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36 results on '"Akira Nifuji"'

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1. Tooth transplantation and replantation: Biological insights towards therapeutic improvements

2. Profilin-1 negatively controls osteoclast migration by suppressing the protrusive structures based on branched actin filaments

3. Possible association of oestrogen and Cryba4 with masticatory muscle tendon‐aponeurosis hyperplasia

4. Annexin A5 Involvement in Bone Overgrowth at the Enthesis

5. BMP-2 Enhances Lgr4 Gene Expression in Osteoblastic Cells

6. Alendronate promotes bone formation by inhibiting protein prenylation in osteoblasts in rat tooth replantation model

7. PlexinD1 deficiency induces defects in axial skeletal morphogenesis

8. Osteopontin Deficiency Suppresses High Phosphate Load-Induced Bone Loss via Specific Modulation of Osteoclasts

9. Unloading-induced bone loss was suppressed in gold-thioglucose treated mice

10. The nucleocytoplasmic shuttling protein CIZ reduces adult bone mass by inhibiting bone morphogenetic protein–induced bone formation

11. Spaciotemporal Association and Bone Morphogenetic Protein Regulation of Sclerostin and Osterix Expression during Embryonic Osteogenesis

12. Noggin Inhibits Chondrogenic But Not Osteogenic Differentiation in Mesodermal Stem Cell Line C1 and Skeletal Cells

13. Tob deficiency superenhances osteoblastic activity after ovariectomy to block estrogen deficiency-induced osteoporosis

14. Inhibitory helix-loop-helix transcription factors Id1/Id3 promote bone formation in vivo

15. Osteopontin Deficiency Induces Parathyroid Hormone Enhancement of Cortical Bone Formation

16. Defects in growth and bone metabolism in klotho mutant mice are resistant to GH treatment

17. Enhancing Effect of Tob Deficiency on Bone Formation Is Specific to Bone Morphogenetic Protein-Induced Osteogenesis

18. Resistance to Unloading-Induced Three-Dimensional Bone Loss in Osteopontin-Deficient Mice

19. Parathyroid Hormone-induced Bone Resorption Does Not Occur in the Absence of Osteopontin

20. Osteopontin Facilitates Angiogenesis, Accumulation of Osteoclasts, and Resorption in Ectopic Bone*

21. Enhancement of Osteoclastic Bone Resorption and Suppression of Osteoblastic Bone Formation in Response to Reduced Mechanical Stress Do Not Occur in the Absence of Osteopontin

22. Coordinated Expression of Noggin and Bone Morphogenetic Proteins (BMPs) During Early Skeletogenesis and Induction of Noggin Expression by BMP-7

23. Sclerotome-related helix-loop-helix type transcription factor (scleraxis) mRNA is expressed in osteoblasts and its level is enhanced by type-β transforming growth factor

24. Expression of mRNA Encoding Tissue-Nonspecific Alkaline Phosphatase in Human Dental Tissues

25. Protein related to DAN and cerberus (PRDC) inhibits osteoblastic differentiation and its suppression promotes osteogenesis in vitro

26. The effects of transforming growth factor .BETA.1 on mouse osteoblastic cell line MC3T3-E1. Especially on gene expression of differentiation markers

27. Osteopontin is required for mechanical stress-dependent signals to bone marrow cells

28. Unloading induces osteoblastic cell suppression and osteoclastic cell activation to lead to bone loss via sympathetic nervous system

29. Hedgehog signaling enhances core-binding factor a1 and receptor activator of nuclear factor-kappaB ligand (RANKL) gene expression in chondrocytes

31. Bone morphogenetic protein regulation of forkhead/winged helix transcription factor Foxc2 (Mfh1) in a murine mesodermal cell line C1 and in skeletal precursor cells

32. Dexamethasone enhances SOX9 expression in chondrocytes

33. Klotho-deficient mice are resistant to bone loss induced by unloading due to sciatic neurectomy

34. An osteogenesis-related transcription factor, core-binding factor A1, is constitutively expressed in the chondrocytic cell line TC6, and its expression is upregulated by bone morphogenetic protein-2

35. Elongation of the epiphyseal trabecular bone in transgenic mice carrying a klotho gene locus mutation that leads to a syndrome resembling aging

36. Expression of Indian hedgehog in osteoblasts and its posttranscriptional regulation by transforming growth factor-beta

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