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首页> 外文期刊>Analytica chimica acta >Near infrared and Raman spectroscopy as Process Analytical Technology tools for the manufacturing of silicone-based drug reservoirs
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Near infrared and Raman spectroscopy as Process Analytical Technology tools for the manufacturing of silicone-based drug reservoirs

机译:近红外和拉曼光谱作为制造硅基药物储库的过程分析技术工具

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摘要

Using near infrared (N1R) and Raman spectroscopy as PAT tools, 3 critical quality attributes of a silicone-based drug reservoir were studied. First, the Active Pharmaceutical Ingredient (API) homogeneity in the reservoir was evaluated using Raman spectroscopy (mapping): the API distribution within the industrial drug reservoirs was found to be homogeneous while API aggregates were detected in laboratory scale samples manufactured with a non optimal mixing process. Second, the crosslinking process of the reservoirs was monitored at different temperatures with NIR spectroscopy. Conformity tests and Principal Component Analysis (PCA) were performed on the collected data to find out the relation between the temperature and the time necessary to reach the crosslinking endpoints. An agreement was found between the conformity test results and the PCA results. Compared to the conformity test method, PCA had the advantage to discriminate the heating effect from the crosslinking effect occurring together during the monitored process. Therefore the 2 approaches were found to be complementary. Third, based on the HPLC reference method, a NIR model able to quantify the API in the drug reservoir was developed and thoroughly validated. Partial Least Squares (PLS) regression on the calibration set was performed to build prediction models of which the ability to quantify accurately was tested with the external validation set. The 1.2% Root Mean Squared Error of Prediction (RMSEP) of the NIR model indicated the global accuracy of the model. The accuracy profile based on tolerance intervals was used to generate a complete validation report. The 95% tolerance interval calculated on the validation results indicated that each future result will have a relative error below ±5% with a probability of at least 95%. In conclusion, 3 critical quality attributes of silicone-based drug reservoirs were quickly and efficiently evaluated by NIR and Raman spectroscopy.
机译:使用近红外(N1R)和拉曼光谱作为PAT工具,研究了有机硅基药物储库的3个关键质量属性。首先,使用拉曼光谱法(映射)评估储库中活性药物成分(API)的均质性:发现工业药物储库中的API分布是均匀的,而在实验室规模的样品中以非最佳混合方式检测到API聚集体处理。其次,利用NIR光谱仪在不同温度下监测储层的交联过程。对收集的数据进行了一致性测试和主成分分析(PCA),以找出温度和达到交联终点所需时间之间的关系。在一致性测试结果和PCA结果之间找到了一致。与一致性测试方法相比,PCA的优势在于可以将加热效果与受监控过程中一起发生的交联效果区分开。因此,发现这两种方法是互补的。第三,基于HPLC参考方法,开发了能够量化药物储库中API的NIR模型并进行了充分验证。对校准集执行偏最小二乘(PLS)回归以建立预测模型,并使用外部验证集测试了预测模型的准确量化能力。 NIR模型的1.2%均方根预测误差(RMSEP)表明了该模型的整体准确性。基于公差间隔的精度配置文件用于生成完整的验证报告。根据验证结果计算出的95%公差区间表明,每个未来结果的相对误差都将低于±5%,且概率至少为95%。总之,通过近红外和拉曼光谱法可以快速有效地评估有机硅基药物储库的3个关键质量属性。

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