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Osmotic pumping release from ethyl-hydroxypropyl-cellulose-coated pellets: A new mechanistic model

delete2010-02-01
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PRE
AI
M
Mariagrazia Marucci *
G
Gert Ragnarsson
N
Nilsson, Bernt
A
Anders Axelsson
DOI:10.1016/j.jconrel.2009.10.009delete
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Abstract

Abstract

En 中文
A new mechanistic model of drug release by osmotic pumping and diffusion from pellets coated with a semipermeable film developing pores created by the leaching of water-soluble compounds initially present in the coating, has been developed. The model describes dynamically all the main processes occurring during release, i.e. the inflow of solvent driven by the difference in osmotic pressure across the coating film, dissolution of the drug, swelling of the pellet due to mass accumulation, the build-up of hydrostatic pressure inside the pellet, and the Outflow of the dissolved drug through the pores. The model was validated by comparison with the release profile of single metoprolol succinate pellets coated with a film made of ethyl cellulose and hydroxypropyl cellulose (80:20). This system was chosen as it was shown that the release mechanism was Osmotic Pumping, and that the release occurred through small pores created in the coating by hydroxypropyl cellulose leaching. Insight into the release process was obtained via dose release experiments performed at different osmotic pressures of the release medium, single-pellet release experiments, and a study of the coating before and after immersion in the release medium using scanning electron microscopy. The good agreement found between the predicted release and the experimental data confirmed the validity of the model and its prediction capacity. The model can be used to calculate important variables, e.g. the drug concentration profile in a pore and the pressure build-up inside the pellet. (C) 2009 Elsevier B.V. All rights reserved.
Keywords:
Modelling
Release mechanism
Pellet
Osmotic pumping
Multiple-unit release
Coating

Journal

Journal of Controlled Release cover
Journal of Controlled Release
IF:
11.5
Papers:
1.5W
Citations:
7.4W

Organization

Medical Products Agency cover
Medical Products Agency
Scholars:
302
Papers: 207
Citations: 284
L
lund university
Scholars:
4.1W
Papers: 3.9W
Citations: 54
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