Bone osteogenesis is a complex phenomenon dependent on numerous microenvironmental cues, with their synchrony regulating cellular functions, such as mechanical signaling, survival, proliferation, and differentiation, as well as controlled regional specification of skeletal progenitor cell fate. Therefore, obtaining a mechanistic understanding of cellular response to a microenvironment is now coming into intense focus, which will facilitate the design of programmable biomaterials for regenerative medicine. State-of-the-art nanomaterial synthesis and self-assembly processes yield complex structures that mimic surface properties, composition, and partially the morphology of the extracellular matrix. However, determining key structural properti...
Aims. As shown in literature, the future strategies are based on the synergic combination of differe...
Hierarchical structures, constituted by polymeric nano and microfibers, have been considered promisi...
International audienceBone mimicking coatings provide a complex microenvironment in which material, ...
© 2018 American Chemical Society. Bone osteogenesis is a complex phenomenon dependent on numerous mi...
Bone osteogenesis is a complex phenomenon dependent on numerous microenvironmental cues, with their ...
The functional success of a biomedical implant critically depends on its stable bonding with the hos...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2014.Cata...
Current bone replacement strategies are largely inadequate for repairing segmental skeletal gap defe...
Nanostructured materials are gaining new impetus owing to the advancements in material fabrication t...
The scientific community is gathering an ever-growing collection of insights into how cell fate is f...
To promote and understand the biological responses of the implant via nanostructured surface design ...
Background: Nano-hydroxyapatite particles have better bioactivity than the coarse crystals. So, they...
The choice of the appropriate material having suitable compositional and morphological surface chara...
Bone is a complex and a highly specialised form of connective tissue defining the structure and shap...
Current load-bearing orthopaedic implants are produced in 'bio-inert' materials such as titanium all...
Aims. As shown in literature, the future strategies are based on the synergic combination of differe...
Hierarchical structures, constituted by polymeric nano and microfibers, have been considered promisi...
International audienceBone mimicking coatings provide a complex microenvironment in which material, ...
© 2018 American Chemical Society. Bone osteogenesis is a complex phenomenon dependent on numerous mi...
Bone osteogenesis is a complex phenomenon dependent on numerous microenvironmental cues, with their ...
The functional success of a biomedical implant critically depends on its stable bonding with the hos...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2014.Cata...
Current bone replacement strategies are largely inadequate for repairing segmental skeletal gap defe...
Nanostructured materials are gaining new impetus owing to the advancements in material fabrication t...
The scientific community is gathering an ever-growing collection of insights into how cell fate is f...
To promote and understand the biological responses of the implant via nanostructured surface design ...
Background: Nano-hydroxyapatite particles have better bioactivity than the coarse crystals. So, they...
The choice of the appropriate material having suitable compositional and morphological surface chara...
Bone is a complex and a highly specialised form of connective tissue defining the structure and shap...
Current load-bearing orthopaedic implants are produced in 'bio-inert' materials such as titanium all...
Aims. As shown in literature, the future strategies are based on the synergic combination of differe...
Hierarchical structures, constituted by polymeric nano and microfibers, have been considered promisi...
International audienceBone mimicking coatings provide a complex microenvironment in which material, ...