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Your search keyword '"Osteoclast/osteoblast biology"' showing total 49 results

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49 results on '"Osteoclast/osteoblast biology"'

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1. Sclerostin neutralization unleashes the osteoanabolic effects of Dkk1 inhibition

2. Negative feedback between PTH1R and IGF1 through the Hedgehog pathway in mediating craniofacial bone remodeling.

3. Cellular signatures in human blood track bone mineral density in postmenopausal women.

4. Peficitinib improves bone fragility by recovering bone turnover imbalance in arthritic mice

5. CST6 suppresses osteolytic bone disease in multiple myeloma by blocking osteoclast differentiation.

6. Loss of Iroquois homeobox transcription factors 3 and 5 in osteoblasts disrupts cranial mineralization

7. Age-associated callus senescent cells produce TGF-β1 that inhibits fracture healing in aged mice.

8. Genomic variants within chromosome 14q32.32 regulate bone mass through MARK3 signaling in osteoblasts.

9. Plasma cells promote osteoclastogenesis and periarticular bone loss in autoimmune arthritis.

10. Nitric oxide modulates bone anabolism through regulation of osteoblast glycolysis and differentiation.

11. Protein kinase G2 activation restores Wnt signaling and bone mass in glucocorticoid-induced osteoporosis in mice.

12. Sclerostin blockade inhibits bone resorption through PDGF receptor signaling in osteoblast lineage cells.

13. Methionine as a regulator of bone remodeling with fasting.

14. Osteocyte necrosis triggers osteoclast-mediated bone loss through macrophage-inducible C-type lectin.

15. Muscle-derived interleukin 6 increases exercise capacity by signaling in osteoblasts.

16. Salt-inducible kinases dictate parathyroid hormone 1 receptor action in bone development and remodeling.

17. Lkb1 deletion in periosteal mesenchymal progenitors induces osteogenic tumors through mTORC1 activation.

18. Peficitinib improves bone fragility by recovering bone turnover imbalance in arthritic mice

19. FGF23 directly inhibits osteoprogenitor differentiation in Dmp1-knockout mice.

20. Sexual dimorphism of osteoclast reliance on mitochondrial oxidation of energy substrates in the mouse.

21. Bone-derived PDGF-BB drives brain vascular calcification in male mice.

22. Reduced osteoprotegerin expression by osteocytes may contribute to rebound resorption after denosumab discontinuation.

23. Glutathione limits RUNX2 oxidation and degradation to regulate bone formation.

24. Osteoclast-derived IGF1 induces RANKL production in osteocytes and contributes to pagetic lesion formation.

25. Lkb1 deletion in periosteal mesenchymal progenitors induces osteogenic tumors through mTORC1 activation

26. JAK2-IGF1 axis in osteoclasts regulates postnatal growth in mice

27. Minocycline-induced disruption of the intestinal FXR/FGF15 axis impairs osteogenesis in mice.

28. Increased joint loading induces subchondral bone loss of the temporomandibular joint via the RANTES-CCRs-Akt2 axis.

29. CST6 suppresses osteolytic bone disease in multiple myeloma by blocking osteoclast differentiation.

30. Salt-inducible kinases dictate parathyroid hormone 1 receptor action in bone development and remodeling

31. Age-associated callus senescent cells produce TGF-β1 that inhibits fracture healing in aged mice.

32. Commensal oral microbiota induces osteoimmunomodulatory effects separate from systemic microbiome in mice.

33. Loss of Iroquois homeobox transcription factors 3 and 5 in osteoblasts disrupts cranial mineralization

34. Sclerostin neutralization unleashes the osteoanabolic effects of Dkk1 inhibition

35. Peficitinib improves bone fragility by recovering bone turnover imbalance in arthritic mice.

36. Mitochondrial Sirt3 contributes to the bone loss caused by aging or estrogen deficiency.

37. Genomic variants within chromosome 14q32.32 regulate bone mass through MARK3 signaling in osteoblasts.

38. Plasma cells promote osteoclastogenesis and periarticular bone loss in autoimmune arthritis.

39. JAK2-IGF1 axis in osteoclasts regulates postnatal growth in mice.

40. Nitric oxide modulates bone anabolism through regulation of osteoblast glycolysis and differentiation.

41. Angiogenesis stimulated by elevated PDGF-BB in subchondral bone contributes to osteoarthritis development.

42. Osteoclast-derived IGF1 is required for pagetic lesion formation in vivo.

43. Salt-inducible kinases dictate parathyroid hormone 1 receptor action in bone development and remodeling.

44. Lowering circulating apolipoprotein E levels improves aged bone fracture healing.

45. Lkb1 deletion in periosteal mesenchymal progenitors induces osteogenic tumors through mTORC1 activation.

46. Vhl deletion in osteoblasts boosts cellular glycolysis and improves global glucose metabolism.

47. Osteoblastic heparan sulfate regulates osteoprotegerin function and bone mass.

48. Increased Ca2+ signaling through CaV1.2 promotes bone formation and prevents estrogen deficiency-induced bone loss.

49. Loss of Iroquois homeobox transcription factors 3 and 5 in osteoblasts disrupts cranial mineralization.

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