Akhgari Abbas, Tavakol Ali
Targeted Drug Delivery Research Center, School of Pharmacy, Mashhad University of Medical Sciences, Mashhad, Iran.
Nanotechnology Research Center and School of Pharmacy, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, Iran.
Adv Pharm Bull. 2016 Jun;6(2):219-25. doi: 10.15171/apb.2016.030. Epub 2016 Jun 30.
The physicochemical properties of free films made from different mixtures of sustained release polymers were investigated, and an optimum formulation coating on drug containing pellets, based on the study of free film was evaluated.
In order to determine the effect of different variables on the permeability and swelling of films and procedure optimization, the experimental design was fulfilled based on the statistical method of a 3(3) full factorial design, and according to this method 27 formulations were prepared. The films were prepared using casting-solvent evaporation method. Water vapor permeability, the swelling and permeability of free films in both acidic and buffer media, were carried out. Then, the pellets containing theophylline were coated with the optimum formulation.
The results of this study demonstrated that an increase in the free film thickness and Eurdragit RS ratio in films lowered the water vapor transmission (WVT), the swelling and the permeability of all formulations, while an increase in the quantity of ethylcellulose, up to a specific ratio (approximately 40%), decreased the permeability and swelling. The most optimum free film formulation was made up of 60% Eudragit RS and 40% ethylcellulose.
Pellets coated with a 10% coating level of ethylcellulose and Eudragit RS (4:6) showed suitable release properties and could serve as a favorable sustained release system for theophylline.
研究由不同缓释聚合物混合物制成的游离膜的物理化学性质,并基于游离膜的研究评估含药微丸的最佳包衣配方。
为了确定不同变量对膜的渗透性和溶胀性的影响以及工艺优化,基于3(3)全因子设计的统计方法进行实验设计,并据此制备了27种配方。采用流延-溶剂蒸发法制备膜。测定了游离膜在酸性和缓冲介质中的水蒸气透过率、溶胀性和渗透性。然后,用最佳配方对含茶碱的微丸进行包衣。
本研究结果表明,游离膜厚度的增加和膜中Eurdragit RS比例的增加会降低所有配方的水蒸气透过率(WVT)、溶胀性和渗透性,而乙基纤维素含量增加到特定比例(约40%)时,渗透性和溶胀性会降低。最优化的游离膜配方由60%的Eudragit RS和40%的乙基纤维素组成。
用10%的乙基纤维素和Eudragit RS(4:6)包衣的微丸显示出合适的释放特性,可作为茶碱的良好缓释系统。