1. Human adipose stem cells induced to osteogenic differentiation by an innovative collagen/hydroxylapatite hybrid scaffold
- Author
-
Lorenzo Trevisiol, Elena Bassi, Elisa Mazzoni, Cinzia Fortini, Andrea Puozzo, Stefania Maniero, Stefano Marsico, Mauro Tognon, Marco Manfrini, Simone Patergnani, and Antonio D'Agostino
- Subjects
0301 basic medicine ,Scaffold ,Cellular differentiation ,Cells ,Integrin ,Socio-culturale ,Adipose tissue ,Biocompatible Materials ,Biochemistry ,bone ,Bone and Bones ,Extracellular matrix ,Focal adhesion ,03 medical and health sciences ,0302 clinical medicine ,adhesion ,biomaterial ,genes ,matrix ,Adipocytes ,Adipose Tissue ,Cell Proliferation ,Cells, Cultured ,Collagen ,Extracellular Matrix ,Humans ,Osteogenesis ,Stem Cells ,Tissue Scaffolds ,Cell Differentiation ,Genetics ,Osteopontin ,Molecular Biology ,Cultured ,biology ,Chemistry ,Cell biology ,030104 developmental biology ,030220 oncology & carcinogenesis ,biology.protein ,Stem cell ,Biotechnology - Abstract
Novel biomaterials are of paramount importance for bone regrowth. In this study, we investigated human adipose stem cells (hASCs) for osteogenic, osteoconductivity, and osteoinductivity effects of an innovative collagen/hydroxylapatite hybrid scaffold. In hASCs that were grown on this scaffold, osteogenic genes were analyzed for their expression profiles, together with adhesion and extracellular matrix genes. In hASC integrins, basement membrane constituents and collagens were up-regulated, together with cell proliferation. In addition, expression of osteopontin and activated focal adhesion kinase was studied at the protein level. Our in vitro data indicate that hASCs, together with hybrid biomaterial, is an important model of study to investigate in vitro bone induction.-Mazzoni, E., D'Agostino, A., Manfrini, M., Maniero, S., Puozzo, A., Bassi, E., Marsico, S., Fortini, C., Trevisiol, L., Patergnani, S., Tognon, M. Human adipose stem cells induced to osteogenic differentiation by an innovative collagen/hydroxylapatite hybrid scaffold.
- Published
- 2017