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Synergistic Interaction between Cholesterol and Functionalized Ionic Liquid Based Surfactant Leading to the Morphological Transition

机译:胆固醇与官能化离子液体表面活性剂之间的协同相互作用导致形态过渡

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摘要

Stable vesicular aggregate is the primary requisite to transport and deliver the biological and pharmaceutical standards. The serendipitous discovery of nonlipid vesicles made with the nonlipid building blocks, such as ionic liquid based surfactants (ILBSs) proved to be advantageous over others. In a quest to achieve stable, more rigid and hydrophobic vesicles from ILBSs, here we have investigated the lipid (cholesterol) induced unilamellar vesicle formation in the aqueous functionalized and nonfunctionalized ILBSs. The vesicles show outstanding stability with time, temperature and dilution with water. Spectroscopic (turbidity, steady state absorbance and fluorescence), scattering (dynamic light scattering) and microscopic (transmission electron microscopy) techniques were used to characterize the vesicles. The hydration behavior and rigidity associated with the vesicular bilayer on transforming from micellar assembly was characterized through steady state absorbance and fluorescence techniques. The unilamellar vesicles derived are compared with the conventional surfactant, i. e. cetyltrimethyl ammonium bromide.
机译:稳定的囊泡聚集体是运输和交付生物学和药物标准的主要必需品。用非脂质构建块制成的非血脂囊泡的偶然发现,例如离子液体表面活性剂(ILBSS)被证明比其他人具有优势。为了实现ILBS的稳定,更刚性和疏水性囊泡,我们在这里研究了水性功能化和非功能化的ILBS中的脂质(胆固醇)诱导的Unilamelar囊泡形成。囊泡显示出随时间,温度和用水稀释的稳定性。光谱(浊度,稳态吸光度和荧光),散射(动态光散射)和显微镜(透射电子显微镜)技术用于表征囊泡。通过稳态吸光度和荧光技术来表征与囊状双层相关的水合行为和刚度。将衍生的单层囊泡与常规表面活性剂进行比较。 e。氯溴二铵溴化铵。

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