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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Localization of dipyridamole molecules in ionic micelles: effect of micelle and drug charges
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Localization of dipyridamole molecules in ionic micelles: effect of micelle and drug charges

机译:离子胶束中双吡酰胺分子的定位:胶束和药物收费的作用

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摘要

The localization of the coronary vasodilator dipyridamole (DIP) in cationic cetyltrimethylammonium chloride (CTAC), anionic sodium dodecylsulfate (SDS) and zwitterionic N-hexadecyl-N,N-dimethyl-3-ammonio-1-propanesulfonate and lysophosphatidylcholine (HPS and LPC) micelles was investigated using fluorescence quenching by quenchers with known localization in the micelle (TEMPO and 5-doxyl and 12-doxyl stearic acids). The use of fluorescence quenching jointly with fluorescence and 1H-NMR spectral measurements shows that DIP molecules in both protonated and nonprotonated forms are localized in micelles near the region which separates their polar and nonpolar parts, the polarizable heteroaromatic cycle of DIP being close to the polar part and the nonpolar substituents penetrating the hydrophobic interior of the micelle. The electrostatic interaction between the protonated DIP molecules and micelle charges either moves DIP into the micelle interior (for cationic and zwitterionic micelles) or draws it closer to the micelle surface (for anionic ones). Our results could be relevant to the mechanism of DIP action since many data indicate the interaction of the drug with cell membranes. The ability of DIP to localize near the membrane surface with the substituents immersed into a hydrophobic moiety could be essential for the drug interaction with P-glycoprotein, which is responsible for mediation of the effects of several antitumour drugs.
机译:冠状动脉血管脱甲酰氯化铵(CTAC),阴离子十二烷基硫酸盐(SDS)和两性离子正己二甲基-N,N-二甲基-3-氨基-1-丙二酸酯和溶血磷脂酰胆碱(HPS和LPC)定位使用具有已知定位的乳霜猝灭研究胶束(Tempo和5-二×(Tempo和5- xylyls),研究了胶束。使用荧光与荧光和1H-NMR光谱测量的使用表明,质子化和非普促形式的浸渍分子在分离它们的极性和非极性部件附近的胶束中局部,浸入极化杂芳烃循环接近极性部分和非极性取代基穿透胶束疏水内部。质子化浸渍分子和胶束电荷之间的静电相互作用要么将浸入胶束内部(用于阳离子和两性离子胶束),或者将其更靠近胶束表面(用于阴离子的胶束)。我们的结果可能与DIP动作的机制相关,因为许多数据表明药物与细胞膜的相互作用。浸入膜表面附近用浸入疏水部分的取代基定位的能力对于与对糖蛋白的药物相互作用是必不可少的,这是对几种抗溶解药物的影响的调解。

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