Kifayat Ullah Shah, Gul Majid Khan
文献索引:ScientificWorldJournal 2012 , 842348, (2012)
全文:HTML全文
The design and fabrication of sustained/controlled release dosage forms, employing new excipients capable of extending/controlling the release of drugs from the dosage forms over prolonged periods, has worked well in achieving optimally enhanced therapeutic levels of the drugs. In this sense, the objective of this study was to investigate the suitability of selected cellulose ether derivatives for use in direct compression (DC) and as efficient drug release controlling agents. Controlled release matrix tablets of ciprofloxacin were prepared at different drug-to-polymer (D : P) ratios by direct compression using a fine particle sized ethylcellulose ether derivative (ETHOCEL Standard Premium 7FP) as rate controlling polymer. The tablets obtained were evaluated for various physico-chemical characteristics and in-vitro drug release studies were conducted in phosphate buffer (pH 7.4) using PharmaTest dissolution apparatus at constant temperature of 37 °C ± 0.1. Similarity factor f(2) was employed to the release profiles of test formulations and were compared with marketed ciprofloxacin conventional tablets. Drug release mechanism and the kinetics involved were investigated by fitting the release profile data to various kinetic models. It was found that with increasing the proportion of ethylcellulose ether derivative in the matrix, the drug release was significantly extended up to 24 hours. The tablets exhibited zero order or nearly zero order drug transport mechanism. In vivo drug release performance of the developed controlled release tablets and reference conventional tablets containing ciprofloxacin were determined in rabbit serum according to randomized two-way crossover study design using High Performance Liquid Chromatography. Several bioavailability parameters of both the test tablets and conventional tablets including C(max), T(max) and AUC(0-t) were compared which showed an optimized C(max) and T(max) (P < 0.05). A good correlation was obtained between in vitro drug release and in vivo drug absorption with correlation value (R(2) = 0.934). Relative bioavailability was found to be 93%. Reproducibility of manufacturing process and accelerated stability of the developed tablets were performed in stability chamber at 40 ± 2°C and 75 ± 5% relative humidity for a period of 6 months and were found to be stable throughout the stability period.
结构式 | 名称/CAS号 | 分子式 | 全部文献 |
---|---|---|---|
![]() |
乙基纤维素
CAS:9004-57-3 |
C23H24N6O4 |
Coated hydralazine hydrochloride beads for sustained release...
2013-09-01 [Drug Dev. Ind. Pharm. 39(9) , 1439-46, (2013)] |
Effects of molecular weight on permeability and microstructu...
2013-01-23 [Eur. J. Pharm. Sci. 48(1-2) , 240-8, (2013)] |
Mucosa-plate for direct evaluation of mucoadhesion of drug c...
2013-01-30 [Int. J. Pharm. 441(1-2) , 801-8, (2013)] |
The formulation of flurbiprofen loaded microspheres using hy...
2013-01-01 [Adv. Clin. Exp. Med. 22(2) , 177-83, (2013)] |
Formulation, in vitro drug release study and anticancer acti...
2013-01-01 [Acta Pol. Pharm. 70(1) , 123-7, (2013)] |
首页 |
期刊大全 |
MSDS查询 |
化工产品分类 |
生物活性化合物 |
关于我们 |
免责声明:知识产权问题请联系 service1@chemsrc.com
Copyright © 2024 ChemSrc All Rights Reserved