Bioactive Coatings Based on Hydroxyapatite, Kanamycin, and Growth Factor for Biofilm Modulation.
Oana GherasimAlexandru-Mihai GrumezescuValentina GrumezescuIrina NeguțMarius Florin DumitrescuMiruna Silvia StanIonela Cristina VoineaAlina Maria HolbanGabriel SocolEcaterina AndronescuPublished in: Antibiotics (Basel, Switzerland) (2021)
The occurrence of opportunistic local infections and improper integration of metallic implants results in severe health conditions. Protective and tunable coatings represent an attractive and challenging selection for improving the metallic devices' biofunctional performances to restore or replace bone tissue. Composite materials based on hydroxyapatite (HAp), Kanamycin (KAN), and fibroblast growth factor 2 (FGF2) are herein proposed as multifunctional coatings for hard tissue implants. The superior cytocompatibility of the obtained composite coatings was evidenced by performing proliferation and morphological assays on osteoblast cell cultures. The addition of FGF2 proved beneficial concerning the metabolic activity, adhesion, and spreading of cells. The KAN-embedded coatings exhibited significant inhibitory effects against bacterial biofilm development for at least two days, the results being superior in the case of Gram-positive pathogens. HAp-based coatings embedded with KAN and FGF2 protein are proposed as multifunctional materials with superior osseointegration potential and the ability to reduce device-associated infections.
Keyphrases
- growth factor
- pseudomonas aeruginosa
- staphylococcus aureus
- bone regeneration
- drug delivery
- biofilm formation
- healthcare
- soft tissue
- candida albicans
- mental health
- gram negative
- cancer therapy
- escherichia coli
- stem cells
- cell proliferation
- small molecule
- cell therapy
- human health
- body composition
- cystic fibrosis
- cell cycle arrest
- tissue engineering
- mesenchymal stem cells
- lactic acid
- bone marrow
- metal organic framework
- quantum dots
- protein protein
- climate change
- health information
- antimicrobial resistance
- energy transfer