Division of Pharmaceutical Analysis, Center for Drug Evaluation and Research, Food and Drug Administration, St. Louis, Missouri 63101, USA.
J Pharm Sci. 2011 Mar;100(3):1093-101. doi: 10.1002/jps.22319. Epub 2010 Aug 27.
Dissolution testing of pharmaceutical products is an important technique used extensively for both product development and quality control, but there are many variables that can affect dissolution results. In this study, the effect of the inner shape of standard 1-L dissolution vessels on drug dissolution results was investigated. The geometric dimensions and irregularities of commercially available vessels (obtained from four different manufacturers) were examined using a three-dimensional video-based measuring machine (VMM). The same analyst, dissolution test assembly, and experimental conditions were used for dissolution testing involving 10 mg of prednisone tablets (NCDA #2) with dissolution apparatus 2 (paddle). Mechanical calibration of the dissolution apparatus was performed prior to dissolution testing with each set of vessels. Geometric characteristics varied within and among the sets of vessels, but the overall averages and standard deviations of dissolution results (six vessels) showed no statistical significant differences among the vessel sets. However, some dissolution differences were noted when comparing individual vessels. With these types of comparisons, the vessel concentricity, sphericity, and radius of sphere were found to possibly influence the amount of prednisone dissolved, but flatness of vessel flange, cylindricity, and circularity showed no effect on dissolution results. The study shows that VMM is a technique that could be used to qualify dissolution vessels.
药物产品的溶出度测试是一种广泛用于产品开发和质量控制的重要技术,但有许多因素会影响溶出度结果。本研究考察了标准 1-L 溶出容器的内部形状对药物溶出度结果的影响。使用基于三维视频的测量机(VMM)检查了市售容器(从四个不同制造商获得)的几何尺寸和不规则性。在涉及 10mg 泼尼松片剂(NCDA#2)的溶出度测试中,使用相同的分析人员、溶出度测试组件和实验条件,溶出度装置 2(桨)。在使用每套容器进行溶出度测试之前,对溶出度装置进行了机械校准。尽管容器组内和组间的几何特征存在差异,但(六个容器的)溶出结果的总体平均值和标准偏差没有显示出容器组之间的统计学显著差异。然而,当比较个别容器时,注意到了一些溶出差异。通过这些类型的比较,发现容器同心度、球度和球体半径可能会影响溶解的泼尼松的量,但容器法兰的平整度、圆柱度和圆度对溶出结果没有影响。该研究表明,VMM 是一种可用于对溶出容器进行鉴定的技术。