Wu Yunqi, Fassihi Reza
Product Development, Scolr Pharma, Inc., Bellevue, Washington, USA.
Int J Pharm. 2005 Feb 16;290(1-2):1-13. doi: 10.1016/j.ijpharm.2004.10.015. Epub 2005 Jan 12.
Metronidazole, tetracycline HCl and famotidine are commonly used for the treatment of Helicobacter pylori-associated peptic ulcer. In this paper, stabilities of these drugs and their combinations in solid and liquid states were studied as part of preformulation in the development of a combination drug delivery system. Solubility studies of metronidazole and tetracycline HCl were investigated, which indicated that both metronidazole and tetracycline HCl have high solubilities at and around pH 2.0. Metronidazole is relatively stable with little degradation in liquid phase. Tetracycline HCl in the dry state is stable when stored at room temperature regardless of exposure to light or humidity in the range of 20-65%. Enhanced temperature associated humidity effect was responsible for the instabilities of tetracycline HCl and famotidine to different extents. Elevated temperature accelerated the degradation of all the drugs in liquid phase but light exposure was not a factor for the degradation. The degradation processes of tetracycline HCl and famotidine were highly dependent on the pH of the solution, and relatively stable profiles were achieved at pH 4.0. No potential incompatibility between the drugs under storage conditions was observed in the development of a new multi-drug delivery tablet.
甲硝唑、盐酸四环素和法莫替丁常用于治疗幽门螺杆菌相关性消化性溃疡。本文研究了这些药物及其组合在固态和液态下的稳定性,作为复方药物递送系统开发中处方前研究的一部分。对甲硝唑和盐酸四环素的溶解度进行了研究,结果表明甲硝唑和盐酸四环素在pH 2.0及附近具有高溶解度。甲硝唑在液相中相对稳定,降解较少。盐酸四环素在干燥状态下,室温储存时,无论在20 - 65%的光照或湿度条件下均稳定。温度升高相关的湿度效应在不同程度上导致了盐酸四环素和法莫替丁的不稳定性。温度升高加速了所有药物在液相中的降解,但光照不是降解因素。盐酸四环素和法莫替丁的降解过程高度依赖于溶液的pH值,在pH 4.0时获得相对稳定的图谱。在新型多药递送片剂的开发中,未观察到储存条件下药物之间存在潜在的不相容性。