Research Topics
| Liat Abramovitch GottlibSummaryAffiliation: Ben-Gurion University of the Negev Country: Israel Publications
| Collaborators |
Detail Information
Publications
Low level laser irradiation stimulates osteogenic phenotype of mesenchymal stem cells seeded on a three-dimensional biomatrixLiat Abramovitch-Gottlib
Department of Biotechnology Engineering, Ben Gurion University of the Negev, Beer Sheva, 84105, Israel
Lasers Med Sci 20:138-46. 2005..We suggest that both the surface properties of the 3D crystalline biomatrices and the LLLI have biostimulatory effects on the conversion of MSCs into bone-forming cells and on the induction of ex-vivo ossification...
A computerized tank system for studying the effect of temperature on calcification of reef organismsLiat Abramovitch-Gottlib
The Institute for Applied Biosciences and the Department of Biotechnology and Environmental Engineering, Ben Gurion University of the Negev, Beer Sheva 84105, Israel
J Biochem Biophys Methods 50:245-52. 2002..We also demonstrated that sessile calcified marine organisms having ecological and biomedical significance could be cultured and manipulated under laboratory conditions...
Conversion of adipogenic to osteogenic phenotype using crystalline porous biomatrices of marine originRuth Z Birk
Faculty of Engineering Sciences, Department of Biotechnology Engineering, Ben Gurion University of the Negev, Beer Sheva, Israel
Tissue Eng 12:21-31. 2006..It is suggested that this crystalline biomatrix having a particular 3D topology or surface parameters supports fast cellular adhesion, proliferation, and differentiation of preadipocytes to osteogenic phenotype...
Biofabricated marine hydrozoan: a bioactive crystalline material promoting ossification of mesenchymal stem cellsLiat Abramovitch-Gottlib
The Faculty of Engineering, Department of Biotechnology Engineering and National Biotechnology Institute, Ben Gurion University of the Negev, Beer Sheva, Israel
Tissue Eng 12:729-39. 2006..lutea biomatrices after 28 days. Our study thus showed that M. dichotoma biomatrices enhance the differentiation of MSCs into osteoblast and hence have excellent potential as bioscaffold for hard tissue engineering...
