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熔融制粒到片剂的下游处理:使用高分子粘合剂深入分析连续双螺杆熔融制粒工艺。

Downstream processing from melt granulation towards tablets: In-depth analysis of a continuous twin-screw melt granulation process using polymeric binders.

机构信息

Laboratory of Pharmaceutical Technology, Ghent University, Ghent, Belgium.

Laboratory of Pharmaceutical Process Analytical Technology, Ghent University, Ghent, Belgium.

出版信息

Eur J Pharm Biopharm. 2018 Mar;124:43-54. doi: 10.1016/j.ejpb.2017.12.005. Epub 2017 Dec 14.

Abstract

The concept of twin-screw melt granulation (TSMG) has steadily (re)-gained interest in pharmaceutical formulation development as an intermediate step during tablet manufacturing. However, to be considered as a viable processing option for solid oral dosage forms there is a need to understand all critical sources of variability which could affect this granulation technique. The purpose of this study was to provide an in-depth analysis of the continuous TSMG process in order to expose the critical process parameters (CPP) and elucidate the impact of process and formulation parameters on the critical quality attributes (CQA) of granules and tablets during continuous TSMG. A first part of the study dealt with the screening of various amorphous polymers as binder for producing high-dosed melt granules of two model drug (i.e. acetaminophen and hydrochlorothiazide). The second part of this study described a quality-by-design (QbD) approach for melt granulation of hydrochlorothiazide in order to thoroughly evaluate TSMG, milling and tableting stage of the continuous TSMG line. Using amorphous polymeric binders resulted in melt granules with high milling efficiency due to their brittle behaviour without producing excessive amounts of fines, providing high granule yields with low friability. Therefore, it makes them extremely suitable for further downstream processing. One of the most important CPP during TSMG with polymeric binders was the granulation-torque, which - in case of polymers with high T - increased during longer granulation runs to critical levels endangering the continuous process flow. However, by optimizing both screw speed and throughput or changing to polymeric binders with lower T it was possible to significantly reduce this risk. This research paper highlighted that TSMG must be considered as a viable option during formulation development of solid oral dosage forms based on the robustness of the CQA of both melt granules and tablets.

摘要

双螺杆熔融造粒(TSMG)的概念作为片剂生产过程中的中间步骤,在药物制剂开发中重新引起了人们的兴趣。然而,要将其视为一种可行的固体制剂加工选择,就需要了解所有可能影响该造粒技术的关键变异性来源。本研究的目的是对连续 TSMG 工艺进行深入分析,以揭示关键工艺参数(CPP),并阐明工艺和配方参数对连续 TSMG 中颗粒和片剂关键质量属性(CQA)的影响。研究的第一部分涉及筛选各种无定形聚合物作为粘合剂,以生产两种模型药物(即对乙酰氨基酚和氢氯噻嗪)的高剂量熔融颗粒。本研究的第二部分描述了氢氯噻嗪熔融造粒的质量源于设计(QbD)方法,以彻底评估连续 TSMG 线的熔融造粒、制粒和压片阶段。使用无定形聚合物粘合剂可生产出具有高研磨效率的熔融颗粒,因为它们具有脆性,不会产生过多的细粉,从而提供高颗粒收率和低脆性。因此,它们非常适合进一步的下游加工。在使用聚合物粘合剂进行 TSMG 时,最重要的 CPP 之一是制粒扭矩,在高 T 的聚合物的情况下,随着更长的制粒运行时间,制粒扭矩会增加到临界水平,从而危及连续的工艺流。然而,通过优化螺杆速度和吞吐量,或改用 T 较低的聚合物粘合剂,可以显著降低这种风险。本研究论文强调,基于熔融颗粒和片剂的 CQA 的稳健性,TSMG 必须被视为固体制剂开发的可行选择。

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