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Published on: December 28, 2021
2,8-Dihydroxyquinoline ameliorates oligoasthenozoospermia by inhibiting MAPK14-mediated spermatogonial ferroptosis
Wei Fu1, Sirui Wu2, Yongting Yan2
1Department of Andrology, Shenzhen Bao'an Chinese Medicine Hospital, The Seventh Clinical School of Guangzhou University of Traditional Chinese Medicine, Shenzhen, China. fuwei84@gzucm.edu.cn.
Background:
Oligoasthenozoospermia (OAS) is a major cause of male infertility. 2,8-Dihydroxyquinoline (2,8-DHQ), an endogenous antioxidant metabolite, remains unexplored in OAS. This study identified 2,8-DHQ as a bioactive XHBG metabolite and elucidated its mechanisms in improving OAS.
Methods And Results:
Male BALB/c mice received glycosides of Tripterygium wilfordii (GTW) (140 mg/kg/day, oral gavage) for 4 weeks to induce OAS, confirmed by marked reductions in testicular/epididymal weights, sperm concentration, serum testosterone, and severe seminiferous tubule disruption. Then, mice were treated with XHBG (10.4, 20.8, 41.6 g/kg/day) or 2,8-DHQ (50 mg/kg/day) for another 4 weeks. Integrative network pharmacology and serum metabolomics identified 2,8-DHQ as a key bioactive metabolite of XHBG, with 137 overlapping targets with OAS. In H2O2-challenged GC-1 spermatogonia, the DARTS assay confirmed direct binding of 2,8-DHQ to Mitogen-Activated Protein Kinase 14 (MAPK14), and Western blot revealed its downregulation. 2,8-DHQ enhanced GC-1 cell viability and, in OAS mice, restored testicular weight, sperm count, testosterone, and histological architecture. Mechanistically, 2,8-DHQ lowered ROS and MDA, elevated GSH/GSSG ratio, reduced Fe2+ levels, and upregulated SLC7A11 and GPX4, indicating suppression of oxidative stress and ferroptosis. Importantly, MAPK14 overexpression abolished these protective effects both in vitro and in vivo, confirming that 2,8-DHQ acts via targeting MAPK14 to inhibit ferroptosis.
Conclusion:
2,8-DHQ, an active metabolite of XHBG, ameliorates OAS by targeting MAPK14 to inhibit spermatogonial ferroptosis. These findings provide a scientific basis for the clinical use of XHBG and highlight 2,8-DHQ as a potential lead compound for male infertility.
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