A Process Analytical Technology approach to near-infrared process control of pharmaceutical powder blending: Part II: Qualitative near-infrared models for prediction of blend homogeneity

被引:78
作者
El-Hagrasy, AS
Delgado-Lopez, M
Drennen, JK [1 ]
机构
[1] Duquesne Univ Ctr Pharmaceut Technol, Pittsburgh, PA 15282 USA
[2] Bristol Myers Squibb Co, Proc Anal Technol Grp, Pharmaceut Dev Ctr Excellence, Pharmaceut Res Inst, New Brunswick, NJ 08903 USA
关键词
Process Analytical Technology (PAT); near-infrared spectroscopy; mixing; blend uniformity analysis; UV/VIS spectroscopy; multivariate analysis; principal component analysis; SIMCA; global model; nonparametric pattern recognition algorithms;
D O I
10.1002/jps.20466
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
The successful implementation of near-infrared spectroscopy (NIRS) in process control of powder blending requires constructing an inclusive spectral database that reflects the anticipated voluntary or involuntary changes in processing conditions, thereby minimizing bias in prediction of blending behavior. In this study, experimental design was utilized as an efficient way of generating blend experiments conducted under varying processing conditions such as humidity, blender speed and component concentration. NIR spectral data, collected from different blending experiments, was used to build qualitative models for prediction of blend homogeneity. Two pattern recognition algorithms: Soft Independent Modeling of Class Analogies (SIMCA) and Principal Component Modified Bootstrap Error-adjusted Single-sample Technique (PC-MBEST) were evaluated for qualitative analysis of NIR blending data. Optimization of NIR models, for the two algorithms, was achieved by proper selection of spectral processing, and training set samples. The models developed were successful in predicting blend homogeneity of independent blend samples under different processing conditions. (C) 2005 Wiley-Liss, Inc. and the American Pharmacists Association.
引用
收藏
页码:407 / 421
页数:15
相关论文
共 23 条
[1]   Unit dose sampling: A tale of two thieves [J].
Berman, J ;
Schoeneman, A ;
Shelton, JT .
DRUG DEVELOPMENT AND INDUSTRIAL PHARMACY, 1996, 22 (11) :1121-1132
[2]   BLEND UNIFORMITY AND UNIT DOSE SAMPLING [J].
BERMAN, J ;
PLANCHARD, JA .
DRUG DEVELOPMENT AND INDUSTRIAL PHARMACY, 1995, 21 (11) :1257-1283
[3]  
BERMAN J, 1997, 25 PDA, V51, pS1
[4]   Quantitative in-line monitoring of powder blending by near infrared reflection spectroscopy [J].
Berntsson, O ;
Danielsson, LG ;
Lagerholm, B ;
Folestad, S .
POWDER TECHNOLOGY, 2002, 123 (2-3) :185-193
[5]   An evaluation of a unit-dose compacting sample thief and a discussion of content uniformity testing and blending validation issues [J].
Chang, RK ;
Shukla, J ;
Buehler, J .
DRUG DEVELOPMENT AND INDUSTRIAL PHARMACY, 1996, 22 (9-10) :1031-1035
[6]  
Drennen J.K., 1993, Adv Near-Infrared Meas, V1, P93
[7]  
DRENNEN JK, 1990, THESIS U KENTUCKY, P248
[8]   A Process Analytical Technology approach to near-infrared process control of pharmaceutical powder blending. Part III: Quantitative near-infrared calibration for prediction of blend homogeneity and characterization of powder mixing kinetics [J].
El-Hagrasy, AS ;
Drennen, JK .
JOURNAL OF PHARMACEUTICAL SCIENCES, 2006, 95 (02) :422-434
[9]   A Process Analytical Technology approach to near-infrared process control of pharmaceutical powder blending. Part I: D-optimal design for characterization of powder mixing and preliminary spectral data evaluation [J].
El-Hagrasy, AS ;
D'Amico, F ;
Drennen, JK .
JOURNAL OF PHARMACEUTICAL SCIENCES, 2006, 95 (02) :392-406
[10]   Near-infrared spectroscopy and imaging for the monitoring of powder blend homogeneity [J].
El-Hagrasy, AS ;
Morris, HR ;
D'Amico, F ;
Lodder, RA ;
Drennen, JK .
JOURNAL OF PHARMACEUTICAL SCIENCES, 2001, 90 (09) :1298-1307