Results 251 to 260 of about 115,464 (311)
Zfp462 Is a Key Mediator of Osteoblast Differentiation and Might Contribute to Age-Related Bone Loss. [PDF]
Kim JM +11 more
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Amino-Modified Mesoporous Bioactive Glass Adsorbed with Osteopontin Enhances Osteogenic Differentiation and Matrix Mineralization via the Erk1/2 Signaling Pathway. [PDF]
Yang Y +7 more
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Targeting innate immunity to modulate bone metabolism: a novel strategy for osteoporosis treatment. [PDF]
Kou W +11 more
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Advances in the osteoblast lineage [PDF]
Osteoblasts are the skeletal cells responsible for synthesis, deposition and mineralization of the extracellular matrix of bone. By mechanisms that are only beginning to be understood, stem and primitive osteoprogenitors and related mesenchymal precursors arise in the embryo and at least some appear to persist in the adult organism, where they ...
Jane E Aubin
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Cell and Tissue Research, 1977
The endocranial matrix surfaces of parietal bones of 2-week old Albino Wistar rats were partly denuded of osteoblasts and then cultured for various periods up to 24 h, in control or PTE-enriched medium. They were examined by scanning electron microscopy and evidence for cell locomotion was found.
S J, Jones, A, Boyde
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The endocranial matrix surfaces of parietal bones of 2-week old Albino Wistar rats were partly denuded of osteoblasts and then cultured for various periods up to 24 h, in control or PTE-enriched medium. They were examined by scanning electron microscopy and evidence for cell locomotion was found.
S J, Jones, A, Boyde
openaire +2 more sources

