Department of Pharmaceutics, Faculty of Pharmacy, Jamia Hamdard, New Delhi, India.
Pharm Dev Technol. 2012 Nov-Dec;17(6):687-96. doi: 10.3109/10837450.2011.572892. Epub 2011 Apr 12.
The objective of the present study was to optimize and evaluate in vitro gastroretentive performance of rifampicin microparticles. Formulations were optimized using design of experiments by employing a 4-factor, 3-level Box-Behnken statistical design. Independent variables studied were the ratio of polymers (Eudragit RSPO: ethyl cellulose), inert drug dispersing agent (talc), surfactant (sodium dodecyl sulfate) and stirring speed. The dependent variables were particle size and entrapment efficiency. Response surface plots were drawn, statistical validity of the polynomials was validated and the optimized formulation was characterized by Fourier Transform-InfraRed spectroscopy (FT-IR) and differential scanning calorimetry (DSC). Entrapment efficiency and particle size were determined. The designed microparticles have average particle size from 14.10 μm to 45.63 μm and entrapment efficiency from 38.14% to 94.81%. Optimized microparticles showed particle size and drug entrapment, 51.53 μm and 83.43%, respectively with sustained drug release behavior up to 12 h. In the present study, rifampicin microspheres were successfully prepared by a quasi-emulsion solvent diffusion technique for prolonged drug release. FT-IR and DSC studies did not reveal any significant drug interactions. The drug release was found to be controlled for more than 12 h by following zero order release pattern.
本研究的目的是优化并评价利福平微球的体外胃滞留性能。采用四因素三水平的 Box-Behnken 统计设计,通过实验设计优化了配方。研究的自变量为聚合物(Eudragit RSPO:乙基纤维素)、惰性药物分散剂(滑石粉)、表面活性剂(十二烷基硫酸钠)和搅拌速度的比例。因变量为粒径和包封效率。绘制响应面图,验证多项式的统计学有效性,并通过傅里叶变换红外光谱(FT-IR)和差示扫描量热法(DSC)对优化后的配方进行表征。测定包封效率和粒径。设计的微球平均粒径为 14.10 μm 至 45.63 μm,包封效率为 38.14%至 94.81%。优化后的微球粒径和药物包封率分别为 51.53 μm 和 83.43%,药物释放可持续 12 小时以上。在本研究中,利福平微球通过准乳液溶剂扩散技术成功制备,可延长药物释放时间。FT-IR 和 DSC 研究未发现药物有任何显著相互作用。药物释放遵循零级释放模式,超过 12 小时得到控制。