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Application of Quality by Design to the Process Development of Botanical Drug Products: A Case Study

机译:通过设计将质量应用于植物药产品工艺开发的案例研究

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摘要

This paper was designed to assess the value of quality by design (QbD) to improve the manufacturing process understanding of botanical drug products. Ethanol precipitation, a widely used unit operation in the manufacture of botanical drug products was employed to illustrate the use of QbD, taking the process of danshen (the dry root of Salvia miltiorrhiza Bunge) as an example. The recovery of four active pharmaceutical ingredients (APIs) and the removal of saccharides were used to represent the performance of ethanol precipitation. Potentially critical variables, including density of concentrate, ethanol consumption, and settling temperature were identified through risk assessment methods. Design of experiments (DOE) was used to evaluate the effects of the potentially critical factors on the performance of ethanol precipitation. It was observed that higher density of concentrate leads to higher removal of saccharides, but results in lower recovery of APIs. With the rise of ethanol consumption, the recovery of different APIs behaves in different ways. A potential design space of ethanol precipitation operation was established through DOE studies. The results in this work facilitate the enhanced understanding of the relationships between multiple factors (material attributes and process parameters) and the performance of ethanol precipitation. This case study demonstrated that QbD is a powerful tool to develop manufacturing process of botanical drug products.
机译:本文旨在通过设计(QbD)评估质量价值,以提高对植物药产品制造过程的了解。乙醇沉淀是植物药生产中广泛使用的单元操作,以丹参(丹参的干根)为例,说明了QbD的使用。四种活性药物成分(API)的回收和糖的去除被用来代表乙醇沉淀的性能。通过风险评估方法确定了潜在的关键变量,包括浓缩液密度,乙醇消耗量和沉降温度。实验设计(DOE)用于评估潜在关键因素对乙醇沉淀性能的影响。观察到较高的浓缩物密度导致较高的糖类去除率,但导致API的回收率较低。随着乙醇消耗量的增加,不同API的回收表现出不同的方式。通过DOE研究建立了乙醇沉淀操作的潜在设计空间。这项工作的结果有助于加深对多个因素(材料属性和工艺参数)与乙醇沉淀性能之间关系的理解。该案例研究表明,QbD是开发植物药产品制造工艺的强大工具。

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