Ursonic acid attenuates spermatogenesis in oligozoospermia mice through inhibiting ferroptosis

[Display omitted] •Ursonic acid was shown to improve sperm concentration and reverse testicular damage efficiently in mouse with oligozoospermia.•Ursonic acid mitigates oxidative damage and regulates serum hormones in a mouse model of oligozoospermia.•Ursonic acid improves oligozoospermia by inhibit...

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Veröffentlicht in:Bioorganic chemistry 2024-03, Vol.144, p.107174-107174, Article 107174
Hauptverfasser: Dong, Jin, Dong, Yanli, Chen, Hanqing, Ye, Taowen, Chen, Guangtong, Fan, Boyi, Wang, Xiaorong, Shi, Jianwu, Wang, Chengniu
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Sprache:eng
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Zusammenfassung:[Display omitted] •Ursonic acid was shown to improve sperm concentration and reverse testicular damage efficiently in mouse with oligozoospermia.•Ursonic acid mitigates oxidative damage and regulates serum hormones in a mouse model of oligozoospermia.•Ursonic acid improves oligozoospermia by inhibiting ferroptosis through SLC7A11-GPX4 axis. Ursonic acid (UNA) is a natural pentacyclic triterpene found in some medicinal plants and foods. The reproductive protective effect of UNA was evaluated in a mouse model of oligozoospermia induced by busulfan (BUS) at 30 mg/kg b.w.. The mice were initially divided into groups with UNA concentrations of 10, 30, 50, 100 mg/kg. Subsequently, based on sperm parameters, the optimal concentration of 50 mg/kg was identified. As a control, an additional group was supplemented with ursolic acid at a concentration of 50 mg/kg. The results indicated that BUS caused the loss of spermatogenic cells in testis, the decrease of sperm in epididymis, the disorder of testicular cytoskeleton, the decrease of serum sex hormones such as testosterone which induced an increase in feedback of androgen receptor and other testosterone-related proteins, the increase of malondialdehyde and reactive oxygen species levels and the increase of ferroptosis in testis while UNA successfully reversed these injuries. High-throughput sequencing revealed that UNA administration significantly upregulated the expression of genes associated with spermatogenesis, such as Tnp1, Tnp2, Prm1, among others. These proteins are crucial in the histone to protamine transition during sperm chromatin remodeling. Network pharmacology analysis reveals a close association between UNA and proteins related to the transformation of histones to protamine. Molecular docking studies reveal that UNA can interact with the ferroptosis-inhibiting gene SLC7A11, thereby modulating ferroptosis. Taken together, UNA alleviated BUS-induced oligozoospermia by regulating hormone secretion, mitigating oxidative stress and promoting recovery of spermatogenesis by inhibiting the ferroptosis.
ISSN:0045-2068
1090-2120
DOI:10.1016/j.bioorg.2024.107174