6533b86dfe1ef96bd12c97b9

RESEARCH PRODUCT

A POLYCARBOXYLIC/AMINO FUNCTIONALIZED HYALURONIC ACID DERIVATIVE FOR THE PRODUCTION OF pH SENSIBLE HYDROGELS IN THE PREVENTION OF BACTERIAL ADHESION ON BIOMEDICAL SURFACES

Gaetano GiammonaGiovanna PitarresiDomenico SchillaciAntonella Bavuso VolpeFabio Salvatore PalumboMaria Grazia Cusimano

subject

Staphylococcus aureushydrogels HYALURONIC ACID BACTERIAL ADHESIONPharmaceutical Sciencemedicine.disease_causeSettore BIO/19 - Microbiologia GeneraleBacterial Adhesionchemistry.chemical_compoundVancomycinHyaluronic acidmedicineCopolymerOrganic chemistryHyaluronic AcidTitaniumAtom-transfer radical-polymerizationtechnology industry and agricultureHydrogelsSerum Albumin BovineAdhesionHydrogen-Ion ConcentrationEthylenediaminesQuaternary Ammonium CompoundsDrug LiberationchemistryStaphylococcus aureusSettore CHIM/09 - Farmaceutico Tecnologico ApplicativoSelf-healing hydrogelsMicroscopy Electron ScanningVancomycinMethacrylatesPropionatesDerivative (chemistry)medicine.drugNuclear chemistry

description

A graft copolymer derivative of hyaluronic acid bearing pendant amino and short polymethacrylate portions (HA-EDA-BMP-MANa) has been employed for the production of a pH sensible vancomycin releasing hydrogel and studied in vitro to test its potential anti adhesive property against Staphylococcus aureus colonization. The copolymer obtained through atom transfer radical polymerization bears chargeable (carboxyl and amino groups) portions and it could be formulated as a hydrogel at a concentration of 10% w/v. The HA-EDA-BMP-MANa hydrogels, produced at three different pH values (5, 6 and 7, respectively), were formulated with or without the addition of vancomycin (2% w/v). The vancomycin release profiles were detected and related to the starting hydrogel pH values, demonstrating that the systems were able to sustain the release of drug for more than 48 h. S. aureus adhesion tests were performed on glass culture plates and hydroxyapatite doped titanium surfaces, comparing the performances of HA-EDA-BMP-MANa hydrogel formulations (obtained with and without vancomycin) with similar formulations obtained using unmodified hyaluronic acid. The non fouling property of a selected HA-EDA-BMP-MANa hydrogel (without vancomycin) was also assayed with a BSA adsorption test. We found that the HA-EDA-BMP-MANa hydrogel even without vancomycin prevented bacterial adhesion on investigated surfaces.

10.1016/j.ijpharm.2014.11.015http://hdl.handle.net/10447/148502