Spatiotemporal expression of NGFR during pre‐natal human tooth development
K. B. Becktor, Hansen Bf, Dorrit S Nolting, Inger Kjær
Abstract
K. B. Becktor, Hansen Bf, Dorrit S Nolting, Inger Kjær
Abstract
OBJECTIVES: The relation between nerve growth factor receptor (NGFR) in the human pre-natal tooth buds and the dental follicle was investigated. In particular, we sought to determine if there is a specific pattern of p75NGFR expression in developing human tooth buds and their surrounding tissue. SETTING AND SAMPLE POPULATION: The Department of Orthodontics at Copenhagen University, Denmark. Histological sections from 11 fetuses, aged 11-21 gestational weeks. METHOD: The sections were studied by conventional immunohistochemistry. RESULTS: Specific spatiotemporal patterns of p75NGFR reactions were observed in the tooth buds and dental follicle: Before matrix production by the ameloblasts, the entire inner enamel epithelium and the entire dental follicle display p75NGFR immunoreactivity; after matrix production is initiated, the immunoreactivity of the matrix producing cells is lost, as is that of the dental follicle adjacent to these matrix-producing cells. CONCLUSION: A unique spatiotemporal distribution of NGFR in the pre-eruptive human tooth bud was demonstrated.
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OBJECTIVES: The relation between nerve growth factor receptor (NGFR) in the human pre-natal tooth buds and the dental follicle was investigated. In particular, we sought to determine if there is a specific pattern of p75NGFR expression in developing human tooth buds and their surrounding tissue. SETTING AND SAMPLE POPULATION: The Department of Orthodontics at Copenhagen University, Denmark. Histological sections from 11 fetuses, aged 11-21 gestational weeks. METHOD: The sections were studied by conventional immunohistochemistry. RESULTS: Specific spatiotemporal patterns of p75NGFR reactions were observed in the tooth buds and dental follicle: Before matrix production by the ameloblasts, the entire inner enamel epithelium and the entire dental follicle display p75NGFR immunoreactivity; after matrix production is initiated, the immunoreactivity of the matrix producing cells is lost, as is that of the dental follicle adjacent to these matrix-producing cells. CONCLUSION: A unique spatiotemporal distribution of NGFR in the pre-eruptive human tooth bud was demonstrated.
Key concepts: Dental follicle, Ameloblast, Immunohistochemistry, Dental papilla, Matrix (chemical analysis), Follicle, Population, Human tooth