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A Novel Approach to Establishing the Design Space for the Oral Formulation Manufacturing Process

机译:建立口服制剂生产过程设计空间的新方法

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A novel approach to establishing the design space for the oral formulation manufacturing process was investigated. A response surface method incorporating multivariate spline interpolation was applied to overcome the nonlinear problem, which is always problematic in pharmaceutical development studies, and a bootstrap resampling technique, polynomial approximation technique, and 95% confidence intervals based on a nonparametric approach were applied to estimate the reliability of the established design space derived from the nonlinear response surface model. The critical quality attributes (CQAs) of intermediate material rather than the critical process parameters (CPPs) were chosen as the causal factors for the response variables, which were CQAs of the final product to avoid scale-gap and equipment-gap. This enabled the effective use of data sets accumulated during all pharmaceutical development studies. It was confirmed that a conservative border as well as an optimistic border of the design space for practical use was obtained considering the variability of the border of the design spaces on nonlinear response surfaces. Furthermore, the nonlinear response surface model using CQAs of intermediate material derived from data sets of a laboratory scale study and pilot scale studies could predict the CQA of the final product (2.5?h dissolution of commercial-scale study) with high accuracy. Consequently, the proposed novel approach overcame all of the difficulties for the manufacturing process development of oral formulations and this is the first study to demonstrate the effectiveness of the design space using CQA of intermediate material for the oral formulation manufacturing process.
机译:研究了建立口服制剂生产过程设计空间的新方法。应用响应曲面方法结合多元样条插值法来克服非线性问题,该问题在药物开发研究中总是存在问题,并且采用了自举重采样技术,多项式逼近技术和基于非参数方法的95%置信区间来估计从非线性响应面模型得出的已建立设计空间的可靠性。选择中间材料的关键质量属性(CQA)而不是关键过程参数(CPPs)作为响应变量的因果因子,这些因子是最终产品的CQA,以避免出现规模差距和设备差距。这使所有药物开发研究期间积累的数据集得以有效利用。已经确认,考虑到非线性响应面上的设计空间的边界的可变性,可获得实用的设计空间的保守边界和乐观边界。此外,从实验室规模研究和中试规模研究的数据集获得的使用中间材料CQA的非线性响应表面模型可以高精度地预测最终产品的CQA(商业规模研究的2.5?h溶出度)。因此,所提出的新颖方法克服了口服制剂生产过程开发中的所有困难,这是首次证明使用CQA的中间材料在口服制剂生产过程中设计空间的有效性。

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