The design of efficient, biocompatible, and easily prepared vehicles for drug delivery is a subject of great interest for medicine and pharmaceutical sciences. To achieve the above goals, surface functionalization is critical. Here, we report a hybrid nanocarrier consisting of core⁻shell silica nanospheres and the antioxidant caffeic acid linked to the surface, to evaluate their in vitro antioxidant capacity, their capability to protect oxidation-sensitive compounds incorporated in nanoparticles, and to study the interaction with bovine serum albumin protein. The results show that the radical-scavenging activity of immobilized caffeic acid is attenuated in the silica nanospheres; however, other antioxidant properties such as Fe2+-chel...
There is great interest in developing a sensitive method being able to quantitatively measure and co...
The failure of medical devices, such as bones prosthesis, is mainly due to inflammatory and infectio...
We report a novel zinc oxide (ZnO) nanoparticle with antioxidant properties, prepared by immobilizin...
The hydroxycinnamoyl compound, caffeic acid (CA), broadly occurring in plants, is receiving special ...
The hydroxycinnamoyl compound caffeic acid (CA), broadly occurring in plants, is receiving special a...
The object of this study is a comparison between solid lipid nanoparticles and ethosomes for caffeic...
The object of this study is a comparison between solid lipid nanoparticles and ethosomes for caffeic...
The object of this study is a comparison between solid lipid nanoparticles and ethosomes for caffeic...
Free radicals are generated as byproducts of normal metabolic processes as well as due to exposure t...
UMR AGAP équipe DAAV Diversité, adaptation et amélioration de la vigneInternational audienceMesoporo...
Caffeic acid is a natural antioxidant, largely distributed in plant tissues and food sources, posses...
Nanosystems used in pharmaceutical formulations have shown promising results in enhancing the admini...
The sol-gel route represents a valuable technique to obtain functional materials, in which organic a...
Silica/5-O-caffeoylquinic acid hybrid materials are synthetized via sol–gel route, obtaining new bio...
There is great interest in developing a sensitive method being able to quantitatively measure and co...
The failure of medical devices, such as bones prosthesis, is mainly due to inflammatory and infectio...
We report a novel zinc oxide (ZnO) nanoparticle with antioxidant properties, prepared by immobilizin...
The hydroxycinnamoyl compound, caffeic acid (CA), broadly occurring in plants, is receiving special ...
The hydroxycinnamoyl compound caffeic acid (CA), broadly occurring in plants, is receiving special a...
The object of this study is a comparison between solid lipid nanoparticles and ethosomes for caffeic...
The object of this study is a comparison between solid lipid nanoparticles and ethosomes for caffeic...
The object of this study is a comparison between solid lipid nanoparticles and ethosomes for caffeic...
Free radicals are generated as byproducts of normal metabolic processes as well as due to exposure t...
UMR AGAP équipe DAAV Diversité, adaptation et amélioration de la vigneInternational audienceMesoporo...
Caffeic acid is a natural antioxidant, largely distributed in plant tissues and food sources, posses...
Nanosystems used in pharmaceutical formulations have shown promising results in enhancing the admini...
The sol-gel route represents a valuable technique to obtain functional materials, in which organic a...
Silica/5-O-caffeoylquinic acid hybrid materials are synthetized via sol–gel route, obtaining new bio...
There is great interest in developing a sensitive method being able to quantitatively measure and co...
The failure of medical devices, such as bones prosthesis, is mainly due to inflammatory and infectio...
We report a novel zinc oxide (ZnO) nanoparticle with antioxidant properties, prepared by immobilizin...