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迈向药物片剂的实时放行:通过近红外空间分辨光谱和 3D 微波共振技术实现 100%在线控制。

Towards real-time release of pharmaceutical tablets: 100% in-line control via near-infrared spatially resolved spectroscopy and 3D microwave resonance technology.

机构信息

Indatech Chauvin Arnoux, 4 Rue Georges Besse, 34830 Clapiers, France.

Pharma Technology, Rue Graham Bell 8, 1402 Thines (Nivelles), Belgium.

出版信息

J Pharm Biomed Anal. 2022 Feb 5;209:114491. doi: 10.1016/j.jpba.2021.114491. Epub 2021 Nov 25.

Abstract

In the scope of 100% in-line quality control and real-time release of pharmaceutical tablets, the authors present a flexible inspection module for in-line tablet analysis with integrated multipoint near-infrared (NIR) spectroscopy and 3D microwave resonance technology (3D MRT). Via an industrial case study on Diclofenac Sodium tablets, the abilities of this versatile process analytical technology (PAT) tool are presented. It is demonstrated that the combination of Diclofenac concentration prediction via NIR spectroscopy and mass prediction via 3D MRT allow to estimate the dosage of each individual tablet. Single sample repetition tests were performed on 5 tablets, measured 10 times on three different days. A high accuracy and precision of prediction was shown, with an average standard deviation below 0.5 mg. The inspection run demonstrated the added value of such inspection and sorting strategies based on the calculated dosage of individual tablets.

摘要

在 100%在线质量控制和药品片剂实时放行的范围内,作者提出了一种灵活的在线片剂分析检测模块,该模块集成了多点近红外(NIR)光谱和 3D 微波共振技术(3D MRT)。通过对双氯芬酸钠片剂的工业案例研究,展示了这种多功能过程分析技术(PAT)工具的能力。结果表明,通过 NIR 光谱预测双氯芬酸钠浓度和通过 3D MRT 预测质量,可以估计每个片剂的剂量。对 5 片样品重复进行了 10 次测量,在三天内分别在三个不同的位置进行。结果表明,预测的准确性和精密度非常高,平均标准偏差低于 0.5mg。检验运行证明了基于单个片剂计算的剂量进行检验和分类策略的附加值。

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