International audienceTreating large bone defects or fragile patients may require enhancing the bone regeneration rate to overcome a weak contribution from the body. This work investigates the osteogenic potential of nutrient fisetin, a flavonoid found in fruits and vegetables, as a doping agent inside the structure of a SiO 2 − CaO bioactive glass−poly(caprolactone) (BG−PCL) hybrid scaffold. Embedded in the full mass of the BG− PCL hybrid during one-pot synthesis, we demonstrate fisetin to be delivered sustainably; the release follows a first-order kinetics with active fisetin concentration being delivered for more than 1 month (36 days). The biological effect of BG−PCL−fisetin-doped scaffolds (BG−PCL−Fis) has been highlighted by in vitro ...
Flavonoids may modulate the bone formation process. Among flavonoids, fisetin is known to counteract...
This study was designed to develop a bioactive scaffold to enhance bone defect repair in steroid-ass...
Tissue-engineered bone substitutes, characterized by favorable physicochemical, mechanical, and biol...
International audienceTreating large bone defects or fragile patients may require enhancing the bone...
International audienceBioactive glasses (BG) bond to bone and stimulate bone regeneration, but they ...
International audienceOrganic-inorganic hybrid biomaterials stand as a promise for combining bone bo...
Session III: Mobilité et motricité (Modérateurs : A. Pinel et E. Rock) Session III: Mobilité et motr...
International audienceInorganic-organic hybrids appear as promising bone substitutes since they asso...
article présentaté lors du colloque 'Phytomicronutriments' qui s’est tenu à Avignon le 16 décembre 2...
The repair of structural bone defects such as segmental defects in the long bones of the limbs is a ...
Bioactive glass particles and weak scaffolds are used to heal small contained bone defects but the d...
Flavonoids may modulate the bone formation process. Among flavonoids, fisetin is known to counteract...
This study was designed to develop a bioactive scaffold to enhance bone defect repair in steroid-ass...
Tissue-engineered bone substitutes, characterized by favorable physicochemical, mechanical, and biol...
International audienceTreating large bone defects or fragile patients may require enhancing the bone...
International audienceBioactive glasses (BG) bond to bone and stimulate bone regeneration, but they ...
International audienceOrganic-inorganic hybrid biomaterials stand as a promise for combining bone bo...
Session III: Mobilité et motricité (Modérateurs : A. Pinel et E. Rock) Session III: Mobilité et motr...
International audienceInorganic-organic hybrids appear as promising bone substitutes since they asso...
article présentaté lors du colloque 'Phytomicronutriments' qui s’est tenu à Avignon le 16 décembre 2...
The repair of structural bone defects such as segmental defects in the long bones of the limbs is a ...
Bioactive glass particles and weak scaffolds are used to heal small contained bone defects but the d...
Flavonoids may modulate the bone formation process. Among flavonoids, fisetin is known to counteract...
This study was designed to develop a bioactive scaffold to enhance bone defect repair in steroid-ass...
Tissue-engineered bone substitutes, characterized by favorable physicochemical, mechanical, and biol...