Effects of naringenin on superovulation in mice: evaluation of zygote and blastocyst development, histopathology, and molecular docking insights

Context Naringenin is a citrus-derived flavanone with documented antioxidant, anti-inflammatory, and steroidogenic modulatory properties; yet, its effects under gonadotropin-stimulated superovulation have not been investigated. Aims This study evaluated the impact of naringenin co-administration during a pregnant mare serum gonadotropin (PMSG)/human chorionic gonadotropin (hCG) superovulation protocol on zygote yield, preimplantation embryo development, and ovarian and endometrial morphology in CD-1 mice. Methods Twenty-four females (8–10 weeks) received PMSG with either naringenin (20 mg/kg intraperitoneally; n = 12) or dimethyl sulfoxide vehicle (n = 12), followed by hCG 48 h later and mating with fertile males. Pronuclear-stage embryos were collected from oviducts 14–16 h post-mating and cultured in vitro for 96 h; cleavage and blastocyst formation were assessed at 24 h and 96 h respectively. Ovarian and uterine tissues were evaluated histopathologically. Key results Naringenin treatment significantly increased total zygote yield. Although cleavage rate was lower in the naringenin group (45% vs 53%), blastocyst formation among cleaved embryos was markedly higher (47% vs 25%). Treated animals exhibited significantly greater corpora lutea count, corpora lutea:cell ratio, ovarian diameter, and endometrial thickness. In silico molecular docking predicted favourable binding affinities of naringenin towards the progesterone receptor and follicle-stimulating hormone receptor, generating a computational hypothesis consistent with these in vivo findings. Conclusions Naringenin enhances blastocyst developmental competence and post-ovulatory ovarian parameters under superovulation conditions. Implications These findings support the potential of naringenin as an adjunct to gonadotropin-based reproductive biotechnology protocols.

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Journal
Reproduction Fertility and Development
Published
2026-10-02
DOI
https://doi.org/10.1071/rd26141
Primary Topic
Reproductive Biology and Fertility
Type
article
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article

Effects of naringenin on superovulation in mice: evaluation of zygote and blastocyst development, histopathology, and molecular docking insights

Hasan Ali Çay, Hidayet Tutun, Nilüfer Vural, Muhammet Mükerrem KAYA et al.
Reproduction Fertility and Development
Reproductive Biology and Fertility
article

Effects of naringenin on superovulation in mice: evaluation of zygote and blastocyst development, histopathology, and molecular docking insights

Hasan Ali Çay, Hidayet Tutun, Nilüfer Vural, Muhammet Mükerrem KAYA, Leyla Elif Ozgü Ayozger, Ayhan Ata, Sibel Kaymak, Ramazan Arslan
article en

Abstract

Context Naringenin is a citrus-derived flavanone with documented antioxidant, anti-inflammatory, and steroidogenic modulatory properties; yet, its effects under gonadotropin-stimulated superovulation have not been investigated. Aims This study evaluated the impact of naringenin co-administration during a pregnant mare serum gonadotropin (PMSG)/human chorionic gonadotropin (hCG) superovulation protocol on zygote yield, preimplantation embryo development, and ovarian and endometrial morphology in CD-1 mice. Methods Twenty-four females (8–10 weeks) received PMSG with either naringenin (20 mg/kg intraperitoneally; n = 12) or dimethyl sulfoxide vehicle (n = 12), followed by hCG 48 h later and mating with fertile males. Pronuclear-stage embryos were collected from oviducts 14–16 h post-mating and cultured in vitro for 96 h; cleavage and blastocyst formation were assessed at 24 h and 96 h respectively. Ovarian and uterine tissues were evaluated histopathologically. Key results Naringenin treatment significantly increased total zygote yield. Although cleavage rate was lower in the naringenin group (45% vs 53%), blastocyst formation among cleaved embryos was markedly higher (47% vs 25%). Treated animals exhibited significantly greater corpora lutea count, corpora lutea:cell ratio, ovarian diameter, and endometrial thickness. In silico molecular docking predicted favourable binding affinities of naringenin towards the progesterone receptor and follicle-stimulating hormone receptor, generating a computational hypothesis consistent with these in vivo findings. Conclusions Naringenin enhances blastocyst developmental competence and post-ovulatory ovarian parameters under superovulation conditions. Implications These findings support the potential of naringenin as an adjunct to gonadotropin-based reproductive biotechnology protocols.

Reproduction Fertility and DevelopmentVol. 38(15)
Aksaray University (TR), Ankara University (TR), Fatih Sultan Mehmet Waqf University (TR), Burdur Mehmet Akif Ersoy Üniversitesi (TR)
Openalex Percentile: Top 9%
Reproductive Biology and Fertility
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