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首页> 外文期刊>Chemical and Pharmaceutical Bulletin >The Usefulness of Definitive Screening Design for a Quality by Design Approach as Demonstrated by a Pharmaceutical Study of Orally Disintegrating Tablet
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The Usefulness of Definitive Screening Design for a Quality by Design Approach as Demonstrated by a Pharmaceutical Study of Orally Disintegrating Tablet

机译:口服崩解片药物研究证明按设计方法进行质量最终筛查设计的有用性

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Definitive screening design (DSD) is a new class of small three-level experimental design that is attracting much attention as a technical tool of a quality by design (QbD) approach. The purpose of this study is to examine the usefulness of DSD for QbD through a pharmaceutical study on the preparation of ethenzamide-containing orally disintegrating tablet. Model tablets were prepared by directly compressing the mixture of the active pharmaceutical ingredient (API) and excipients. The five evaluated factors assigned to DSD were: the contents of API (X1) and lubricant (X2), and the compression force (X3) of the tableting process, the mixing time (X4), and the filling ratio of powder in the V-type mixer (X5). After tablet preparation, hardness and disintegration time were measured. The same experiments were performed by using the conventional design of experiments [ i.e. , L8 and L16 orthogonal array designs and central composite design (CCD)]. Results showed that DSD successfully clarified how various factors contribute to tablet properties. Moreover, the analysis result from DSD agreed well with those from the L8 and L16 experiments. In additional experiments, response surfaces for tablet properties were created by DSD. Compared with the response surfaces created by CCD, DSD could produce reliable response surfaces for its smaller number of experiments. We conclude that DSD is a powerful tool for implementing pharmaceutical studies including the QbD approach.
机译:最终筛查设计(DSD)是一类新型的三级小型实验设计,作为一种设计质量(QbD)方法的技术工具正引起人们的广泛关注。这项研究的目的是通过一项关于制备含乙酰胺的口腔崩解片的药物研究来检验DSD对QbD的有用性。通过直接压制活性药物成分(API)和赋形剂的混合物来制备模型片剂。分配给DSD的五个评估因素是:API(X1)和润滑剂(X2)的含量,压片过程的压缩力(X3),混合时间(X4)和V中粉末的填充率型混合器(X5)。片剂制备后,测量硬度和崩解时间。使用常规实验设计(即L8和L16正交阵列设计和中央复合设计(CCD))进行相同的实验。结果表明,DSD成功阐明了各种因素如何影响片剂的性能。此外,DSD的分析结果与L8和L16实验的结果非常吻合。在其他实验中,DSD创建了片剂特性的响应面。与CCD产生的响应面相比,DSD可以通过较少的实验产生可靠的响应面。我们得出的结论是,DSD是实施包括QbD方法在内的药物研究的强大工具。

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