Naproxen administration affects murine late folliculogenesis, reduces granulosa cell proliferation and the number of ovulated oocytes

Naproxen reduces the production of prostaglandins via inhibition of the cyclooxygenase. Studies have shown that its administration in women can be related to failed ovulation. Therefore, preclinical investigations must be performed in order to investigate its effects in experimental models. Thus, th...

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Published inReproductive toxicology (Elmsford, N.Y.) Vol. 124; p. 108527
Main Authors Nascimento, Bernardo Camara, Ferreira, Camila Stefane, Oliveira, Stella Pollyanne, Pereira, Luiza Aparecida Ansaloni Chagas, Lopes, Guilherme Antonio, Nogueira, Júlia Meireles, Paula, Rayan Silva, Jorge, Erika Cristina, Campos-Junior, Paulo Henrique Almeida
Format Journal Article
LanguageEnglish
Published United States Elsevier Inc 01.03.2024
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Summary:Naproxen reduces the production of prostaglandins via inhibition of the cyclooxygenase. Studies have shown that its administration in women can be related to failed ovulation. Therefore, preclinical investigations must be performed in order to investigate its effects in experimental models. Thus, the aim of this study was to evaluate the effects of naproxen on murine folliculogenesis, ovulation, and female fertility. Female C57BL/6 mice (n = 128 - 6 weeks old) were divided into Control, low (10 mg/kg), and high naproxen (50 mg/kg) groups, who were treated for 8 days and directed to morphofunctional analyses. Follicular quantification showed a reduced percentage of antral follicles in naproxen-treated animals. These treated animals also showed smaller oocytes included in secondary and antral follicles, and the diameter of secondary and antral follicles was also reduced. A reduction in the percentage of Ki67-positive granulosa cells was observed in treated animals that also showed down-regulation of Igf1r compared to control. After an ovarian stimulation protocol, naproxen-treated animals showed a reduction in the percentage of secondary and antral follicles, a reduced number of ovulated oocytes and, corpora lutea, and an increased number of failed ovulations. Finally, naproxen-treated animals also showed a reduction in mating index and pregnancy rate. Our findings suggested that, in mice, naproxen administration (eight days treatment) negatively affects molecular and morphological aspects related to late folliculogenesis, ovulation, and fertility. •Naproxen administration reduces the antral follicle population.•Naproxen administration altered Igf1r expression and granulosa cells proliferation.•The ovulation rate, after superstimulation, is altered by naproxen treatment.
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ISSN:0890-6238
1873-1708
1873-1708
DOI:10.1016/j.reprotox.2023.108527