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首页> 外文期刊>International Journal of Pharmaceutics >Pseudolatex preparation using a novel emulsion-diffusion process involving direct displacement of partially water-miscible solvents by distillation.
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Pseudolatex preparation using a novel emulsion-diffusion process involving direct displacement of partially water-miscible solvents by distillation.

机译:使用新型乳液扩散法制备假胶乳,该方法涉及通过蒸馏直接置换部分与水混溶的溶剂。

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Pseudolatexes were obtained by a new process based on an emulsification-diffusion technique involving partially water-miscible solvents. The preparation method consisted of emulsifying an organic solution of polymer (saturated with water) in an aqueous solution of a stabilizing agent (saturated with solvent) using conventional stirrers, followed by direct solvent distillation. The technique relies on the rapid displacement of the solvent from the internal into the external phase which thereby provokes polymer aggregation. Nanoparticle formation is believed to occur because rapid solvent diffusion produces regions of local supersaturation near the interface, and nanoparticles are formed due to the ensuing interfacial phase transformations and polymer aggregation that occur in these interfacial domains. Using this method, it was possible to prepare pseudolatexes of biodegradable and non-biodegradable polymers such as poly(D,L-lactic acid) and poly(varepsilon-caprolactone), Eudragit E, cellulose acetate phthalate, cellulose acetate trimellitate using ethyl acetate or 2-butanone as partially water-miscible solvents and poly(vinyl alcohol) or poloxamer 407 as stabilizing agent. A transition from nano- to microparticles was observed at high polymer concentrations. At concentrations above 30% w/v of Eudragit E in ethyl acetate or cellulose acetate phthalate in 2-butanone only microparticles were obtained. This behaviour was attributed to decreased transport of polymer molecules into the aqueous phase.
机译:通过基于乳化-扩散技术的新方法获得了伪拟酯,其中涉及部分与水混溶的溶剂。制备方法包括使用常规搅拌器将聚合物的有机溶液(用水饱和)乳化在稳定剂的水溶液(用溶剂饱和)中,然后直接蒸馏。该技术依赖于溶剂从内相到外相的快速置换,从而引起聚合物聚集。据信之所以发生纳米粒子的形成是因为溶剂的快速扩散会在界面附近产生局部过饱和的区域,并且由于在这些界面域中发生的随后的界面相变和聚合物聚集而形成了纳米粒子。使用这种方法可以制备可生物降解的和不可生物降解的聚合物的伪胶乳,例如聚(D,L-乳酸)和聚(戊二酸-己内酯),Eudragit E,醋酸纤维素邻苯二甲酸酯,醋酸偏苯三酸纤维素。以2-丁酮为部分与水混溶的溶剂,以聚乙烯醇或泊洛沙姆407作为稳定剂。在高聚合物浓度下观察到了从纳米到微粒的转变。在2-丁酮中的乙酸乙酯或邻苯二甲酸乙酸纤维素酯中,Eudragit E的浓度高于30%w / v时,仅获得微粒。该行为归因于聚合物分子向水相中的运输减少。

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