A facile and green method was explored to prepare the tetracycline hydrochloride- (TCH-) loaded poly (ε-caprolactone)-chitosan-silica xerogel (PCL-CS-SiO2) hybrid fibers by using 90% acetic acid as a suitable solvent. The SEM results showed that those fibers exhibited a continuous, bead-free morphology, an average diameter of about 430 nm, and super-hydrophilicity (θwater≈0°). The presence of SiO2 was found to enhance the thermal stability of the hybrid fibers, and the actual content of SiO2 was obtained by the TG measurement. Moreover, SiO2 xerogel as an important bioceramic endowed the hybrid fibers with good drug release behavior and in vitro bioactivity, suggesting their potential use as novel drug carriers for bone tissue engineering. ...
Inorganic/organic hybrid scaffolds have great potential for tissue engineering applications due to c...
The aim of the present study was to synthetize new phenol-based materials through the sol gel approa...
Synthetic polymeric scaffolds are commonly used in bone tissue engineering (BTE) due to their biocom...
Hydrogels constructed from naturally derived polymers provide an aqueous environment that encourages...
Silica/biopolymer hydrogel-based materials constitute very attractive platforms for various emerging...
Novel bioactive organic–inorganic hybrid materials that can serve as injectable hydrogel systems for...
Aim: A novel organic/inorganic hybrid material, based on poly(ε-caprolactone) (PCL) and silica (SiO2...
Silica/biopolymer hydrogel-based materials constitute very attractive platforms for various emerging...
Silica and collagen are two of the most abundant substances in the Earth's geosphere and biosphere, ...
In this paper, we report the preparation by the sol-gel technique of organic-inorganic hybrid compos...
Novel biomaterials are needed for bone tissue repair with improved mechanical performance compared t...
International audienceSilica and collagen are two of the most abundant substances in the Earth's geo...
A mixture of triethoxysilanefunctionalized poly(ethylene glycol), f-PEG, and tetraethoxysilane, TEOS...
In this study, the materials were synthesized by chemically crosslinking chondroitin sulfate (CS), c...
International audienceWe established, for the first time, a general methodology to synthesize and is...
Inorganic/organic hybrid scaffolds have great potential for tissue engineering applications due to c...
The aim of the present study was to synthetize new phenol-based materials through the sol gel approa...
Synthetic polymeric scaffolds are commonly used in bone tissue engineering (BTE) due to their biocom...
Hydrogels constructed from naturally derived polymers provide an aqueous environment that encourages...
Silica/biopolymer hydrogel-based materials constitute very attractive platforms for various emerging...
Novel bioactive organic–inorganic hybrid materials that can serve as injectable hydrogel systems for...
Aim: A novel organic/inorganic hybrid material, based on poly(ε-caprolactone) (PCL) and silica (SiO2...
Silica/biopolymer hydrogel-based materials constitute very attractive platforms for various emerging...
Silica and collagen are two of the most abundant substances in the Earth's geosphere and biosphere, ...
In this paper, we report the preparation by the sol-gel technique of organic-inorganic hybrid compos...
Novel biomaterials are needed for bone tissue repair with improved mechanical performance compared t...
International audienceSilica and collagen are two of the most abundant substances in the Earth's geo...
A mixture of triethoxysilanefunctionalized poly(ethylene glycol), f-PEG, and tetraethoxysilane, TEOS...
In this study, the materials were synthesized by chemically crosslinking chondroitin sulfate (CS), c...
International audienceWe established, for the first time, a general methodology to synthesize and is...
Inorganic/organic hybrid scaffolds have great potential for tissue engineering applications due to c...
The aim of the present study was to synthetize new phenol-based materials through the sol gel approa...
Synthetic polymeric scaffolds are commonly used in bone tissue engineering (BTE) due to their biocom...