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Changes in pituitary and prolactin cells of Wistar rats after two dental fillings with bisphenolic resins
Authors:Velasco-Marinero Eva  Herrero-Payo Julio J  Carretero-González José
Affiliation:aDepartment of Surgery, University of Salamanca, Spain;bDepartment of Anatomy, University of Salamanca, Spain
Abstract:Bisphenol-A (BPA) is used to manufacture dental materials such as sealants, fillings and cements. There is evidence of its estrogenic effects on recipients after the placement of dental sealants. Pituitary and especially prolactin (PRL) cells are targets for estrogens.

Objectives

The aim of this research was to determine if BPA eluted from dental resins can alter the proliferation of pituitary cells and PRL cells in the short, medium and long term in a case-control assay.

Methods

Two dental fillings were inserted in the lower incisors of Wistar rats divided into groups sacrificed after one, three, five and seven months. Immunocytochemical treatment was carried out in order to determine proliferating cell nuclear antigen (PCNA) positive cells, PRL-positive cells, PRL- and PCNA-positive cells.

Results

A significant increase of PCNA-positive cells after one (p < 0.05), three (p < 0.01) and five months (p < 0.01) was recorded. PRL-positive cells showed no statistically significant difference between intervened animals and controls. PRL- and PCNA-positive cells manifested a significant increase after five months (p < 0.05). A significant decrease in proliferating cells was observed after seven months (p < 0.05) for PCNA-positive cells and (p < 0.01) for PRL- and PCNA-positive cells.

Conclusion

Low quantities of BPA eluted during mastication can affect immunocytochemical patterns of pituitary cells, increasing cellular proliferation in the short, medium and long term although PRL cell population remained unaffected after dental fillings.
Keywords:Bisphenol-A   Prolactin cells   Pituitary cells   Cell proliferation   Bisphenolic resins   Proliferating cell nuclear antigen   Immunocytochemistry   Endocrine disruptor
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