Department of Pharmaceutics, Gayatri College of Pharmacy, Sambalpur, Orissa, India.
Department of Pharmaceutical Sciences, Dibrugarh University, Dibrugarh, Assam, India.
Carbohydr Polym. 2014 Apr 15;104:238-45. doi: 10.1016/j.carbpol.2014.01.037. Epub 2014 Jan 21.
The objective of the study was to develop controlled release tablets of nateglinide, a meglitinide derivative anti-diabetic drug, considering theoretical release profile and response surface methodology (RSM). 3(2) factorial design was utilized to optimize concentration of hydroxylpropylmethylcellulose (HPMC) K15M and K100M to obtain the desired responses (drug release at one and six hours). Theoretical release profile of drug for controlled release formulation was calculated and considered as reference for the determination of similarity factor (f2) and desimilarity factor (f1). RSM, f2 and f1 were used to select the optimum formulation. Formulation containing HPMC K15M (5%) and HPMC K100M (15%) was found optimum with desired responses with f2=86.05 and drug release profile followed zero order kinetics. Excipients used were compatible with drug, confirmed initially through DSC and IST study. The optimization of experiments was validated and optimum formulation was passed the stability study.
本研究旨在通过理论释放曲线和响应面法(RSM)开发那格列奈(一种新型抗糖尿病药物)的控释片剂。采用 3(2)因子设计来优化羟丙甲纤维素(HPMC)K15M 和 K100M 的浓度,以获得所需的响应(一小时和六小时的药物释放)。计算了控释制剂中药物的理论释放曲线,并将其作为确定相似因子(f2)和差异因子(f1)的参考。RSM、f2 和 f1 用于选择最佳配方。含有 HPMC K15M(5%)和 HPMC K100M(15%)的配方是最佳选择,具有所需的响应,f2=86.05,药物释放曲线遵循零级动力学。最初通过 DSC 和 IST 研究证实,所用辅料与药物相容。实验优化得到验证,最佳配方通过了稳定性研究。