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1.
Wnt10a regulates dentin sialophosphoprotein mRNA expression and possibly links odontoblast differentiation and tooth morphogenesis // Differentiation, 2007. Vol. 75, N 5.-С.452-462

2.
Wnt10a regulates dentin sialophosphoprotein mRNA expression and possibly links odontoblast differentiation and tooth morphogenesis // Differentiation, 2007. Vol. 75, N 5.-С.452-462

3.
The taming of the shrew milk teeth // Evol. and Dev., 2008. Vol. 10, N 4.-С.477-486

4.
Tummers The importance of signal pathway modulation in all aspects of tooth development // J. Exp. Zool. B, 2009. Vol. 312, N 4.-С.309-319

5.
Tummers The importance of signal pathway modulation in all aspects of tooth development // J. Exp. Zool. B, 2009. Vol. 312, N 4.-С.309-319

6.
Syndecan from embryonic tooth mesenchyme binds tenascin // J. Biol. Chem., 1991. Vol. 266, N 12.-С.7733-7739

7.
Vainio Syndecan and tenascin expression is induced by epithelial-mesenchymal interactions in embryonic tooth mesenchyme // J. Cell. Biol., 1989. Vol. 108, N 5.-С.1945-1954

8.
Rice Regulation of Twist, Snail, and Id1 is conserved between the developing murine palate and tooth // Dev. Dyn., 2005. Vol. 234, N 1.-С.28-35

9.
Nonindependence of mammalian dental characters // Nature. -Gr. Brit., 2004. Vol. 432, N 7014.-С.211-214

10.
Neutrophin mRNA expression in the developing tooth suggests multiple roles in innervation and organogenesis // Dev. Dyn., 1997. Vol. 210, N 2.-С.117-129

11.
Luukko Neurturin mRNA expression suggests roles in trigeminal innervation of the first branchial arch and in tooth formation // Dev. Dyn., 1998. Vol. 213, N 2.-С.207-219

12.
Molecular mechanisms of cell and tissue interactions during early tooth development // Anat. Rec., 1996. Vol. 245, N 2.-С.151-161

13.
Modulation of activin/bone morphogenetic protein signaling by follistatin is required for the morphogenesis of mouse molar teeth // Dev. Dyn., 2004. Vol. 231, N 1.-С.98-108

14.
Midkine (MK), a heparin-binding growth/differentiation factor, is regulated by retinoic acid and epithelial-mesenchymal interactions in the developing mouse tooth, and affects cell proliferation and morphogenesis // J. Cell Biol., 1995. Vol. 129, N 1.-С.267-281

15.
Localization of putative stem cells in dental epithelium and their association with Notch and FGF signaling // J. Cell Biol., 1999. Vol. 147, N 1.-С.105-120

16.
Thesleff Immunohistochemical localization of matrix components and cell surface receptors in developing teeth // Wiss. Z. Humboldt-Univ. Berlin. R. Med., 1989. Vol. 38, N 3.-С.249-251

17.
Histological observations of teech and peridental tissues in cleidocranial dysplasia imply increased activity of odontogenic epithelium and abnormal bone remodeling // J. Craniofaciaal Genet. and Dev. Biol., 1995. Vol. 15, N 4.-С.212-221

18.
Rice Foxc1 integrates Fgf and Bmp signalling independently of twist of Noggin during calvarial bone development // Dev. Dyn., 2005. Vol. 233, N 3.-С.847-852

19.
Rice Foxc1 integrates Fgf and Bmp signalling independently of twist of Noggin during calvarial bone development // Dev. Dyn., 2005. Vol. 233, N 3.-С.847-852

20.
Expressoin of Foxi3 is Regulated by ectodysplasin in skin appendage placodes // Dev. Dyn., 2013. Vol. 242, N 6.-С.593-603

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