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Original Articles

Sustained Release of Ibuprofen from Polyelectrolyte Encapsulated Mesoporous Carriers

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Pages 892-902 | Received 17 Apr 2008, Accepted 23 Apr 2008, Published online: 27 May 2009
 

Abstract

Polyelectrolyte multilayers are receiving much attention due to their insolubility and due to structural responses induced in them by changes in solution properties such as, for example, temperature, pH or ionic strength. These characteristics make polyelectrolyte multilayers highly interesting in encapsulation technology and controlled delivery applications. However, producing dry, biocompatible formulations for storage of low molecular weight substances poses a challenge. One possibility is to make use of a well-defined mesoporous inorganic carrier material as host for the model substance (in our case ibuprofen). Control over release properties are enabled by polyelectrolyte encapsulation of the inorganic carrier. We built such multilayers through consecutive deposition of PAH and PSS on top of a first layer ofr PEI. These layers were adsorbed either in presence or absent of ibuprofen. The influence of long time storage, 2 years, of the samples was also investigated. The polyelectrolyte multilayer structure was investigated in detail by Dual Polarization Interferometry (DPI), and we use these data to interpret the measured release profiles.

Dr. Birgit D. Brander at YKI is acknowledged for running the raman experiments. The Swedish Foundation of Strategic Research is acknowledged for funding.

Notes

Part of the special issue, Surface and Colloid Chemistry Without Borders: An International Festschrift for Professor Per Stenius on the Occasion of His 70th Birthday.

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