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Self-assembled nanocages for hydrophilic guest molecules

机译:自组装的纳米笼用于亲水性客体分子

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Reverse polymeric micelles are obtained following the association of polymeric amphiphiles in apolar media. To this date, reports of pharmaceutical applications for such micelles have been scarce, mainly because these systems have been studied in solvents that are not suitable for medical use. Here, alkylated star-shaped poly( glycerol methacrylate) polymers have been proposed in the design of oil-soluble reverse polymeric micelles. Micellar behavior was studied in various apolar solvents, including ethyl oleate, a pharmaceutically acceptable vehicle. The polymers were shown to assemble into spherical nanostructures (< 40 nm) as determined by cryogenic transmission electron microscopy and atomic force microscopy studies. Interestingly, the reverse micelles were able to encapsulate various peptides/proteins (vasopressin, myoglobin, and albumin) in substantial amounts and facilitate their solubilization in oil. The nature of both the polymer used in micelle formation and the guest molecules was found to influence the ability of the micelle to interact with hydrophilic compounds.
机译:在非极性介质中聚合物两亲物缔合后获得反向聚合物胶束。迄今为止,关于这种胶束的药物应用的报道很少,主要是因为已经在不适合医学用途的溶剂中研究了这些系统。在此,在油溶性反向聚合物胶束的设计中已经提出了烷基化的星形聚甲基丙烯酸甘油酯聚合物。在各种非极性溶剂(包括油酸乙酯,一种可药用的载体)中研究了胶束行为。通过低温透射电子显微镜和原子力显微镜研究确定,该聚合物被组装成球形纳米结构(<40 nm)。有趣的是,反胶束能够大量包裹各种肽/蛋白质(加压素,肌红蛋白和白蛋白),并促进它们在油中的溶解。发现用于胶束形成的聚合物和客体分子的性质都影响胶束与亲水性化合物相互作用的能力。

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