Yeo Yoon, Basaran Osman A, Park Kinam
Departments of Pharmaceutics and Biomedical Engineering, Purdue University, West Lafayette, IN 47907-2051, USA.
J Control Release. 2003 Dec 5;93(2):161-73. doi: 10.1016/j.jconrel.2003.08.021.
A new microencapsulation technique that utilizes interfacial mass transfer between two mutually soluble liquids has been developed. The technique is based on formation of a solid polymer film at the interface of a solution of a water-insoluble polymer and an aqueous solution, resulting from the mutual mass transfer of solvents (i.e., solvent exchange). Reservoir-type microcapsules were prepared by inducing this phenomenon to occur on the surface of an aqueous droplet. One method of implementation employed a dual microdispenser system that consisted of two ink-jet nozzles. The nozzles, producing droplets of a polymer solution and an aqueous drug solution, respectively, were aligned to allow collision of pairs of the droplets. The collision resulted in spreading of the polymer solution on the aqueous droplet and simultaneous solvent exchange, to form a polymeric membrane around the aqueous droplet. The formation of the polymer membrane depended largely on the favorable spreading of the polymer solution on the aqueous droplets and fast solvent exchange, and required judicious selection of the organic solvent. Simple and fast screening methods were developed for selection of a proper solvent. Ethyl acetate was chosen as one of the most desirable solvents through the screening procedures. Ethyl acetate and the dual microdispenser system were used to form microcapsules that were subsequently examined by microscopic methods to demonstrate their unique geometry.
一种利用两种互溶液体之间的界面传质的新型微囊化技术已被开发出来。该技术基于在水不溶性聚合物溶液与水溶液的界面处形成固体聚合物膜,这是由溶剂的相互传质(即溶剂交换)导致的。通过促使这种现象在水滴表面发生来制备储库型微囊。一种实施方法采用了由两个喷墨喷嘴组成的双微分配器系统。这两个喷嘴分别产生聚合物溶液滴和药物水溶液滴,它们相互对齐以使成对的液滴发生碰撞。碰撞导致聚合物溶液在水滴上扩散并同时进行溶剂交换,从而在水滴周围形成聚合物膜。聚合物膜的形成很大程度上取决于聚合物溶液在水滴上的良好铺展以及快速的溶剂交换,并且需要明智地选择有机溶剂。已开发出简单快速的筛选方法来选择合适的溶剂。通过筛选程序,乙酸乙酯被选为最理想的溶剂之一。乙酸乙酯和双微分配器系统被用于形成微囊,随后通过显微镜方法对其进行检查以展示其独特的几何形状。