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Effects of polymer,organic solvent and mixing strength on integrity of proteins and liposomes encapsulated in polymeric microspheres fabricated by the double emulsion process

机译:聚合物,有机溶剂和混合强度对双乳液法制备的聚合物微球中蛋白质和脂质体完整性的影响

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摘要

The double emulsion process has commonly been applied to encapsulate water-soluble bioactive agents into polymeric microspheres.However,the integrity of many of these agents may be destroyed by the highly energetic procedures such as sonication that are routinely used to produce stable water-in-oil(w/o)emulsion.The aim of this research was to pursue the possibility of replacing the sonication by a mild emulsification procedure such as vortex mixing,with the use of certain materials to help to obtain stable w/o emulsion.The following materials were examined:poly(lactide-co-ethylene glycol)(PELA)as the polymer,ethyl acetate and acetone as the solvents,poly(vinyl alcohol)(PVA)and d-alpha tocopheryl polyethylene glycol 1000 succinate(Vitamin E TPGS)as the emulsifiers in w/o emulsion.The experimental results,with human serum albumin(HSA)as the encapsulated agent,showed that,when vortex mixing was used,these materials could significantly improve w/o emulsion stability and help to obtain satisfactory encapsulation effects,i.e.high encapsulation efficiency(EE)and low initial release burst.A delicate structure,i.e.liposomes,which is very sensitive to sonication,was then incorporated into microspheres by the'modified double emulsion process'.It was found that the liposomes were intact and the encapsulation effects were good.Therefore,it can be concluded that the modified double emulsion process could be advantageous for the encapsulation of delicate substances.
机译:双重乳液工艺通常用于将水溶性生物活性剂包封到聚合物微球中。但是,高强度的程序(如超声处理)通常会产生高稳定性的程序,这些程序通常会产生稳定的水包膜水,因而破坏了其中许多试剂的完整性。本研究的目的是寻求通过温和的乳化程序(例如涡旋混合)替代超声处理的可能性,并使用某些材料来帮助获得稳定的w / o乳状液。检查了以下材料:聚丙交酯-乙二醇共聚物(PELA),乙酸乙酯和丙酮为溶剂,聚乙烯醇(PVA)和d-α生育酚聚乙二醇1000琥珀酸酯(维生素E TPGS)以人血清白蛋白(HSA)为包封剂的实验结果表明,在涡旋混合条件下,这些材料可以显着提高w / o乳状液的稳定性,并有助于获得饱和乳油。封装效果良好,即高封装效率(EE)和较低的初始释放爆发。然后通过“改良的双乳化工艺”将对超声波非常敏感的微妙结构即脂质体掺入微球。脂质体完整,包封效果好。因此,可以得出结论,改进的双乳化工艺有利于微妙物质的包封。

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