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1. Emilin2 marks the target region for mesenchymal cell accumulation in bone regeneration

2. Simultaneous augmentation of muscle and bone by locomomimetism through calcium-PGC-1α signaling

3. RANKL biology: bone metabolism, the immune system, and beyond

4. Osteocyte regulation of orthodontic force-mediated tooth movement via RANKL expression

5. IL-17-producing γδ T cells enhance bone regeneration

7. Oral bone biology

8. Identification of a KLF5-dependent program and drug development for skeletal muscle atrophy

9. The regulation of RANKL by mechanical force

10. The key royal jelly component 10-hydroxy-2-decenoic acid protects against bone loss by inhibiting NF-κB signaling downstream of FFAR4

11. Signaling in Osteoblast Differentiation

13. Osteoimmunology in Bone Fracture Healing

14. Reduced Mastication Impairs Memory Function

15. Forceful mastication activates osteocytes and builds a stout jawbone

16. Identification of a KLF5-dependent program and drug development for skeletal muscle atrophy.

17. Suppression of hematopoietic cell kinase ameliorates the bone destruction associated with inflammation

18. Recent advances in osteoclast biology

20. [Exercise and brain function.]

21. Osteocyte regulation of orthodontic force-mediated tooth movement via RANKL expression

22. Suppression of hematopoietic cell kinase ameliorates the bone destruction associated with inflammation.

23. IL-17-producing γδ T cells enhance bone regeneration

24. Reduced Mastication Impairs Memory Function.

25. The efficacy of dental therapy for an adult case of Henoch–Schönlein purpura

26. The key royal jelly component 10-hydroxy-2-decenoic acid protects against bone loss by inhibiting NF-kB signaling downstream of FFAR4.

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