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Self-Assembling Systems Based on Pillar5arenes and Surfactants for Encapsulation of Diagnostic Dye DAPI

机译:基于柱的自组装系统5植物和表面活性剂用于封装诊断染料DAPI

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摘要

In this paper, we report the development of the novel self-assembling systems based on oppositely charged Pillar[5]arenes and surfactants for encapsulation of diagnostic dye DAPI. For this purpose, the aggregation behavior of synthesized macrocycles and surfactants in the presence of Pillar[5]arenes functionalized by carboxy and ammonium terminal groups was studied. It has been demonstrated that by varying the molar ratio in Pillar[5]arene-surfactant systems, it is possible to obtain various types of supramolecular systems: host–guest complexes at equimolar ratio of Pillar[5]arene-surfactant and interpolyelectrolyte complexes (IPECs) are self-assembled materials formed in aqueous medium by two oppositely charged polyelectrolytes (macrocycle and surfactant micelles). It has been suggested that interaction of Pillar[5]arenes with surfactants is predominantly driven by cooperative electrostatic interactions. Synthesized stoichiometric and non-stoichiometric IPECs specifically interact with DAPI. UV-vis, luminescent spectroscopy and molecular docking data show the structural feature of dye-loaded IPEC and key role of the electrostatic, π–π-stacking, cation–π interactions in their formation. Such a strategy for the design of supramolecular Pillar[5]arene-surfactant systems will lead to a synergistic interaction of the two components and will allow specific interaction with the third component (drug or fluorescent tag), which will certainly be in demand in pharmaceuticals and biomedical diagnostics.
机译:在本文中,我们报告了基于相反电荷的柱的新型自组装系统的开发[5]植物和表面活性剂,用于包封诊断染料DAPI。为此目的,研究了通过羧基和铵末端基团官能化的合成宏茂克和表面活性剂的聚集行为。已经证明,通过改变柱[5]芳烯 - 表面活性剂体系中的摩尔比,可以获得各种类型的超分子系统:柱状柱的宿主 - 客体复合物,柱的柱[5]芳烯 - 表面活性剂和间电解质复合物( IPECs)是在水性介质中形成的自组装材料,通过两个相对电荷的聚电解质(大环和表面活性剂胶束)。已经提出,柱子[5]与表面活性剂的相互作用主要由协作静电相互作用驱动。合成的化学计量和非化学计量IPEC与DAPI特异性相互作用。 UV-Vis,发光光谱和分子对接数据显示染料加载的IPEC的结构特征和静电,π-π堆叠,阳离子-π的相互作用的关键作用。这种用于超分子柱的设计策略[5]芳烯表面活性剂体系将导致两种组分的协同相互作用,并将允许与第三组分(药物或荧光标签)的特异性相互作用,这肯定会在药物中需求和生物医学诊断。

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