A1 Refereed original research article in a scientific journal

Functional hydrophobin-coating of thermally hydrocarbonized porous silicon microparticles




AuthorsBimbo LM, Makila E, Raula J, Laaksonen T, Laaksonen P, Strommer K, Kauppinen EI, Salonen J, Linder MB, Hirvonen J, Santos HA

PublisherELSEVIER SCI LTD

Publication year2011

JournalBiomaterials

Journal name in sourceBIOMATERIALS

Journal acronymBIOMATERIALS

Number in series34

Volume32

Issue34

First page 9089

Last page9099

Number of pages11

ISSN0142-9612

DOIhttps://doi.org/10.1016/j.biomaterials.2011.08.011


Abstract
Porous silicon (PSi) particles have been widely used in modulating the dissolution rate of various types of drugs loaded within its mesopores. This material can be surface treated in order to vary its hydrophobicity and several other properties, such as drug loading degree and release rate. Hydrophobins are a family of self-assembling proteins of fungal origin which have the ability to form layers on hydrophobic materials. This type of protein layer can modify the characteristics and control the binding properties of the surface on which it assembles. In this study, we have developed a procedure to coat thermally hydrocarbonized-PSi microparticles with hydrophobin II (HFBII) in order to modify the particles' hydrophobicity and to improve their biocompatibility, while maintaining intact the advantageous drug releasing properties of the PSi. The HFBII content adsorbed onto the particles was successfully quantified by a protein assay. Drug dissolution and permeation across Caco-2 cell monolayers were also conducted, together with viability studies in AGS. Caco-2 and HT-29 cells. The characterization and coating stability assessment showed that the HFBII-coating desorbs partially from the particles' surface as the pH increases. The HFBII coating also improved the biocompatibility of the particles without compromising the enhanced drug permeation or release. (C) 2011 Elsevier Ltd. All rights reserved.



Last updated on 2024-26-11 at 23:30