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Prediction of Onset of Crystallization in Amorphous Pharmaceutical Systems: Phenobarbital,Nifedipine/PVP,and Phenobarbital/PVP
Authors:Vincent Caron  Chandan Bhugra  Michael J Pikal
Institution:1. Department of Pharmaceutical Sciences, School of Pharmacy, U-3092, University of Connecticut, 69 North Eagleville Road, Storrs, Connecticut 06269;2. Pharmaceutical R&D, Boehringer Ingelheim Pharmaceuticals, Inc., 900 Ridgebury Rd., P.O. Box 368, Ridgefield, Connecticut 06877
Abstract:The aim of this work is to determine if a stability testing protocol based on the correlations between crystallization onset and relaxation time above the glass transition temperature (Tg) can be used to predict the crystallization onsets in amorphous pharmaceutical systems well below their Tg. This procedure assumes that the coupling between crystallization onset and molecular mobility is the same above and below Tg. The stability testing protocol has been applied to phenobarbital, phenobarbital/polyvinylpyrrolidone (PVP) (95/5, w/w), and nifedipine/PVP (95/5, w/w). Crystallization onsets have been detected by polarized light microscopy examination of amorphous films; molecular mobility has been determined by dielectric relaxation spectroscopy above Tg and by both isothermal calorimetry and modulated differential scanning calorimetry below Tg. We find that small amounts of PVP significantly retard re-crystallization. This dramatic effect of PVP is not related to mobility, so this approach applies, at best, to extrapolation of high temperature data on a given formulation to low temperatures. Variation in molecular mobility at these concentrations of PVP is not the dominant factor in determining variation in propensity for re-crystallization from glassy systems; we suggest surface interactions between PVP and nuclei and/or small crystals slowing growth control variation in crystallization kinetics between formulations. © 2010 Wiley-Liss, Inc. and the American Pharmacists Association J Pharm Sci 99:3887-3900, 2010
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