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热熔挤出:从理论到药物制剂的应用——我们现在在哪里?

Hot-Melt Extrusion: from Theory to Application in Pharmaceutical Formulation-Where Are We Now?

机构信息

Department of Product Development, Catalent Pharma Solutions, 14 Schoolhouse Road, Somerset, New Jersey, 08873, USA.

Department of Pharmaceutics and Drug Delivery, School of Pharmacy, The University of Mississippi, University, Oxford, Mississippi, 38677, USA.

出版信息

AAPS PharmSciTech. 2024 Feb 14;25(2):37. doi: 10.1208/s12249-024-02749-2.

Abstract

Hot-melt extrusion (HME) is a globally recognized, robust, effective technology that enhances the bioavailability of poorly soluble active pharmaceutical ingredients and offers an efficient continuous manufacturing process. The twin-screw extruder (TSE) offers an extremely resourceful customizable mixer that is used for continuous compounding and granulation by using different combinations of conveying elements, kneading elements (forward and reverse configuration), and distributive mixing elements. TSE is thus efficiently utilized for dry, wet, or melt granulation not only to manufacture dosage forms such as tablets, capsules, or granule-filled sachets, but also for designing novel formulations such as dry powder inhalers, drying units for granules, nanoextrusion, 3D printing, complexation, and amorphous solid dispersions. Over the past decades, combined academic and pharmaceutical industry collaborations have driven novel innovations for HME technology, which has resulted in a substantial increase in published articles and patents. This article summarizes the challenges and models for executing HME scale-up. Additionally, it covers the benefits of continuous manufacturing, process analytical technology (PAT) considerations, and regulatory requirements. In summary, this well-designed review builds upon our earlier publication, probing deeper into the potential of twin-screw extruders (TSE) for various new applications.

摘要

热熔挤出(HME)是一种全球认可的强大有效的技术,可提高难溶性活性药物成分的生物利用度,并提供高效的连续制造工艺。双螺杆挤出机(TSE)提供了一种极其灵活的可定制混合器,可通过使用不同组合的输送元件、捏合元件(正向和反向配置)以及分配混合元件来进行连续的化合物和造粒。因此,TSE 可有效地用于干、湿或熔融造粒,不仅可用于制造片剂、胶囊或颗粒填充小袋等剂型,还可用于设计新型制剂,如干粉吸入剂、颗粒干燥单元、纳米挤出、3D 打印、络合和无定形固体分散体。在过去的几十年中,学术界和制药行业的联合合作推动了 HME 技术的创新,这导致发表的文章和专利数量大幅增加。本文总结了执行 HME 放大的挑战和模型。此外,它还涵盖了连续制造、过程分析技术(PAT)考虑因素和监管要求的好处。总之,这篇精心设计的综述建立在我们之前的出版物的基础上,更深入地探讨了双螺杆挤出机(TSE)在各种新应用中的潜力。

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