微粒
致电离效应
壳聚糖
化学
差示扫描量热法
控制释放
剂型
结晶度
色谱法
化学工程
材料科学
纳米技术
有机化学
生物化学
结晶学
NMDA受体
热力学
物理
工程类
受体
作者
Nazik A Elgindy,Kadria A. Elkhodairy,Abdallah Molokhia,Ahmed O. Elzoghby
标识
DOI:10.1016/j.ijpharm.2011.03.047
摘要
Despite its short half-life, no controlled release formula of flutamide (FLT) was prepared until now. Therefore, 15 chitosan microparticle formulations were prepared for oral prolonged delivery of FLT via ionotropic gelation and emulsification-ionic gelation techniques then characterized for various parameters. FLT was successfully encapsulated into microparticles with loading capacity up to 39.98% and entrapment efficiency up to 97.16% using emulsification technique. Differential scanning calorimetry indicated that FLT was retained in a crystalline form in the microparticles prepared using ionotropic gelation whereas its crystallinity was significantly reduced using emulsification technique. Relationship between formulation variables and release behavior of FLT was explored. Chitosan microparticles prepared by ionotropic gelation showed a slower FLT release with a T25% of 7.9 h whereas microparticles prepared by emulsification-ionic gelation under the same conditions showed a quick release profile with a T25% of 0.3 h. Using 3 different hydrophilic carriers, immediate release FLT dispersions were prepared via lyophilization of monophase solution technique then combined with prolonged release chitosan microparticles to develop 6 controlled release formulae of FLT. A wide range of FLT release profiles were generated providing a prolonged release of drug after a suitable initial burst release.
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