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1.
Biocell ; Biocell;33(1): 39-47, Apr. 2009. ilus
Article de Anglais | LILACS | ID: lil-595028

RÉSUMÉ

Progenitor cells play an important biological role in tooth and bone formation, and previous analyses during bone and dentine induction have indicated that they may be a good alternative for tissue engineering. Thus, to clarify the influence of the microenvironment on protein and gene expression, MDPC-23 cells (mouse dental papilla cell line) and KUSA/A1 cells (bone marrow stromal cell line) were used, both in vitro cell culture and in intra-abdominal diffusion chambers implanted in 4-week-old male immunodefficient mice (SCID mice). Our results indicate that KUSA/A1 cells differentiated into osteoblast-like cells and induced bone tissue inside the chamber, whereas, MDPC-23 showed odontoblast-like characteristics but with a low ability to induce dentin formation. This study shows that MDPC-23 cells are especial cel ls, which possess morphological and functional characteristics of odontoblast-like cells expressing dentin sialophosphoprotein in vivo. In contrast, dentin sialophosphoprotein gene and protein expression was not detected in both cell lines in vitro. The intra-abdominal diffusion chamber appears as an interesting experimental model for studying phenotypic expression of dental pulp cells in vivo.


Sujet(s)
Mâle , Animaux , Souris , Collagène de type I/biosynthèse , Collagène de type I/génétique , Odontoblastes/cytologie , Odontoblastes/métabolisme , Régénération osseuse/physiologie , Régénération osseuse/génétique , Sialoglycoprotéines/biosynthèse , Sialoglycoprotéines/génétique , Os et tissu osseux/cytologie , Os et tissu osseux/métabolisme , Souris SCID , Ostéocalcine/biosynthèse , Ostéocalcine/génétique , Ostéonectine/biosynthèse , Ostéonectine/génétique , Ostéopontine/biosynthèse , Ostéopontine/génétique
2.
Biocell ; Biocell;33(1): 39-47, Apr. 2009. ilus
Article de Anglais | BINACIS | ID: bin-127215

RÉSUMÉ

Progenitor cells play an important biological role in tooth and bone formation, and previous analyses during bone and dentine induction have indicated that they may be a good alternative for tissue engineering. Thus, to clarify the influence of the microenvironment on protein and gene expression, MDPC-23 cells (mouse dental papilla cell line) and KUSA/A1 cells (bone marrow stromal cell line) were used, both in vitro cell culture and in intra-abdominal diffusion chambers implanted in 4-week-old male immunodefficient mice (SCID mice). Our results indicate that KUSA/A1 cells differentiated into osteoblast-like cells and induced bone tissue inside the chamber, whereas, MDPC-23 showed odontoblast-like characteristics but with a low ability to induce dentin formation. This study shows that MDPC-23 cells are especial cel ls, which possess morphological and functional characteristics of odontoblast-like cells expressing dentin sialophosphoprotein in vivo. In contrast, dentin sialophosphoprotein gene and protein expression was not detected in both cell lines in vitro. The intra-abdominal diffusion chamber appears as an interesting experimental model for studying phenotypic expression of dental pulp cells in vivo.(AU)


Sujet(s)
Mâle , Animaux , Souris , Régénération osseuse/génétique , Régénération osseuse/physiologie , Collagène de type I/biosynthèse , Collagène de type I/génétique , Odontoblastes/cytologie , Odontoblastes/métabolisme , Sialoglycoprotéines/biosynthèse , Sialoglycoprotéines/génétique , Os et tissu osseux/cytologie , Os et tissu osseux/métabolisme , Ostéocalcine/biosynthèse , Ostéocalcine/génétique , Ostéonectine/biosynthèse , Ostéonectine/génétique , Ostéopontine/biosynthèse , Ostéopontine/génétique , Souris SCID
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