Nanoplastics (NPs) can penetrate the intestinal barrier of organisms and accumulate in the liver, thereby inducing hepatocyte apoptosis. However, the underlying mechanisms remain incompletely elucidated. This study examined the effects of PS-NPs exposure on hepatocyte apoptosis and revealed the role of cell cycle arrest and mitophagy. The C57BL/6 mice were administered a diet containing 100Â nm and 500Â nm PS-NPs at a concentration of 0.1Â g/kg for 180Â days, respectively. TUNEL staining confirmed that 100Â nm PS-NPs induced more pronounced apoptosis compared to 500Â nm PS-NPs in mouse liver. Mechanistically, proteomic analysis revealed that Pdcd2l, associated with the S phase of cell cycle and apoptosis, exhibited the highest fold changes among all detected proteins in 100Â nm and 500Â nm PS-NPs exposure groups. Notably, the expression of Tbc1d17, Bcl2l13, and Pgam5 involved in mitophagosome formation in mouse liver was upregulated by 100Â nm PS-NPs but not by 500Â nm PS-NPs; moreover, mitophagosomes were observed in HepG2 cells exposed to 100Â nm PS-NPs. Additionally, 100Â nm PS-NPs internalized by HepG2 cells could penetrate lysosomes. The protein levels of Igf2r and Rab7a were altered, and p62 mRNA expression was increased in mouse liver, suggesting 100Â nm PS-NPs, but not 500Â nm PS-NPs, impaired lysosomal function and subsequently inhibited mitophagy degradation. Collectively, 500Â nm PS-NPs induced Pdcd2l-mediated cell cycle arrest, thereby exacerbating hepatocyte apoptosis; while 100Â nm PS-NPs not only triggered similar levels of cell cycle arrest as 500Â nm PS-NPs, but also disrupted mitophagy, which was also associated with hepatocyte apoptosis.
Proteomics reveals that nanoplastics with different sizes induce hepatocyte apoptosis in mice through distinct mechanisms involving mitophagy dysregulation and cell cycle arrest.
蛋白质组学研究表明,不同尺寸的纳米塑料通过不同的机制诱导小鼠肝细胞凋亡,这些机制涉及线粒体自噬失调和细胞周期停滞
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作者:Lu Yan-Yang, Hua Weizhen, Sun Yiqiong, Lu Lu, Ren Hongyun, Huang Qingyu
| 期刊: | Toxicology Research | 影响因子: | 2.100 |
| 时间: | 2024 | 起止号: | 2024 Nov 12; 13(6):tfae188 |
| doi: | 10.1093/toxres/tfae188 | 研究方向: | 细胞生物学 |
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