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PH-reversible vesicles based on the ' supramolecular amphiphilies' formed by cyclodextrin and anthraquinone derivate

机译:基于环糊精和蒽醌衍生物形成的“超分子两亲”的PH可逆囊泡

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摘要

Aggregates assembled by " supramolecular amphiphilies" are more promising in developing responsive materials. First pH-reversible vesicles based on " supramolecular amphiphilies" were prepared from the supramolecular inclusion of cyclodextrins (CDs) and anthraquinone derivate (1-((3-(dimethylamino)propyl)amino)anthracene-9,10-dione, 1). 1, as the guest molecule, was synthesized by the direct reaction of 1-nitroanthraquinone with N~1,N~1-dimethylpropane-1,3-diamine. The vesicles were characterized in detail by transmission electron microscopy (TEM), scanning electron microscopy (SEM), dynamic light scattering (DLS), and epi fluorescence microscope (EFM). ~1H NMR, 2D NMR ROESY, UV-vis spectrum, and FT-IR were further employed to study the formation mechanism of the vesicles. The vesicles' responsive property, especially the pH-responsive property was tested. We also tried to use the vesicle system as a new kind of fluorescence staining material for living cells and mouse prostate carcinoma cells (RM-1) were found to be stained effectively by the vesicles. Our research may provide new references in exploiting novel intelligence materials and biomaterials.
机译:由“超分子两亲”组装的聚集体在开发响应性材料方面更有希望。第一类基于“超分子两亲”的pH可逆囊泡由环糊精(CD)和蒽醌衍生物(1-((3-(二甲基氨基)丙基)氨基)蒽-9,10-二酮,1)的超分子包合物制备。 1,作为客体分子,是通过1-硝基蒽醌与N〜1,N〜1-二甲基丙烷-1,3-二胺直接反应合成的。通过透射电子显微镜(TEM),扫描电子显微镜(SEM),动态光散射(DLS)和落射荧光显微镜(EFM)对囊泡进行了详细表征。还采用了〜1H NMR,2D NMR ROESY,UV-vis光谱和FT-IR来研究囊泡的形成机理。测试了囊泡的响应特性,尤其是pH响应特性。我们还尝试将囊泡系统用作活细胞的新型荧光染色材料,并且发现小鼠前列腺癌细胞(RM-1)被囊泡有效地染色。我们的研究可能为开发新型情报材料和生物材料提供新的参考。

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