Searchable abstracts of presentations at key conferences on calcified tissues

ba0001pp181 | Cell biology: osteoblasts and bone formation | ECTS2013

The impairement of bone formation and mineralization in BSP−/− mouse calvaria cell cultures is partly rescued by increasing cell density

Bouet Guenaelle , Bouleftour Wafa , David Marchat , Marie-Therese Linossier , Mireille Thomas , Jane Aubin E , Laurence Vico , Luc Malaval

Bone sialoprotein regulates osteoblast activity and bone formation. In knockout (BSP−/−) mouse bone marrow (BM) stromal cell cultures, the pool of osteoprogenitor (OP) cells (CFU-F number) is not different from wild-type (+/+), nor is their early differentiation (same numbers of alkaline phosphatase positive colonies=CFU-ALP, although these are smaller), while the number of osteoblast, mineralized colonies (CFU-OB) is dramatically reduced. Because ossifi...

ba0003pp39 | Bone development/growth and fracture repair | ECTS2014

Bone shaft revascularization after marrow ablation is dramatically accelerated in BSP−/− mice, along with faster haematopoietic recolonization

Bouleftour Wafa , Granito Renata Neves , Bossche Arnaud Vanden , Sabido Odile , Roche Bernard , Thomas Mireille , Linossier Marie-Therese , Aubin Jane , Lafage-Proust Marie-Helene , Vico Laurence , Malaval Luc

The bone organ integrates the activity of bone tissue, bone marrow, and blood vessels and the factors ensuring this coordination remain ill defined. Bone sialoprotein (BSP) is with osteopontin (OPN) a member of the small integrin binding ligand N-linked glycoprotein (SIBLING) family, involved in bone formation, hematopoiesis, and angiogenesis. In rodents, bone marrow ablation induces a rapid formation of medullary bone which peaks by ~8 days (d8) and is blunted in BSP...