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The Impairment of Osteogenesis in Bone Sialoprotein (BSP) Knockout Calvaria Cell Cultures Is Cell Density Dependent
- Source :
- PLoS ONE, PLoS ONE, Public Library of Science, 2015, 10 (2), pp.e0117402. ⟨10.1371/journal.pone.0117402⟩, PLoS ONE, Vol 10, Iss 2, p e0117402 (2015)
- Publication Year :
- 2015
- Publisher :
- HAL CCSD, 2015.
-
Abstract
- International audience; Bone sialoprotein (BSP) belongs to the "small integrin-binding ligand N-linked glycoprotein" (SIBLING) family, whose members interact with bone cells and bone mineral. BSP is strongly expressed in bone and we previously showed that BSP knockout (BSP-/-) mice have a higher bone mass than wild type (BSP+/+) littermates, with lower bone remodelling. Because baseline bone formation activity is constitutively lower in BSP-/-mice, we studied the impact of the absence of BSP on in vitro osteogenesis in mouse calvaria cell (MCC) cultures. MCC BSP-/-cultures exhibit fewer fibroblast (CFU-F), preosteoblast (CFU-ALP) and osteoblast colonies (bone nodules) than wild type, indicative of a lower number of osteopro-genitors. No mineralized colonies were observed in BSP-/-cultures, along with little/no expression of either osteogenic markers or SIBLING proteins MEPE or DMP1. Osteopontin (OPN) is the only SIBLING expressed in standard density BSP-/-culture, at higher levels than in wild type in early culture times. At higher plating density, the effects of the absence of BSP were partly rescued, with resumed expression of osteoblast markers and cognate SIBLING proteins, and mineralization of the mutant cultures. OPN expression and amount are further increased in high density BSP-/-cultures, while PHEX and CatB expression are differentiatlly regulated in a manner that may favor mineralization. Altogether, we found that BSP regulates mouse calvaria osteoblast cell clonogenicity, differentiation and activity in vitro in a cell density dependent manner, consistent with the effective skeletogenesis but the low levels of bone formation observed in vivo. The BSP knockout bone microenviron-ment may alter the proliferation/cell fate of early osteoprogenitors.
- Subjects :
- Bone sialoprotein
Male
medicine.medical_specialty
Bone density
Science
[SDV]Life Sciences [q-bio]
Calvaria
Apoptosis
Bone Marrow Cells
Bone remodeling
Cathepsin B
03 medical and health sciences
Mice
0302 clinical medicine
fluids and secretions
stomatognathic system
Osteogenesis
Internal medicine
Bone cell
medicine
Animals
[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process Engineering
Osteopontin
SIBLING proteins
Cells, Cultured
030304 developmental biology
Cell Proliferation
Mice, Knockout
0303 health sciences
Multidisciplinary
biology
Skull
Osteoblast
Cell Differentiation
PHEX Phosphate Regulating Neutral Endopeptidase
Coculture Techniques
Cell biology
medicine.anatomical_structure
Endocrinology
030220 oncology & carcinogenesis
biology.protein
Medicine
Female
Research Article
Subjects
Details
- Language :
- English
- ISSN :
- 19326203
- Database :
- OpenAIRE
- Journal :
- PLoS ONE, PLoS ONE, Public Library of Science, 2015, 10 (2), pp.e0117402. ⟨10.1371/journal.pone.0117402⟩, PLoS ONE, Vol 10, Iss 2, p e0117402 (2015)
- Accession number :
- edsair.doi.dedup.....dec911bffe657a268ddd128d54b041fd
- Full Text :
- https://doi.org/10.1371/journal.pone.0117402⟩