相互作用的荧光光谱研究

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摘要

A new fluorescent-cholesterol (Cum-Chl) molecule has been synthesized by attaching 3-acetyl-7-(diethylamino)-2H-chromen-2-one (Cum) to cholesterol via cholesterol bound p-keto ester. The β-keto ester was synthesized from the corresponding nitrite by applying the Blaise reaction. The molecule forms H-aggregates in solutions. The efficiency of aggregation is high in water. The H-aggregates are non-fluorescent in non-aqueous solvents but fluorescent in water. Aqueous bile salt media suppress the formation of H-aggregates, this effect being more pronounced for sodium deoxycholate (NaDC) which is more hydrophobic. With increasing bile salt concentration, the enhancement of monomeric fluorescence intensity of Cum-Chl generally follows the progressive miceller aggregation of bile salts. Incorporation of Cum-Chl into the dimyristoylphosphatidylcholine (DMPC) lipid bilayer membrane results in a significant enhancement of monomeric fluorescence intensity. The variation of fluorescence intensity is also sensitive to the thermotropic phase transition of the bilayer. It is seen that in such aqueous micro- and nanoscale organized media like bile salts and lipid bilayer membranes the monomer-to-aggregate fluorescence intensity ratio reflects the state of organization of the medium.
机译:一种新的荧光胆固醇(Cum-Chl)分子是通过将3-乙酰基-7-(二乙氨基)-2H-铬-2-(Cum)通过胆固醇结合的对酮酸酯与胆固醇连接而合成的。通过进行Blaise反应,由相应的亚硝酸酯合成β-酮酯。该分子在溶液中形成H聚集体。在水中聚集的效率很高。 H聚集体在非水溶剂中不发荧光,但在水中发荧光。胆汁盐水溶液可抑制H聚集体的形成,这种作用对于疏水性更强的脱氧胆酸钠(NaDC)更为明显。随着胆汁盐浓度的增加,Cum-Chl单体荧光强度的增强通常跟随胆汁盐的逐步胶束聚集。将Cum-Chl掺入二肉豆蔻酰基磷脂酰胆碱(DMPC)脂质双层膜中会大大增强单体荧光强度。荧光强度的变化也对双层的热致相变敏感。可以看出,在这种水性的微米级和纳米级有组织的介质(如胆盐和脂质双层膜)中,单体与聚集体的荧光强度比反映了介质的组织状态。

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