Literature DB >> 26117187

Influence of humidity on the phase behavior of API/polymer formulations.

Anke Prudic1, Yuanhui Ji1, Christian Luebbert1, Gabriele Sadowski2.   

Abstract

Amorphous formulations of APIs in polymers tend to absorb water from the atmosphere. This absorption of water can induce API recrystallization, leading to reduced long-term stability during storage. In this work, the phase behavior of different formulations was investigated as a function of relative humidity. Indomethacin and naproxen were chosen as model APIs and poly(vinyl pyrrolidone) (PVP) and poly(vinyl pyrrolidone-co-vinyl acetate) (PVPVA64) as excipients. The formulations were prepared by spray drying. The water sorption in pure polymers and in formulations was measured at 25°C and at different values of relative humidity (RH=25%, 50% and 75%). Most water was absorbed in PVP-containing systems, and water sorption was decreasing with increasing API content. These trends could also be predicted in good agreement with the experimental data using the thermodynamic model PC-SAFT. Furthermore, the effect of absorbed water on API solubility in the polymer and on the glass-transition temperature of the formulations was predicted with PC-SAFT and the Gordon-Taylor equation, respectively. The absorbed water was found to significantly decrease the API solubility in the polymer as well as the glass-transition temperature of the formulation. Based on a quantitative modeling of the API/polymer phase diagrams as a function of relative humidity, appropriate API/polymer compositions can now be selected to ensure long-term stable amorphous formulations at given storage conditions.
Copyright © 2015 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Indomethacin; Naproxen; PC-SAFT; Phase behavior; Poorly-soluble pharmaceutical; Relative humidity; Thermodynamic model; Water sorption

Mesh:

Substances:

Year:  2015        PMID: 26117187     DOI: 10.1016/j.ejpb.2015.06.009

Source DB:  PubMed          Journal:  Eur J Pharm Biopharm        ISSN: 0939-6411            Impact factor:   5.571


  12 in total

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