All Stories

  1. Overexpression of WNT16 Does Not Prevent Cortical Bone Loss Due to Glucocorticoid Treatment in Mice
  2. MMP14 is a novel target of PTH signaling in osteocytes that controls resorption by regulating soluble RANKL production
  3. Skeletal cell YAP and TAZ combinatorially promote bone development
  4. Osteoclasts Control Lipid Secretion to Regulate Breast Cancer Bone Metastasis
  5. Control of Bone Anabolism in Response to Mechanical Loading and PTH by Distinct Mechanisms Downstream of the PTH Receptor
  6. Role and mechanism of action of sclerostin in bone
  7. Delgado-Calle et al. Osteocytes promote bone destruction in multiple myeloma
  8. Age-associated hydroxymethylation in human bone-marrow mesenchymal stem cells
  9. Protection From Glucocorticoid-Induced Osteoporosis by Anti-Catabolic Signaling in the Absence of Sost/Sclerostin
  10. Generation and characterization of two immortalized human osteoblastic cell lines useful for epigenetic studies
  11. Bidirectional Notch Signaling and Osteocyte-Derived Factors in the Bone Marrow Microenvironment Promote Tumor Cell Proliferation and Bone Destruction in Multiple Myeloma
  12. Osteocytes and Skeletal Pathophysiology
  13. Osteocytes mediate the anabolic actions of canonical Wnt/β-catenin signaling in bone
  14. Role of osteocytes in multiple myeloma bone disease
  15. Analysis of the Bone MicroRNome in Osteoporotic Fractures
  16. H3K4me1 marks DNA regions hypomethylated during aging in human stem and differentiated cells
  17. Parathyroid Hormone Receptor Signaling Induces Bone Resorption in the Adult Skeleton by Directly Regulating theRANKLGene in Osteocytes
  18. A Sclerostin Super-Producer Cell Line Derived from the Human Cell Line SaOS-2: A New Tool for the Study of the Molecular Mechanisms Driving Sclerostin Expression
  19. The Role of DNA Methylation in Common Skeletal Disorders
  20. Nitric Oxide is Involved in the Down-regulation of SOST Expression Induced by Mechanical Loading
  21. Contribution of genetic and epigenetic mechanisms to Wnt pathway activity in prevalent skeletal disorders
  22. Role of BMPs in the regulation of sclerostin as revealed by an epigenetic modifier of human bone cells
  23. Mecanobiología celular y molecular del tejido óseo
  24. Genome-wide profiling of bone reveals differentially methylated regions in osteoporosis and osteoarthritis
  25. The Role of DNA Methylation in Common Skeletal Disorders
  26. Do Epigenetic Marks Govern Bone Mass and Homeostasis?
  27. DNA methylation contributes to the regulation of sclerostin expression in human osteocytes
  28. Role of DNA methylation in the regulation of the RANKL-OPG system in human bone
  29. Epigenetic regulation of alkaline phosphatase in human cells of the osteoblastic lineage
  30. Mecanismos de interacción osteoblasto-osteoclasto
  31. Osteocyte Deficiency in Hip Fractures