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Ferroptosis is involved in trophoblast cells cytotoxicity induced by black phosphorus nanoparticles

滋养层 毒性 男科 细胞毒性 脂质过氧化 生殖毒性 活力测定 胎盘 化学 生物 药理学 细胞生物学 生物化学 胎儿 细胞 氧化应激 体外 医学 怀孕 有机化学 遗传学
作者
Ruolan You,Yaming Mu,Jiaqi Zhou,Chunying Wang,Zhenya Fang,Yu Liu,Shiyu Liu,Qingfeng Zhai,Changqing Zhang
出处
期刊:Toxicology [Elsevier]
卷期号:505: 153810-153810 被引量:2
标识
DOI:10.1016/j.tox.2024.153810
摘要

Black phosphorus (BP) is a new type of nanomaterial, which has been widely used in many biomedical fields due to its superior properties, but there are few studies on the toxicity of BP, especially in the reproductive system. To explore the effects of BP exposure on reproduction and reveal its molecular mechanism, we firstly investigated the potential toxicity of black phosphorus nanoparticles (BPNPs) in vivo. The results showed that BP exposure in pregnant mice can reduce the weight of fetal mice and placenta. H&E staining further indicated the changes of placental cross-section and vascular remodeling after BP treatment. Then, human exvillous trophoblast HTR8/SVneo was treated with different concentrations of BPNPs. We found that BPNPs induced significant cytotoxicity, including dose-dependent reduction of cell viability and proliferation. Trophoblast cell migration and invasion were also impaired by BPNPs exposure. Moreover, pretreatment with Cytochalasin D (Cyto-D), a classical phagocytic inhibitor, alleviated the decline of cell viability induced by BPNPs. Transcriptome sequencing showed that BPNPs exposure led to ferroptosis. Subsequently, the related indexes of iron death were detected, including increase of iron ion concentration, decrease of the ferroptosis marker, GPX4 (Glutathione Peroxidase 4), increase of FTL (Ferritin Light Chain), and the increase of lipid peroxidation indexes (MDA level and decrease of GSH level). In addition, ferroptosis inhibitor (Fer-1 and DFO) pretreatment can alleviate both the cytotoxic effects and functional impairment induced by BPNPs. In summary, our study confirmed the reproductive toxicity of BPNPs for the first time, and constructed BPNPs injury model in vitro using human villus ectotrophoblast cells and revealed the role of ferroptosis in this process, which deepened our understanding of the biosafety of black phosphorus nanomaterials.
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