Department of Pharmacy, Stamford University Bangladesh Dhaka, Bangladesh.
Front Pharmacol. 2014 Jun 11;5:137. doi: 10.3389/fphar.2014.00137. eCollection 2014.
In recent years natural polymers have been widely used because of their effectiveness and availability over synthetic polymers. In this present investigation matrix tablets of Metformin hydrochloride were formulated using Water hyacinth powder and its rate retardant activity was studied. Tablets were prepared using wet granulation method with 8% starch as granulating agent and 5, 10, 15, 20, 25 and 30% of Water hyacinth powder to the drug. In preformulation study, angle of repose, Carr's Index and Hausner ratio were calculated. Fourier Transform Infrared Spectroscopy (FTIR), Differential Scanning Calorimetry (DSC), and Scanning Electron Microscopy (SEM) studies were performed and no interactions were found between drug and excipients. Weight variation, friability, hardness, thickness, diameter, and in vitro release study were performed with the prepared matrix tablets. Dissolution studies were conducted using USP type II apparatus at a speed of 100 rpm at 37°C ± 0.5 temperature for 8 h. Though all the formulations comply with both BP and USP requirements, formulation F-1 (5% of Water hyacinth) was the best fitted formula. The drug release patterns were explained in different kinetic models such as Zero order, First order, Higuchi, Hixson Crowell, and Korsmeyer-Peppas equations. The current investigation implies that Water hyacinth has the potential to be used as a rate-retarding agent in sustained release drug formulations.
近年来,由于天然聚合物的有效性和可用性超过了合成聚合物,因此被广泛应用。在本研究中,使用水葫芦粉末制备了盐酸二甲双胍的基质片剂,并研究了其缓释活性。采用湿法制粒法,以 8%的淀粉作为制粒剂,以 5%、10%、15%、20%、25%和 30%的水葫芦粉末与药物混合,制备片剂。在预配方研究中,计算了休止角、卡尔指数和哈纳斯比。进行了傅里叶变换红外光谱(FTIR)、差示扫描量热法(DSC)和扫描电子显微镜(SEM)研究,未发现药物与赋形剂之间存在相互作用。对制备的基质片剂进行了重量变化、脆碎度、硬度、厚度、直径和体外释放研究。采用 USP Ⅱ型装置在 37°C±0.5温度下以 100rpm 的速度进行溶解研究,持续 8 小时。虽然所有配方均符合 BP 和 USP 的要求,但配方 F-1(5%的水葫芦)是最佳拟合配方。药物释放模式用不同的动力学模型(如零级、一级、Higuchi、Hixson Crowell 和 Korsmeyer-Peppas 方程)进行了解释。本研究表明,水葫芦具有作为缓控释药物制剂的控释剂的潜力。