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Quantitative evaluation of polymer concentration profile during swelling of hydrophilic matrix tablets using 1H NMR and MRI methods

Authors :
Baumgartner, Saša
Lahajnar, Gojmir
Sepe, Ana
Kristl, Julijana
Source :
European Journal of Pharmaceutics & Biopharmaceutics. Feb2005, Vol. 59 Issue 2, p299-306. 8p.
Publication Year :
2005

Abstract

Abstract: Many pharmaceutical tablets are based on hydrophilic polymers, which, after exposure to water, form a gel layer around the tablet that limits the dissolution and diffusion of the drug and provides a mechanism for controlled drug release. Our aim was to determine the thickness of the swollen gel layer of matrix tablets and to develop a method for calculating the polymer concentration profile across the gel layer. MR imaging has been used to investigate the in situ swelling behaviour of cellulose ether matrix tablets and NMR spectroscopy experiments were performed on homogeneous hydrogels with known polymer concentration. The MRI results show that the thickest gel layer was observed for hydroxyethylcellulose tablets, followed by definitely thinner but almost equal gel layer for hydroxypropylcellulose and hydroxypropylmethylcellulose of both molecular weights. The water proton NMR relaxation parameters were combined with the MRI data to obtain a quantitative description of the swelling process on the basis of the concentrations and mobilities of water and polymer as functions of time and distance. The different concentration profiles observed after the same swelling time are the consequence of the different polymer characteristics. The procedure developed here could be used as a general method for calculating polymer concentration profiles on other similar polymeric systems. [Copyright &y& Elsevier]

Details

Language :
English
ISSN :
09396411
Volume :
59
Issue :
2
Database :
Academic Search Index
Journal :
European Journal of Pharmaceutics & Biopharmaceutics
Publication Type :
Academic Journal
Accession number :
16136609
Full Text :
https://doi.org/10.1016/j.ejpb.2004.08.010