Drug release kinetics and front movement in matrix tablets containing diltiazem or metoprolol/ -carrageenan complexes

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Abstract

In this work we investigated the moving boundaries and the associated drug release kinetics in matrix tablets prepared with two complexes between -carrageenan and two soluble model drugs, namely, diltiazem HCl and metoprolol tartrate aiming at clarifying the role played by drug/polymer interaction on the water uptake, swelling, drug dissolution, and drug release performance of the matrix. The two studied complexes released the drug with different mechanism indicating two different drug/polymer interaction strengths. The comparison between the drug release behaviour of the complexes and the relevant physical mixtures indicates that diltiazem gave rise to a less soluble and more stable complex with carrageenan than metoprolol. The less stable metoprolol complex afforded an erodible matrix, whereas the stronger interaction between diltiazem and carrageenan resulted in a poorly soluble, slowly dissolving matrix. It was concluded that the different stability of the studied complexes affords two distinct drug delivery systems: in the case of MTP, the dissociation of the complex, as a consequence of the interaction with water, affords a classical soluble matrix type delivery system; in the case of DTZ, the dissolving/diffusing species is the complex itself because of the very strong interaction between the drug and the polymer. © 2014 Ruggero Bettini et al.

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Bettini, R., Bonferoni, M. C., Colombo, P., Zanelotti, L., & Caramella, C. (2014). Drug release kinetics and front movement in matrix tablets containing diltiazem or metoprolol/ -carrageenan complexes. BioMed Research International, 2014. https://doi.org/10.1155/2014/671532

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