International audienceThis study reports the in vitro biocompatibility of a composite biomaterial composed of 46S6 bioactive glass in association with chitosan (CH) by using 3D osteoblast culture of SaOS2. The 46S6 and CH composite (46S6-CH) forms small hydroxyapatite crystals on its surface after only three days immersion in the simulated body fluid. For 2D osteoblast culture, a significant increase in cell proliferation was observed after three days of contact with 46S6 or 46S6-CH-immersed media. After six days, 46S6-CH led to a significant increase in cell proliferation (128%) compared with pure 46S6 (113%) and pure CH (122%). For 3D osteoblast culture, after six days of culture, there was an increase in gene expression of markers of the...
The use of extracellular matrix (ECM) molecules from tissues is an interesting way to induce specifi...
Bioactive glass is known for its potential as a bone scaffold due to its ability to stimulate osteog...
Regenerative medicine focuses on using biomaterials as three-dimensional (3D) porous scaffolds, spec...
International audienceThe evaluation of innovative bone substitutes requires the development of an o...
Background: efficient differentiation of stem cells into three-dimensional (3D) osteogenic construct...
Bone defects have prompted the development of biomaterial-based bone substitutes for restoring the a...
This study reports on the processing of three-dimensional (3D) chitosan/bioactive glass composite sc...
International audienceBioactive glass 46S6 and biodegradable therapeutic polymer (Chitosan: CH) have...
International audienceIn order to increase the biocompatibility and bioactivity of bioactive glass, ...
International audienceIn order to increase the biocompatibility and bioactivity of bioactive glass, ...
International audienceBioactive glass 46S6 and biodegradable therapeutic polymer (Chitosan: CH) have...
International audienceBioactive glass 46S6 and biodegradable therapeutic polymer (Chitosan: CH) have...
International audienceBioactive glass 46S6 and biodegradable therapeutic polymer (Chitosan: CH) have...
Human adipose-derived stem/stromal cells (hASCs) have been popularly studied as cell-based therapy i...
Since it is known that various cell lines may ex-press different behaviours on the scaffolds surface...
The use of extracellular matrix (ECM) molecules from tissues is an interesting way to induce specifi...
Bioactive glass is known for its potential as a bone scaffold due to its ability to stimulate osteog...
Regenerative medicine focuses on using biomaterials as three-dimensional (3D) porous scaffolds, spec...
International audienceThe evaluation of innovative bone substitutes requires the development of an o...
Background: efficient differentiation of stem cells into three-dimensional (3D) osteogenic construct...
Bone defects have prompted the development of biomaterial-based bone substitutes for restoring the a...
This study reports on the processing of three-dimensional (3D) chitosan/bioactive glass composite sc...
International audienceBioactive glass 46S6 and biodegradable therapeutic polymer (Chitosan: CH) have...
International audienceIn order to increase the biocompatibility and bioactivity of bioactive glass, ...
International audienceIn order to increase the biocompatibility and bioactivity of bioactive glass, ...
International audienceBioactive glass 46S6 and biodegradable therapeutic polymer (Chitosan: CH) have...
International audienceBioactive glass 46S6 and biodegradable therapeutic polymer (Chitosan: CH) have...
International audienceBioactive glass 46S6 and biodegradable therapeutic polymer (Chitosan: CH) have...
Human adipose-derived stem/stromal cells (hASCs) have been popularly studied as cell-based therapy i...
Since it is known that various cell lines may ex-press different behaviours on the scaffolds surface...
The use of extracellular matrix (ECM) molecules from tissues is an interesting way to induce specifi...
Bioactive glass is known for its potential as a bone scaffold due to its ability to stimulate osteog...
Regenerative medicine focuses on using biomaterials as three-dimensional (3D) porous scaffolds, spec...