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1. OFCD syndrome and extraembryonic defects are revealed by conditional mutation of the Polycomb-group repressive complex 1.1 (PRC1.1) gene BCOR

2. Runx2Regulates Mouse Tooth Root Development Via Activation of<scp>WNT</scp>InhibitorNOTUM

3. Spatiotemporal single-cell regulatory atlas reveals neural crest lineage diversification and cellular function during tooth morphogenesis

4. BMP Signaling in Regulating Mesenchymal Stem Cells in Incisor Homeostasis

5. Arid1a-Plagl1-Hh signaling is indispensable for differentiation-associated cell cycle arrest of tooth root progenitors

6. Lhx6 regulates canonical Wnt signaling to control the fate of mesenchymal progenitor cells during mouse molar root patterning

7. Runx2-Twist1 interaction coordinates cranial neural crest guidance of soft palate myogenesis

8. Reciprocal interaction between mesenchymal stem cells and transit amplifying cells regulates tissue homeostasis

9. Constitutive activation of hedgehog signaling adversely affects epithelial cell fate during palatal fusion

10. Ror2-mediated non-canonical Wnt signaling regulates Cdc42 and cell proliferation during tooth root development

11. Dynamic activation of Wnt, Fgf, and Hh signaling during soft palate development

12. Antagonistic interaction between Ezh2 and Arid1a coordinates root patterning and development via Cdkn2a in mouse molars

13. Runx2+ Niche Cells Maintain Incisor Mesenchymal Tissue Homeostasis through IGF Signaling

14. Secretion of Shh by a Neurovascular Bundle Niche Supports Mesenchymal Stem Cell Homeostasis in the Adult Mouse Incisor

15. The suture provides a niche for mesenchymal stem cells of craniofacial bones

16. BMP signaling orchestrates a transcriptional network to control the fate of mesenchymal stem cells in mice

17. Dlx5-FGF10 signaling cascade controls cranial neural crest and myoblast interaction during oropharyngeal patterning and development

18. Intraflagellar transport 88 (IFT88) is crucial for craniofacial development in mice and is a candidate gene for human cleft lip and palate

19. Generation and characterization of tamoxifen-inducible Pax9-CreER knock-in mice using CrispR/Cas9

20. Ring1a/b polycomb proteins regulate the mesenchymal stem cell niche in continuously growing incisors

21. Contribution of mesoderm to the developing dental papilla

22. Perivascular Stem Cells at the Tip of Mouse Incisors Regulate Tissue Regeneration

23. An Nfic-hedgehog signaling cascade regulates tooth root development

24. BMP-SHH signaling network controls epithelial stem cell fate via regulation of its niche in the developing tooth

25. Perivascular cells as mesenchymal stem cells

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