用于监测固体口服剂型连续生产中的控制状态的PAT。

IF 3.8 2区 化学 Q1 BIOCHEMICAL RESEARCH METHODS
Nathaly A Movilla-Meza, Dhavalkumar S Patel, Rafael Méndez, Rodolfo J Romañach
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引用次数: 0

摘要

在药品生产过程中,过程分析技术在保持控制状态方面起着重要作用。本综述讨论了不同的研究,这些研究对连续生产运行进行了长达120小时的监测。这组研究使用近红外光谱来确定药物浓度,并确认药品是否在规格范围内。通过包括准确性、精密度、线性和稳健性测试在内的验证来评估这些方法的性能。本文强调了可重复性研究的重要性。不同的采样地点已被证明对实时监测是有用的。过程分析技术和停留时间分布模型使得不合格材料的检测和从制造过程中转移成为可能。讨论了使用变差分析来改进过程分析技术的实施,因为它是区分过程变异性与采样和分析误差的唯一方法。本综述中讨论的研究有助于改进连续制造过程,提供高水平的产品和过程理解,产品质量和可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PAT for monitoring the state of control in continuous manufacturing of solid oral dosage forms.

Process analytical technology plays an important role in maintaining the state of control during pharmaceutical manufacturing processes. This review discusses different studies where continuous manufacturing runs were monitored up to 120 h. This set of studies have used near infrared spectroscopy to determine the drug concentration and confirm whether the pharmaceutical products are within specifications. The performance of these methods was evaluated through validations that included accuracy, precision, linearity, and robustness tests. The importance of the repeatability study is emphasized in this review. Different sampling locations have been shown to be useful for real-time monitoring. Process analytical technology and residence time distribution models have enabled the detection of non-conforming material and its diversion from the manufacturing process. The use of variographic analysis for improving process analytical technology implementation is discussed, since it is the only method that differentiates process variability from sampling and analytical errors. The studies discussed in this review have contributed to the improvement of the continuous manufacturing processes, providing a high level of product and process understanding, product quality, and reliability.

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来源期刊
CiteScore
8.00
自引率
4.70%
发文量
638
审稿时长
2.1 months
期刊介绍: Analytical and Bioanalytical Chemistry’s mission is the rapid publication of excellent and high-impact research articles on fundamental and applied topics of analytical and bioanalytical measurement science. Its scope is broad, and ranges from novel measurement platforms and their characterization to multidisciplinary approaches that effectively address important scientific problems. The Editors encourage submissions presenting innovative analytical research in concept, instrumentation, methods, and/or applications, including: mass spectrometry, spectroscopy, and electroanalysis; advanced separations; analytical strategies in “-omics” and imaging, bioanalysis, and sampling; miniaturized devices, medical diagnostics, sensors; analytical characterization of nano- and biomaterials; chemometrics and advanced data analysis.
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