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Fluoride alters connexin expression in rat incisor pulp
V A Centeno1, P A Fontanetti1, V Interlandi1
1Department of Biological Chemistry, School of Dentistry, National University of Córdoba, Córdoba, Argentina.
Archives of Oral Biology
|December 2, 2014
Summary
Chronic sodium fluoride (NaF) exposure in rats increased connexin 43 (Cx43) expression and alkaline phosphatase (ALP) activity in dental pulp, potentially stimulating dentin mineralization. Incisor growth was affected, but mandibular growth remained unchanged.
Area of Science:
- Dental tissue development and mineralization
- Toxicology of fluoride compounds
- Cellular communication via connexins
Background:
- Connexins (Cxs) are crucial for regulating dental tissue growth and differentiation.
- Fluoride exposure can impact dental development, but its precise effects on connexin expression and pulp activity are not fully understood.
Purpose of the Study:
- To investigate the effects of chronic sodium fluoride (NaF) exposure on connexin expression and alkaline phosphatase (ALP) activity in dental pulp.
- To assess the impact of NaF on the morphometric parameters of adult rat mandible and incisors.
Main Methods:
- Three groups of male Wistar rats were exposed to varying concentrations of NaF (0, 10, and 50 mg/L) in drinking water for eight weeks.
- Connexin 32, 43, and 45 gene expression was analyzed using semi-quantitative RT-PCR.
- Alkaline phosphatase (ALP) activity and morphometric parameters of mandible and incisors were measured.
Main Results:
- NaF exposure led to a dose-dependent increase in Cx43 gene expression.
- ALP activity was significantly higher in rats exposed to higher NaF concentrations.
- Incisor diameter decreased in the highest NaF group, while mandibular growth parameters were unaffected.
Conclusions:
- Fluorotic alterations in rat incisors are linked to elevated Cx43 expression and ALP activity.
- Changes in connexin expression patterns in pulp tissue suggest a role in modulating dentin mineralization.
- NaF exposure impacts incisor morphology and pulp biochemistry, with potential implications for dentin formation.

