{"title":"Internalized polystyrene nanoplastics trigger testicular damage and promote ferroptosis via CISD1 downregulation in mouse spermatocyte.","authors":"Jing Lv, Guangyu Liu, Ziqi Wang, Jueshun Zhang, Yuanyou Li, Yifan Wang, Ning Liu, Shayakhmetova Altyn, Zhongliang Jiang","doi":"10.1186/s12951-025-03620-7","DOIUrl":null,"url":null,"abstract":"<p><strong>Background: </strong>There is a growing body of research regarding the potential reproductive toxicity of microplastics and nanoplastics. However, the underlying mechanisms by which nanoplastics exposure adversely affects the testes remain poorly understood. Our study aims to clarify the relationship between ferritinophagy and mitochondrial dysfunction based on polystyrene nanoplastics (PS-NPs)-caused testicular damage in mice.</p><p><strong>Results: </strong>The current study demonstrates that 50 nm PS-NPs accumulate in mouse testes and lead to a decrease in sperm quality and disruption of spermatocyte. Furthermore, PS-NPs trigger ferroptosis in GC-2 cells, which can be mitigated by deferiprone and 3-methyladenine. Further investigation reveals that PS-NPs initially aggregate in lysosomes and subsequently transfer to the mitochondria. This process increases mitochondrial Fe<sup>2+</sup> and mitochondrial ROS levels, as well as reduces the expression of CISD1, a protein that inhibits the uptake and transport of Fe<sup>2+</sup> into the mitochondrial matrix. These changes ultimately result in disturbances to mitochondrial structure and function. In terms of mechanism, pioglitazone, a drug that stabilizes CISD1, has been demonstrated to mitigate ferroptosis induced by NCOA4-mediated ferritinophagy in GC-2 cells.</p><p><strong>Conclusions: </strong>Our results indicate that PS-NPs cause mouse testicular damage through ferroptosis. Mechanistically, we confirmed that PS-NPs trigger NCOA4-mediated ferritinophagy and CISD1 downregulation in spermatocyte, which aggravates the flow of ferrous iron from the cytoplasm to the mitochondria.</p>","PeriodicalId":16383,"journal":{"name":"Journal of Nanobiotechnology","volume":"23 1","pages":"537"},"PeriodicalIF":10.6000,"publicationDate":"2025-07-24","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Nanobiotechnology","FirstCategoryId":"5","ListUrlMain":"https://doi.org/10.1186/s12951-025-03620-7","RegionNum":1,"RegionCategory":"生物学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q1","JCRName":"BIOTECHNOLOGY & APPLIED MICROBIOLOGY","Score":null,"Total":0}
引用次数: 0
Abstract
Background: There is a growing body of research regarding the potential reproductive toxicity of microplastics and nanoplastics. However, the underlying mechanisms by which nanoplastics exposure adversely affects the testes remain poorly understood. Our study aims to clarify the relationship between ferritinophagy and mitochondrial dysfunction based on polystyrene nanoplastics (PS-NPs)-caused testicular damage in mice.
Results: The current study demonstrates that 50 nm PS-NPs accumulate in mouse testes and lead to a decrease in sperm quality and disruption of spermatocyte. Furthermore, PS-NPs trigger ferroptosis in GC-2 cells, which can be mitigated by deferiprone and 3-methyladenine. Further investigation reveals that PS-NPs initially aggregate in lysosomes and subsequently transfer to the mitochondria. This process increases mitochondrial Fe2+ and mitochondrial ROS levels, as well as reduces the expression of CISD1, a protein that inhibits the uptake and transport of Fe2+ into the mitochondrial matrix. These changes ultimately result in disturbances to mitochondrial structure and function. In terms of mechanism, pioglitazone, a drug that stabilizes CISD1, has been demonstrated to mitigate ferroptosis induced by NCOA4-mediated ferritinophagy in GC-2 cells.
Conclusions: Our results indicate that PS-NPs cause mouse testicular damage through ferroptosis. Mechanistically, we confirmed that PS-NPs trigger NCOA4-mediated ferritinophagy and CISD1 downregulation in spermatocyte, which aggravates the flow of ferrous iron from the cytoplasm to the mitochondria.
期刊介绍:
Journal of Nanobiotechnology is an open access peer-reviewed journal communicating scientific and technological advances in the fields of medicine and biology, with an emphasis in their interface with nanoscale sciences. The journal provides biomedical scientists and the international biotechnology business community with the latest developments in the growing field of Nanobiotechnology.