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多组学分析揭示聚氯乙烯微塑料对BEAS-2B细胞的毒性。

Multi-Omics Analysis Reveals the Toxicity of Polyvinyl Chloride Microplastics toward BEAS-2B Cells.

作者信息

Liu Chengzhi, Chen Shuang, Chu Jiangliang, Yang Yifan, Yuan Beilei, Zhang Huazhong

机构信息

College of Safety Science and Engineering, Nanjing Tech University, Nanjing 210009, China.

Department of Emergency Medicine, The First Affiliated Hospital of Nanjing Medical University, Nanjing 210029, China.

出版信息

Toxics. 2024 May 30;12(6):399. doi: 10.3390/toxics12060399.

Abstract

Polyvinyl chloride microplastics (PVC-MPs) are microplastic pollutants widely present in the environment, but their potential risks to human lung health and underlying toxicity mechanisms remain unknown. In this study, we systematically analyzed the effects of PVC-MPs on the transcriptome and metabolome of BEAS-2B cells using high-throughput RNA sequencing and untargeted metabolomics technologies. The results showed that exposure to PVC-MPs significantly reduced the viability of BEAS-2B cells, leading to the differential expression of 530 genes and 3768 metabolites. Further bioinformatics analyses showed that PVC-MP exposure influenced the expression of genes associated with fluid shear stress, the MAPK and TGF-β signaling pathways, and the levels of metabolites associated with amino acid metabolism. In particular, integrated pathway analysis showed that lipid metabolic pathways (including glycerophospholipid metabolism, glycerolipid metabolism, and sphingolipid metabolism) were significantly perturbed in BEAS-2B cells following PVC-MPs exposure. This study provides new insights and targets for a deeper understanding of the toxicity mechanism of PVC-MPs and for the prevention and treatment of PVC-MP-associated lung diseases.

摘要

聚氯乙烯微塑料(PVC-MPs)是广泛存在于环境中的微塑料污染物,但其对人类肺部健康的潜在风险及潜在毒性机制仍不清楚。在本研究中,我们使用高通量RNA测序和非靶向代谢组学技术,系统分析了PVC-MPs对BEAS-2B细胞转录组和代谢组的影响。结果表明,暴露于PVC-MPs显著降低了BEAS-2B细胞的活力,导致530个基因和3768种代谢物的差异表达。进一步的生物信息学分析表明,PVC-MP暴露影响了与流体剪切应力、MAPK和TGF-β信号通路相关的基因表达,以及与氨基酸代谢相关的代谢物水平。特别是,综合通路分析表明,PVC-MPs暴露后,BEAS-2B细胞中的脂质代谢途径(包括甘油磷脂代谢、甘油酯代谢和鞘脂代谢)受到显著干扰。本研究为深入了解PVC-MPs的毒性机制以及预防和治疗与PVC-MP相关的肺部疾病提供了新的见解和靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9267/11209221/04521f109266/toxics-12-00399-g001.jpg

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