Bodmeier R, Chen H, Davidson R G, Hardee G E
College of Pharmacy, University of Texas at Austin 78712, USA.
Pharm Dev Technol. 1997 Nov;2(4):323-34. doi: 10.3109/10837459709022631.
Polymeric microparticles containing two ceftiofur salts as antimicrobial agents for intramammary application in dry cows were prepared by modified o/w-solvent evaporation methods (dispersion or cosolvent method) or by a w/o/w-multiple emulsion solvent evaporation method. The microspheres were characterized with respect to drug loading, drug release, and morphological properties. The three methods resulted in high encapsulation efficiencies. The choice of organic solvent/solvent mixture strongly affected the structure of the microparticles; both matrix and reservoir-type structures with different porosities were obtained. Scaling up to larger batch sizes resulted in microspheres with a faster drug release. The addition of water-miscible cosolvents to the water-immiscible polymer solution allowed the preparation of microparticles from a drug solution rather than a drug dispersion. Microparticles prepared by the cosolvent method could be separated after shorter time intervals from the aqueous phase; the microspheres had a denser matrix with finely dispersed drug crystals and a slower drug release when compared with microspheres prepared by the dispersion method, which had a more porous structure with larger embedded drug crystals. The cosolvent and dispersion methods present a simple alternative to the w/o/w-solvent evaporation method for the encapsulation of water-soluble drugs with an external water phase.
采用改良的水包油溶剂蒸发法(分散法或共溶剂法)或水包油包水多重乳液溶剂蒸发法,制备了含有两种头孢噻呋盐作为抗菌剂的聚合物微粒,用于干奶牛的乳房内给药。对微球进行了载药量、药物释放和形态学特性表征。这三种方法均具有较高的包封率。有机溶剂/溶剂混合物的选择对微粒结构有很大影响;获得了具有不同孔隙率的基质型和储库型结构。扩大批量生产得到的微球药物释放更快。向与水不混溶的聚合物溶液中加入与水混溶的共溶剂,可以从药物溶液而非药物分散体制备微粒。共溶剂法制备的微粒在较短时间间隔后可从水相中分离出来;与分散法制备的微球相比,这些微球具有更致密的基质,药物晶体分散更细,药物释放更慢,分散法制备的微球具有更多孔的结构,包埋的药物晶体更大。对于在外部水相中包封水溶性药物,共溶剂法和分散法是水包油包水溶剂蒸发法的简单替代方法。