International audienceEnamel and enameloid, the highly mineralized tooth-covering tissues in living vertebrates, are different in their matrix composition. Enamel, a unique product of ameloblasts, principally contains enamel matrix proteins (EMPs), while enameloid possesses collagen fibrils and probably receives contributions from both odontoblasts and ameloblasts. Here we focused on type I collagen (COL1A1) and amelogenin (AMEL) gene expression during enameloid and enamel formation throughout ontogeny in the caudate amphibian, Pleurodeles waltl. In this model, pre-metamorphic teeth possess enameloid and enamel, while post-metamorphic teeth possess enamel only. In first-generation teeth, qPCR and in situ hybridization (ISH) on sections reve...
Enamel formation requires the involvement of secretory calcium-binding phosphoproteins. Three of the...
The extracellular tooth enamel matrix is a unique, protein-rich environment that provides the struct...
Abstract Background The molecular bases explaining the diversity of dental tissue mineralization acr...
International audienceEnamel and enameloid, the highly mineralized tooth-covering tissues in living ...
International audienceWell studied in mammals, amelogenesis is less known at the molecular level in ...
Amelotin (AMTN) is an ameloblast-secreted protein that belongs to the secretory calcium-binding phos...
International audienceAmelotin (AMTN) is an ameloblast-secreted protein that belongs to the secretor...
International audienceBackground: Amelotin (AMTN) is an ameloblast-secreted protein that belongs to ...
Comparative expression of the four enamel matrix protein genes, amelogenin, ameloblastin, enamelin a...
International audienceBackground : In a recent study, we have demonstrated that amelotin (AMTN) gene...
As the major enamel matrix protein contributing to tooth development, amelogenin has been demonstrat...
Amelotin (AMTN) is an ameloblast-secreted protein that belongs to the secretory calcium-binding phos...
We have previously identified amelotin (AMTN) as a novel protein expressed predominantly during the ...
Odontogenesis is extensively studied in animal models but less understood in human. In early ameloge...
UnrestrictedAmelotin is an enamel-specific gene product, and it’s expression under normal circumstan...
Enamel formation requires the involvement of secretory calcium-binding phosphoproteins. Three of the...
The extracellular tooth enamel matrix is a unique, protein-rich environment that provides the struct...
Abstract Background The molecular bases explaining the diversity of dental tissue mineralization acr...
International audienceEnamel and enameloid, the highly mineralized tooth-covering tissues in living ...
International audienceWell studied in mammals, amelogenesis is less known at the molecular level in ...
Amelotin (AMTN) is an ameloblast-secreted protein that belongs to the secretory calcium-binding phos...
International audienceAmelotin (AMTN) is an ameloblast-secreted protein that belongs to the secretor...
International audienceBackground: Amelotin (AMTN) is an ameloblast-secreted protein that belongs to ...
Comparative expression of the four enamel matrix protein genes, amelogenin, ameloblastin, enamelin a...
International audienceBackground : In a recent study, we have demonstrated that amelotin (AMTN) gene...
As the major enamel matrix protein contributing to tooth development, amelogenin has been demonstrat...
Amelotin (AMTN) is an ameloblast-secreted protein that belongs to the secretory calcium-binding phos...
We have previously identified amelotin (AMTN) as a novel protein expressed predominantly during the ...
Odontogenesis is extensively studied in animal models but less understood in human. In early ameloge...
UnrestrictedAmelotin is an enamel-specific gene product, and it’s expression under normal circumstan...
Enamel formation requires the involvement of secretory calcium-binding phosphoproteins. Three of the...
The extracellular tooth enamel matrix is a unique, protein-rich environment that provides the struct...
Abstract Background The molecular bases explaining the diversity of dental tissue mineralization acr...