a Research Center of Chinese Medicine Information Engineering , Beijing University of Chinese Medicine , Beijing , PR China.
b Beijing Key Laboratory of Chinese Medicine Manufacturing Process Control and Quality Evaluation , Beijing , PR China.
Drug Dev Ind Pharm. 2018 Nov;44(11):1733-1743. doi: 10.1080/03639045.2018.1492608. Epub 2018 Sep 3.
The purpose of this study was to describe the raw material variability that influenced the in-vitro dissolution behavior of high drug-load sustained-release matrix tablet and to ensure the consistent quality of the final product. The Panax notoginseng saponins (PNS) - hydroxypropyl methylcellulose - anhydrous lactose - magnesium stearate (57:20:23:0.5%, w/w) was used as the model formulation. PNS extract powders with lot-to-lot and source-to-source differences were collected to cover the common cause variations and their physicochemical properties were characterized by the chromatographic fingerprints and the SeDeM expert system. It was found that the release behavior of active pharmaceutical ingredients (APIs) in PNS from different batches exhibited considerable variations. Latent variable modeling results demonstrated that the physical properties of raw materials played major roles in predicting the drug dissolution. PNS extracts with high specific surface area, the width of particle size distribution and hygroscopicity or low moisture content led to an increase in drug release. In order to perform efficient pass/fail judgments for incoming new materials, multivariate specifications of critical material attributes (CMAs) were established and the multivariate design space in line with the quality by design (QbD) principles was explored to achieve the release target.
本研究旨在描述影响高载药量缓控释骨架片体外溶出行为的原料药变异性,以确保最终产品的质量一致性。采用三七总皂苷(PNS)-羟丙甲纤维素-无水乳糖-硬脂酸镁(57:20:23:0.5%,w/w)为模型配方。收集了批间和来源间存在差异的 PNS 提取物粉末,以涵盖常见原因变异,并通过色谱指纹图谱和 SeDeM 专家系统对其理化性质进行了表征。结果发现,不同批次 PNS 中活性药物成分(API)的释放行为表现出相当大的差异。潜在变量建模结果表明,原材料的物理性质在预测药物溶出度方面起着重要作用。比表面积高、粒径分布宽度大、吸湿性或水分含量低的 PNS 提取物会导致药物释放增加。为了对新来料进行高效的合格/不合格判断,建立了关键物料属性(CMA)的多元规格,并探索了符合质量源于设计(QbD)原则的多元设计空间,以实现释放目标。