Skip to Content
Merck
  • Mechanistic modelling of drug release from a polymer matrix using magnetic resonance microimaging.

Mechanistic modelling of drug release from a polymer matrix using magnetic resonance microimaging.

European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences (2013-01-10)
Erik Kaunisto, Farhad Tajarobi, Susanna Abrahmsen-Alami, Anette Larsson, Bernt Nilsson, Anders Axelsson
ABSTRACT

In this paper a new model describing drug release from a polymer matrix tablet is presented. The utilization of the model is described as a two step process where, initially, polymer parameters are obtained from a previously published pure polymer dissolution model. The results are then combined with drug parameters obtained from literature data in the new model to predict solvent and drug concentration profiles and polymer and drug release profiles. The modelling approach was applied to the case of a HPMC matrix highly loaded with mannitol (model drug). The results showed that the drug release rate can be successfully predicted, using the suggested modelling approach. However, the model was not able to accurately predict the polymer release profile, possibly due to the sparse amount of usable pure polymer dissolution data. In addition to the case study, a sensitivity analysis of model parameters relevant to drug release was performed. The analysis revealed important information that can be useful in the drug formulation process.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
(Hydroxypropyl)methyl cellulose, average Mn ~90,000
Sigma-Aldrich
Methyl cellulose, meets USP testing specifications, 26.0-33.0% (methoxyl group, on Dry Basis), viscosity: 400 cP
Sigma-Aldrich
(Hydroxypropyl)methyl cellulose, viscosity 2,600-5,600 cP, 2 % in H2O(20 °C)(lit.)
Sigma-Aldrich
Methyl cellulose, viscosity: 15 cP
Sigma-Aldrich
Methyl cellulose, 27.5-31.5% (Methoxyl content), viscosity: 400 cP