Implementation of a fully integrated continuous manufacturing line for direct compression and coating at a commercial pharmaceutical facility – Part 1: Operational considerations and control strategy

过程分析技术 工艺工程 设计质量 医药制造业 灵活性(工程) 计算机科学 质量保证 过程(计算) 质量(理念) 吞吐量 关键质量属性 过程控制 可靠性工程 批量生产 制造工程 在制品 工程类 运营管理 电信 生物信息学 哲学 统计 外部质量评估 数学 认识论 生物 无线 下游(制造业) 操作系统
作者
Stephen L. Conway,Juan G. Rosas,Paul Overton,Neil Tugby,Phillip Cryan,Frank Witulski,Samantha Hurley,Laura Wareham,Anthony Tantuccio,Manoharan Ramasamy,Anita Lalloo,Mason Gibbs,Robert Meyer
出处
期刊:International Journal of Pharmaceutics [Elsevier BV]
卷期号:642: 122820-122820 被引量:4
标识
DOI:10.1016/j.ijpharm.2023.122820
摘要

We implement a fully integrated continuous manufacturing (CM) line for direct compression and coating of a pharmaceutical oral solid dosage form in a commercial production facility. In this first paper of a two-part series, we describe process design and operational choices made to introduce CM using infrastructure originally intended for batch operations. Consistent with lean manufacturing principles, we select equipment, facilities, and novel process analytical technologies that meet production agility goals alongside an existing batch process. Choices address process risks, are aligned with existing quality systems, yet allow exploration of CM agility benefits in commercial operations. We outline how operating procedures, control schemes, and release criteria from the historical batch process are adapted for CM with modified lot and yield definitions based on patient demand. We devise a hierarchy of complementary controls including real-time process interrogation, predictive residence time distribution models of tablet concentration, real-time product release testing using automated tablet NIR spectroscopy, active rejection and diversion, and throughput-based sampling. Results from lots produced under normal operational conditions confirm our CM process provides assurance of product quality. Qualification strategies to achieve lot size flexibility aims are also described. Finally, we consider CM extensions to formulations with differing risk profiles. Further analysis of results for lots produced under normal operational conditions is provided in part 2 (Rosas et al., 2023).
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