Mechanistic insights into zinc oxide nanoparticles induced embryotoxicity via H3K9me3 modulation

材料科学 纳米颗粒 调制(音乐) 纳米技术 冶金 哲学 美学
作者
Xuemei Liu,Jie Li,Ling Zhu,Jiayu Huang,Qi Zhang,Jianwu Wang,Juan Xie,Qiang Dong,Zhen Zou,Guoning Huang,Qi Gu,Jianyu Wang,Jingyu Li
出处
期刊:Biomaterials [Elsevier]
卷期号:311: 122679-122679
标识
DOI:10.1016/j.biomaterials.2024.122679
摘要

The widespread application of nanoparticles (NPs) in various fields has raised health concerns, especially in reproductive health. Our research has shown zinc oxide nanoparticles (ZnONPs) exhibit the most significant toxicity to pre-implantation embryos in mice compared to other common NPs. In patients undergoing assisted reproduction technology (ART), a significant negative correlation was observed between Zn concentration and clinical outcomes. Therefore, this study explores the impact of ZnONPs exposure on pre-implantation embryonic development and its underlying mechanisms. We revealed that both in vivo and in vitro exposure to ZnONPs impairs pre-implantation embryonic development. Moreover, ZnONPs were found to reduce the pluripotency of mouse embryonic stem cells (mESCs), as evidenced by teratoma and diploid chimera assays. Employing multi-omics approaches, including RNA-Seq, CUT&Tag, and ATAC-seq, the embryotoxicity mechanisms of ZnONPs were elucidated. The findings indicate that ZnONPs elevate H3K9me3 levels, leading to increased heterochromatin and consequent inhibition of gene expression related to development and pluripotency. Notably, Chaetocin, a H3K9me3 inhibitor, sucessfully reversed the embryotoxicity effects induced by ZnONPs. Additionally, the direct interaction between ZnONPs and H3K9me3 was verified through pull-down and immunoprecipitation assays. Collectively, these findings offer new insights into the epigenetic mechanisms of ZnONPs toxicity, enhancing our understanding of their impact on human reproductive health.
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