Meltem Gumus, Buse Gunaydın-Turker, Nilufer Akgun-Unal, Elif Gulbahce-Mutlu, Saltuk Bugra Baltaci, Omer Unal, Rasim Mogulkoc, Abdulkerim Kasim Baltaci
This study investigated the effects of maternal zinc deficiency and post-weaning zinc status on neuroendocrine markers associated with pubertal regulation in female rat offspring. A total of 40 female rats were divided into four groups: zinc deficiency (G1; MZD + ZD), standard diet (G2; MZD + SD), zinc supplementation (G3; MZD + ZnS), and control (G4; CON). Groups G1-G3 were obtained from mothers with zinc deficiency, while G4 was obtained from mothers fed a standard diet. The procedures lasted 45 days. GATAD1, kisspeptin, GnRH, and NPY gene expressions in hypothalamic tissues were analyzed by RT-PCR; serum kisspeptin, GnRH, FSH, LH, leptin, and NPY levels were analyzed by ELISA. The lowest GATAD1, kisspeptin, and NPY gene expressions were found in groups G1 and G2 (p < 0.05), while the lowest GnRH expression was found in group G1 (p < 0.05). Serum zinc, kisspeptin, GnRH, LH, and leptin levels were lowest in G1 (p < 0.05) and highest in G3 and G4 (p < 0.05). Similarly, FSH and NPY levels were low in G1 and G2 (p < 0.05), and high in G3 and G4 (p < 0.05). The findings suggest that maternal zinc deficiency negatively impacts puberty-related neuroendocrine markers, and that zinc supplementation may correct these markers.