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Determination of figures of merit for near-infrared and raman spectrometry by net analyte signal analysis for a 4-component solid dosage system

机译:通过4组分固体剂型系统的净分析物信号分析确定近红外和拉曼光谱的品质因数

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摘要

Process analytical technology has elevated the role of sensors in pharmaceutical manufacturing. Often the ideal technology must be selected from many suitable candidates based on limited data. Net analyte signal (NAS) theory provides an effective platform for method characterization based on multivariate figures of merit (FOM). The objective of this work was to demonstrate that these tools can be used to characterize the performance of 2 dissimilar analyzers based on different underlying spectroscopic principles for the analysis of pharmaceutical compacts. A fully balanced, 4-constituent mixture design composed of anhydrous theophylline, lactose monohydrate, microcrystalline cellulose, and starch was generated; it consisted of 29 design points. Six 13-mm tablets were produced from each mixture at 5 compaction levels and were analyzed by near-infrared and Raman spectroscopy. Partial least squares regression and NAS analyses were performed for each component, which allowed for the computation of FOM. Based on the calibration error statistics, both instruments were capable of accurately modeling all constituents. The results of this work indicate that these statistical tools are a suitable platform for comparing dissimilar analyzers and illustrate the complexity of technology selection.
机译:过程分析技术提高了传感器在制药生产中的作用。通常,必须基于有限的数据从许多合适的候选对象中选择理想的技术。净分析物信号(NAS)理论为基于多元品质因数(FOM)的方法表征提供了有效的平台。这项工作的目的是证明这些工具可用于基于不同的潜在光谱原理对2种不同的分析仪的性能进行表征,以分析紧凑的药品。生成了由无水茶碱,乳糖一水合物,微晶纤维素和淀粉组成的完全平衡的4成分混合物设计;它包含29个设计要点。从每种混合物中以5种压实水平制得6个13毫米片剂,并通过近红外和拉曼光谱分析。对每个组件进行了局部最小二乘回归和NAS分析,从而可以计算FOM。根据校准误差统计数据,这两种仪器都能够对所有成分进行精确建模。这项工作的结果表明,这些统计工具是比较异类分析仪的合适平台,并说明了技术选择的复杂性。

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