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褪黑素通过调节精原细胞中的铁自噬和铁代谢来减轻镉引发的铁死亡。

Melatonin alleviates ferroptosis triggered by cadmium via regulating ferritinophagy and iron metabolism in spermatogonia.

作者信息

Jia Didi, Huang Wei, Yin Qizi, Wang Han, Wang Ziyue, Zhang Mingming, Gong Wenjing, Wang Rong, Zhu Yan, Ji Yanli

机构信息

Department of Health Inspection and Quarantine, School of Public Health, Anhui Medical University, Hefei, Anhui, China.

The First Affiliated Hospital of Wannan Medical College, Wuhu, Anhui, China.

出版信息

Sci Rep. 2025 Mar 14;15(1):8910. doi: 10.1038/s41598-025-93822-8.

Abstract

Melatonin (Mel), a classical antioxidant, has the potential to mediate ferroptosis. Cadmium (Cd) poses a substantial threat to the male reproductive system, as it can induce testicular injury by triggering ferroptosis. The study aimed to explore the protective role and mechanism of Mel in Cd-induced ferroptosis in spermatogonia (spg). Our results demonstrated that Cd disrupted the mitochondrial ultrastructure and induced more autophagosomes in spg. Exposure to Cd resulted in a reduction of the mitochondrial membrane potential of the cells. The transcriptomics analysis revealed significant differences in gene expression associated with ferroptosis and autophagy. Mel could reverse the changes caused by Cd in the genes mentioned above. Furthermore, Cd increased cellular iron content and elevated reactive oxygen species levels, which induced oxidative stress in spg. Mel pretreatment reduced iron accumulation and oxidative damage caused by Cd exposure. Additional studies demonstrated that Cd exposure activated NCOA4-mediated ferritinophagy in spg. Mel pretreatment, as anticipated, inhibited the increased the mRNA and protein expression of ATG5, LC3B, and NCOA4 caused by Cd, ameliorated Cd-caused iron overload and oxidative stress, and protected spg from ferroptosis. Our study provides a therapeutic basis for the use of Mel to treat Cd-induced testicular injury.

摘要

褪黑素(Mel)作为一种经典的抗氧化剂,具有介导铁死亡的潜力。镉(Cd)对男性生殖系统构成重大威胁,因为它可通过引发铁死亡诱导睾丸损伤。本研究旨在探讨Mel在Cd诱导的精原细胞(spg)铁死亡中的保护作用及机制。我们的结果表明,Cd破坏了spg中的线粒体超微结构并诱导产生了更多自噬体。暴露于Cd导致细胞线粒体膜电位降低。转录组学分析揭示了与铁死亡和自噬相关的基因表达存在显著差异。Mel可以逆转Cd对上述基因所造成的变化。此外,Cd增加了细胞内铁含量并提高了活性氧水平,从而在spg中诱导氧化应激。Mel预处理减少了Cd暴露所导致的铁积累和氧化损伤。进一步的研究表明,Cd暴露激活了spg中NCOA4介导的铁蛋白自噬。正如预期的那样,Mel预处理抑制了Cd引起的ATG5、LC3B和NCOA4的mRNA和蛋白表达增加,改善了Cd导致的铁过载和氧化应激,并保护spg免受铁死亡。我们的研究为使用Mel治疗Cd诱导的睾丸损伤提供了治疗依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c50/11909107/04d8d3bbc497/41598_2025_93822_Fig1_HTML.jpg

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