A very small number of biomaterials investigated for bone regeneration was reported as able to prevent the oxidative stress. In this study beads based on alginate hydrogel and mesoporous glasses (MG) containing different amounts of cerium oxides (Ce3+/Ce4+) exhibiting antioxidant properties were investigated as a good approach to mimic the action of antioxidant enzymes in our organism. The effect of cerium contents on the bioactivity and biocompatibility of beads were investigated. Moreover, the potential capability of Ce-containing MG to prevent the oxidative stress caused by the activity of reactive oxygen species (ROS) was here investigated for the first time. The increment of cerium oxide from 1.2, to 3.6 and 5.3 mol-% dec...
In recent years, mesoporous bioactive glass nanoparticles (MBGNPs) have generated great attention in...
Cancer is a leading cause of death worldwide, its genesis and progression are caused by homeostatic ...
The results of preparation, characterization and in vitro bioactivity evaluation of phosphosilicate ...
A very small number of biomaterials investigated for bone regeneration were reported as able to prev...
In this work, we investigate the ability of mesoporous bioactive glasses (MBGs) modified with cerium...
: In order to identify new bioactive glasses (BGs) with optimal antioxidant properties, we carried o...
The cytocompatibility of potential bioactive cerium-containing (Ce 3+ /Ce 4+ ) glasses is here inves...
The ability of Ce-containing bioactive glasses to inhibit oxidative stress in terms of reduction of ...
Finding innovative solutions to improve the lives of people affected by trauma, bone disease, or agi...
The ability of Ce-containing bioactive glasses, based on 45S5 Bioglass®, to inhibit oxidative stres...
The cytocompatibility of potential bioactive cerium-containing (Ce3+/Ce4+) glasses is here investiga...
Bioactive glasses (BGs) for biomedical applications are doped with therapeutic inorganic ions (TIIs)...
(1) Background: a cell evaluation focused to verify the self-regenerative antioxidant activity is pe...
Mesoporous bioactive glass scaffolds (MBG-Scs), based on 80% SiO 2-15% CaO-5% P 2O 5 (in mol.%) meso...
(1) Background: valuation of the bioactivity and cytocompatibility of P2O5-free and CeO2 doped glass...
In recent years, mesoporous bioactive glass nanoparticles (MBGNPs) have generated great attention in...
Cancer is a leading cause of death worldwide, its genesis and progression are caused by homeostatic ...
The results of preparation, characterization and in vitro bioactivity evaluation of phosphosilicate ...
A very small number of biomaterials investigated for bone regeneration were reported as able to prev...
In this work, we investigate the ability of mesoporous bioactive glasses (MBGs) modified with cerium...
: In order to identify new bioactive glasses (BGs) with optimal antioxidant properties, we carried o...
The cytocompatibility of potential bioactive cerium-containing (Ce 3+ /Ce 4+ ) glasses is here inves...
The ability of Ce-containing bioactive glasses to inhibit oxidative stress in terms of reduction of ...
Finding innovative solutions to improve the lives of people affected by trauma, bone disease, or agi...
The ability of Ce-containing bioactive glasses, based on 45S5 Bioglass®, to inhibit oxidative stres...
The cytocompatibility of potential bioactive cerium-containing (Ce3+/Ce4+) glasses is here investiga...
Bioactive glasses (BGs) for biomedical applications are doped with therapeutic inorganic ions (TIIs)...
(1) Background: a cell evaluation focused to verify the self-regenerative antioxidant activity is pe...
Mesoporous bioactive glass scaffolds (MBG-Scs), based on 80% SiO 2-15% CaO-5% P 2O 5 (in mol.%) meso...
(1) Background: valuation of the bioactivity and cytocompatibility of P2O5-free and CeO2 doped glass...
In recent years, mesoporous bioactive glass nanoparticles (MBGNPs) have generated great attention in...
Cancer is a leading cause of death worldwide, its genesis and progression are caused by homeostatic ...
The results of preparation, characterization and in vitro bioactivity evaluation of phosphosilicate ...