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Drop-on-Demand System for Manufacturing of Melt-based Solid Oral Dosage: Effect of Critical Process Parameters on Product Quality

机译:用于制造基于熔体的固体口服剂量的按需滴注系统:关键工艺参数对产品质量的影响

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摘要

The features of a drop-on-demand-based system developed for the manufacture of melt-based pharmaceuticals have been previously reported. In this paper, a supervisory control system, which is designed to ensure reproducible production of high quality of melt-based solid oral dosages, is presented. This control system enables the production of individual dosage forms with the desired critical quality attributes: amount of active ingredient and drug morphology by monitoring and controlling critical process parameters, such as drop size and product and process temperatures. The effects of these process parameters on the final product quality are investigated, and the properties of the produced dosage forms characterized using various techniques, such as Raman spectroscopy, optical microscopy, and dissolution testing. A crystallization temperature control strategy, including controlled temperature cycles, is presented to tailor the crystallization behavior of drug deposits and to achieve consistent drug morphology. This control strategy can be used to achieve the desired bioavailability of the drug by mitigating variations in the dissolution profiles. The supervisor control strategy enables the application of the drop-on-demand system to the production of individualized dosage required for personalized drug regimens.
机译:先前已经报道了开发用于制造基于熔融的药物的基于按需滴落的系统的特征。在本文中,提出了一种监控系统,旨在确保可重复生产高质量的基于熔融的固体口服剂。该控制系统能够通过监视和控制关键的工艺参数(如液滴大小,产品和工艺温度)来生产具有所需关键质量属性的独立剂型:活性成分的数量和药物形态。研究了这些工艺参数对最终产品质量的影响,并使用各种技术(例如拉曼光谱,光学显微镜和溶出度测试)表征了所生产剂型的特性。提出了包括控制温度循环在内的结晶温度控制策略,以调整药物沉积物的结晶行为并实现一致的药物形态。该控制策略可用于通过减轻溶出曲线的变化来实现所需的药物生物利用度。监督者控制策略使按需滴注系统可以应用于个性化药物方案所需的个性化剂量生产。

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