College of Pharmacy, Southwestern Oklahoma State University, Weatherford, 73096, USA.
AAPS PharmSciTech. 2011 Dec;12(4):1227-33. doi: 10.1208/s12249-011-9697-8. Epub 2011 Sep 20.
The aim of this study was to investigate the effects of a hydrophilic carrier on the solid-state and dissolution characteristics of poorly water-soluble drugs. Three poorly water-soluble drugs, ibuprofen, carbamazepine, and nifedipine, were studied in combination with hydroxypropyl cellulose (HPC), a low molecular weight hydrophilic polymer, without the use of solvent. A 1:1 drug-polymer ratio was used to evaluate the percent drug release, crystallinity, and wettability. A drug-polymer ratio of 1:4 was also used in co-grinding process to evaluate the effect of polymer levels on drug release. Dissolution studies were carried out in deionized water. Mean dissolution time (MDT) was calculated, and statistical analysis of MDTs was done following a single factor one-way analysis of variance. The dissolution rate of the drugs was enhanced by several folds by the simple process of co-grinding with HPC. X-ray diffraction studies were done to investigate the effects of physical and co-ground mix with HPC on the crystallinity of the drugs, which indicated a partial loss in crystallinity upon grinding. Differential scanning calorimetry studies were performed in order to identify possible solid-state interactions between the respective drugs and HPC. Wettability of the drugs by a 0.5% aqueous HPC solution was compared with that of water and n-hexane using the "Washburn method." Increased wetting and hydrophilization of the drugs by HPC, enlarged surface area due to particle size reduction, and a decrease in the degree of crystallinity were identified as the likely contributors to dissolution rate enhancement.
本研究旨在探讨亲水性载体对低水溶解性药物的固体状态和溶解特性的影响。研究了三种低水溶解性药物:布洛芬、卡马西平和硝苯地平,与低分子量亲水性聚合物羟丙基纤维素(HPC)结合使用,而不使用溶剂。采用 1:1 的药物-聚合物比例来评估药物释放百分比、结晶度和润湿性。还在共研磨过程中使用 1:4 的药物-聚合物比例来评估聚合物水平对药物释放的影响。在去离子水中进行溶解研究。计算平均溶解时间(MDT),并采用单因素单向方差分析对 MDT 进行统计分析。通过与 HPC 简单的共研磨过程,药物的溶解速率提高了数倍。X 射线衍射研究用于研究物理和与 HPC 共研磨对药物结晶度的影响,结果表明研磨后结晶度部分丧失。进行差示扫描量热法研究以确定各自药物与 HPC 之间可能存在的固态相互作用。采用“Washburn 法”比较了药物在 0.5%水性 HPC 溶液中的润湿性与水和正己烷的润湿性。通过 HPC 增加药物的润湿性和亲水化、由于粒径减小而增大的表面积以及结晶度的降低被认为是提高溶解速率的可能因素。