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Identification of aqueous reservoirs in poly(alkylcyanoacrylate) nanoparticles

机译:聚(烷基氰基丙烯酸酯)纳米颗粒中含水储存器的鉴定

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摘要

Poly (n-butylcyanocrylate) nanocapsules were obtained by interfacial polymerization from a water-in-oil microemulsion. The latter was composed of pharmaceutically acceptable excipients such as Labrafac lipophile WL 1349 (oil), Plurol oleique CC497 (surfactant), and Labrasol (co-surfactant) and was able to incorporate 20% aqueous phase. Pure n-butylcyanoacrylate monomer (without any dilution in a halogenated solvent) was added to the microemulsion in order to obtain an oily suspension of biocompatible and biodegradable aqueous core nanocapsules. Finally, in order to provide a direct evidence of the presence of water within the nanocapsules, a mass balance and nuclear magnetic resonance analysis were performed. The results showed that the presence of water and transmission electronic microscopy confirmed a hybrid structure of the final nanosystem, between a genuine nanocapsule and a matrix system: a nanosystem with multicavities filled with water.
机译:通过来自油内微乳液的界面聚合获得聚(正丁基氰基酯)纳米胶囊。 后者由药学上可接受的赋形剂组成,例如Labrafac Plipophile W11349(油),Plurol大学CC497(表面活性剂)和粘粒醇(共表面活性剂),并且能够掺入20%的水相。 向微乳液中加入纯正丁基含丙烯酸酯单体(不含有卤代溶剂中的任何稀释液),以获得生物相容性和可生物降解的含水核心纳米胶囊的油性悬浮液。 最后,为了提供纳米胶囊内存在水的直接证据,进行质量平衡和核磁共振分析。 结果表明,水和透射电子显微镜的存在证实了最终纳米系统的混合结构,在真正的纳米胶囊和基质系统之间:纳米系统,其中包含水的多瓦。

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