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评估两种拉曼手持式分光光度计在药物固体制剂定量分析中的分析性能。

Evaluation of the analytical performances of two Raman handheld spectrophotometers for pharmaceutical solid dosage form quantitation.

机构信息

University of Liege (ULiege), CIRM, Vibra-Santé Hub, Laboratory of Pharmaceutical Analytical Chemistry, Avenue Hippocrate 15, 4000, Liege, Belgium.

University of Liege (ULiege), CIRM, Vibra-Santé Hub, Laboratory of Pharmaceutical Analytical Chemistry, Avenue Hippocrate 15, 4000, Liege, Belgium.

出版信息

Talanta. 2020 Jul 1;214:120888. doi: 10.1016/j.talanta.2020.120888. Epub 2020 Feb 29.

Abstract

This paper addresses the issue of pharmaceutical solid dosage form quantitation using handheld Raman spectrophotometers. The two spectrophotometers used are designed with different technologies: one allows getting a more representative sampling with the Orbital Raster Scanning technology and the other one allows setting acquisition parameters. The goal was to evaluate which technology could provide the best analytical results. Several parameters were optimized to get the lowest prediction error in the end. The main objective of this study was to evaluate if this kind of instrument would be able to identify substandard medicines. For that purpose, two case-study were explored. At first, a full ICH Q2 (R1) compliant validation was performed for moderate Raman scatterer active pharmaceutical ingredient (API) in a specific formulation. It was successfully validated in the ±15% relative total error acceptance limits, with a RMSEP of 0.85% (w/w). Subsequently, it was interesting to evaluate the influence of excipients when the API is a high Raman scatterer. For that purpose, a multi-formulation model was developed and successfully validated with a RMSEP of 2.98% (w/w) in the best case. These two studies showed that thanks to the optimization of acquisition parameters, Raman handheld spectrophotometers methods were validated for two different case-study and could be applied to identify substandard medicines.

摘要

本文探讨了使用手持式拉曼分光光度计对药物固体制剂定量的问题。所使用的两种分光光度计采用了不同的技术:一种采用轨道光栅扫描技术,可获得更具代表性的采样;另一种则可设置采集参数。目的是评估哪种技术可以提供最佳的分析结果。最终对多个参数进行了优化,以获得最低的预测误差。本研究的主要目的是评估这种仪器是否能够识别劣质药品。为此,探索了两个案例研究。首先,对特定配方中中等拉曼散射活性药物成分(API)进行了完整的 ICH Q2(R1)法规符合性验证。该方法在相对总误差接受限±15%内成功验证,RMSEP 为 0.85%(w/w)。随后,评估当 API 为强拉曼散射体时赋形剂的影响很有趣。为此,开发了一种多配方模型,并在最佳情况下成功验证,RMSEP 为 2.98%(w/w)。这两项研究表明,通过优化采集参数,拉曼手持式分光光度计方法已针对两种不同的案例研究进行了验证,并可用于识别劣质药品。

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