Toxic effects of gadolinium on spermatogenesis are associated with inflammation, oxidative stress, apoptosis and autophagy

精子发生 自噬 细胞凋亡 TBARS公司 氧化应激 氧化磷酸化 精子 下调和上调 生殖毒性 化学 活性氧 细胞生物学 毒性 生物 蛋白激酶B 内分泌学 内科学 程序性细胞死亡 信号转导 药理学 细胞毒性 致癌物 平衡 体外 脂质过氧化 男科
作者
Sara Falvo,Giulia Grillo,Massimo Venditti,Gabriella Chieffi Baccari,Maria Maddalena Di Fiore,Tiziana Cappello,Maria Maisano,Giuseppe Petito,Rosalba Senese,Concetta De Stefano,Giuseppe Zaffino,Alessandra Santillo
出处
期刊:Toxicology [Elsevier BV]
卷期号:519: 154335-154335
标识
DOI:10.1016/j.tox.2025.154335
摘要

The widespread use of gadolinium (Gd) in industrial and medical applications has raised concerns about its environmental persistence, particularly in water and soil. Once ingested, Gd may exert toxic effects on various organs, but its impact on male reproductive health remains largely unexplored. This study investigated the effects of orally administered GdCl₃ or Gd₂O₃ on spermatogenesis and sperm quality in adult rats. To this purpose, male rats were allowed to drink GdCl3 or Gd2O3 (10-20-40 mg/Kg bw) for 4 weeks. Gd exposure triggered a strong inflammatory response, evidenced by NF-κB activation and increased TNFα and IL-6 levels in serum and testis. This was accompanied by oxidative stress, as indicated by elevated TBARS levels, as well as apoptosis and autophagy processes activation. Notably, Gd-treated animals exhibited a downregulation of spermatogenesis-related proteins (PCNA, p-H3, SYCP3, PRM2). Histological analysis revealed morphological and morphometric alterations in the seminiferous tubules, along with compromised sperm quality. To explore the cellular mechanisms, in vitro experiments were carried out using mouse GC-1 spermatogonial cells treated with GdCl₃ or Gd₂O₃ for 24 h. Gd exposure resulted in cytotoxicity and reduced cell proliferation, with decreased levels of p-ERK1/2 and PCNA. Gd exposure also disrupted oxidative homeostasis and induced autophagy and apoptosis, likely through the inhibition of the AKT signaling pathway. This study provides the first evidence that oral Gd exposure adversely affects spermatogenesis through inflammation, oxidative stress, and impairment of key cellular pathways, highlighting Gd as a potential environmental threat to male reproductive health.
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