Biological and Physico-Chemical Properties of Composite Layers Based on Magnesium-Doped Hydroxyapatite in Chitosan Matrix.
Simona Liliana IconaruCarmen Steluta CiobanuGabriel PredoiKrzysztof RokoszMariana Carmen ChifiriucCoralia BleotuGeorge A StanciuRadu HristuSteinar RaaenStefania Mariana RaitaLiliana GhegoiuMonica Luminita BadeaDaniela PredoiPublished in: Micromachines (2022)
In the present study, we report the development and characterization of composite layers (by spin coating) based on magnesium-doped hydroxyapatite in a chitosan matrix, (Ca 10-x Mg x (PO 4 ) 6 (OH) 2 ; x Mg = 0, 0.08 and 0.3; HApCh, 8MgHApCh and 30MgHApCh). The MgHApCh composite layers were investigated using scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDX), and X-ray photoelectron spectroscopy (XPS) techniques. The in vitro biological evaluation included the assessment of their cytotoxicity on MG63 osteoblast-like cells and antifungal activity against Candida albicans ATCC 10231 fungal cell lines. The results of the physico-chemical characterization highlighted the obtaining of uniform and homogeneous composite layers. In addition, the biological assays demonstrated that the increase in the magnesium concentration in the samples enhanced the antifungal effect but also decreased their cytocompatibility. However, for certain optimal magnesium ion concentrations, the composite layers presented both excellent biocompatibility and antifungal properties, suggesting their promising potential for biomedical applications in both implantology and dentistry.
Keyphrases
- candida albicans
- electron microscopy
- high resolution
- biofilm formation
- solar cells
- single molecule
- drug delivery
- quantum dots
- staphylococcus aureus
- tissue engineering
- wound healing
- high throughput
- visible light
- density functional theory
- bone regeneration
- magnetic resonance imaging
- climate change
- room temperature
- cystic fibrosis
- molecular dynamics
- clinical evaluation