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A unimolecular nanocapsule : Encapsulation property of amphiphilic polymer based on hyperbranched polythreitol

机译:单分子纳米胶囊:基于超支化聚苏糖醇的两亲聚合物的包封性能

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摘要

Hyperbranched polythreitol (1) with different molecular weights (Mw,SLS: 1.18 × 10 4 and 4.79 × 10 4) was reacted with trityl chloride in DMF to afford a novel amphiphilic polymer (2) consisting of 1 as the hydrophilic core and the trityl groups as the hydrophobic shell. Compound 2 was tested for its ability to act as a unimolecular nanocapsule toward the water-soluble dye, rose bengal (RB). Their encapsulation and release properties were also evaluated by comparison with the degree of substitution (DS) of the trityl groups, i.e., the hydrophobic shell density. The polymers were found to have very good unimolecular nanocapsule characteristics even at extremely low concentrations. The average number of RBs per polymer molecule depended on the hydrophilic core size and the hydrophobic shell density. The increasing DS value led to a decrease in the encapsulated amount due to the decrease in the hydrophilic core space, while the low DS value (less than ca. 20 mol%) led to a destabilization as a unimolecular nanocapsule and a lower encapsulation ability. In particular, 2 with ca. 23% DS value showed an efficient encapsulation. Based on a release test of the RB-loaded unimolecular nanocapsules, the polymers showed a high RB-holding ability in water.
机译:使不同分子量(Mw,SLS:1.18×10 4和4.79×10 4)的超支化聚苏糖醇(1)与三苯甲基氯在DMF中反应,得到一种新型两亲聚合物(2),该两亲聚合物由1作为亲水核,三苯甲基基团作为疏水壳。测试了化合物2对水溶性染料玫瑰红(RB)充当单分子纳米胶囊的能力。还通过与三苯甲基的取代度(DS),即疏水壳密度比较,评价了它们的包封和释放性能。发现该聚合物即使在极低的浓度下也具有非常好的单分子纳米胶囊特性。每个聚合物分子的平均RB数取决于亲水核的大小和疏水壳的密度。由于亲水核空间的减少,增加的DS值导致封装量的减少,而低的DS值(小于约20mol%)导致作为单分子纳米胶囊的不稳定和较低的封装能力。特别是2与ca。 23%的DS值显示出有效的封装效果。根据负载RB的单分子纳米胶囊的释放测试,该聚合物在水中显示出很高的RB保持能力。

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