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Osteoblasts contribute to a protective niche that supports melanoma cell proliferation and survival - Ferguson - 2020 - Pigment Cell & Melanoma Research - Wiley Online Library
Multilineage Differentiation and Characterization of the Human Fetal Osteoblastic 1.19 Cell Line: A Possible In Vitro Model of Human Mesenchymal Progenitors - Yen - 2007 - STEM CELLS - Wiley Online Library
Knocking out TMEM38B in human foetal osteoblasts hFOB 1.19 by CRISPR/Cas9: A model for recessive OI type XIV
Kinship of conditionally immortalized cells derived from fetal bone to human bone-derived mesenchymal stroma cells | Scientific Reports
Characterization of human fetal osteoblastic 1.19 (hFOB). (A): Flow... | Download Scientific Diagram
Development of label-free biophysical markers in osteogenic maturation - ScienceDirect
Knocking out TMEM38B in human foetal osteoblasts hFOB 1.19 by CRISPR/Cas9: A model for recessive OI type XIV
Antimicrobial properties, cytotoxicity, colour and mechanical behavior of light-cured resin composites containing modified Novaron [PeerJ]
Kinship of conditionally immortalized cells derived from fetal bone to human bone-derived mesenchymal stroma cells | Scientific Reports
Endothelin‐1 inhibits human osteoblastic cell differentiation: Influence of connexin‐43 expression level - Niger - 2008 - Journal of Cellular Biochemistry - Wiley Online Library
IJMS | Free Full-Text | Changes in Human Foetal Osteoblasts Exposed to the Random Positioning Machine and Bone Construct Tissue Engineering | HTML
Knocking out TMEM38B in human foetal osteoblasts hFOB 1.19 by CRISPR/Cas9: A model for recessive OI type XIV
The effect of VPA on bone: From clinical studies to cell cultures—The molecular mechanisms revisited - Seizure - European Journal of Epilepsy
Molecules | Free Full-Text | The Effects of Polyphenol, Tannic Acid, or Tannic Acid in Combination with Pamidronate on Human Osteoblast Cell Line Metabolism | HTML
Molecules | Free Full-Text | The Effects of Polyphenol, Tannic Acid, or Tannic Acid in Combination with Pamidronate on Human Osteoblast Cell Line Metabolism | HTML
A 2-Compartment Bone Tumor Model for Testing the Efficacy of Cancer Drugs | bioRxiv
Fabrication of a hydroxyapatite-PDMS microfluidic chip for bone-related cell culture and drug screening - ScienceDirect
Osteoblasts contribute to a protective niche that supports melanoma cell proliferation and survival. - Abstract - Europe PMC
Inverted micrographs of human Fetal OsteoBlast (hFOB) cells, (A)... | Download Scientific Diagram
Kinship of conditionally immortalized cells derived from fetal bone to human bone-derived mesenchymal stroma cells | Scientific Reports
Kinship of conditionally immortalized cells derived from fetal bone to human bone-derived mesenchymal stroma cells | Scientific Reports
Kinship of conditionally immortalized cells derived from fetal bone to human bone-derived mesenchymal stroma cells | Scientific Reports
Kinship of conditionally immortalized cells derived from fetal bone to human bone-derived mesenchymal stroma cells | Scientific Reports
hFOB 1.19 cell line in 96-well microtiter plates viewed at 22×... | Download Scientific Diagram
IJMS | Free Full-Text | Changes in Human Foetal Osteoblasts Exposed to the Random Positioning Machine and Bone Construct Tissue Engineering | HTML
Human fetal osteoblast cells (hFOB 1.19) were grown at 34°C using... | Download Scientific Diagram
Frontiers | A Roadmap to Gene Discoveries and Novel Therapies in Monogenic Low and High Bone Mass Disorders | Endocrinology
Molecules | Free Full-Text | The Effects of Polyphenol, Tannic Acid, or Tannic Acid in Combination with Pamidronate on Human Osteoblast Cell Line Metabolism | HTML
Osteoblasts contribute to a protective niche that supports melanoma cell proliferation and survival. - Abstract - Europe PMC
Endothelin‐1 inhibits human osteoblastic cell differentiation: Influence of connexin‐43 expression level - Niger - 2008 - Journal of Cellular Biochemistry - Wiley Online Library