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聚苯乙烯纳米塑料及其降解产物对干细胞命运的影响。

Effect of polystyrene nanoplastics and their degraded forms on stem cell fate.

机构信息

School of Chemical Engineering, Sungkyunkwan University, Suwon 16419, Republic of Korea.

Center for Nanoparticle Research, Institute for Basic Science (IBS), Seoul 08826, Republic of Korea; School of Chemical and Biological Engineering, and Institute of Chemical Processes, Seoul National University, Seoul 08826, Republic of Korea.

出版信息

J Hazard Mater. 2022 May 15;430:128411. doi: 10.1016/j.jhazmat.2022.128411. Epub 2022 Feb 2.

Abstract

Several studies have examined the effects of micro- and nanoplastics on microbes, cells, and the environment. However, only a few studies have examined their effects-especially, those of their reduced cohesiveness-on cell viability and physiology. We synthesized surfactant-free amine-functionalized polystyrene (PS) nanoparticles (NPs) and PS-NPs with decreased crosslinking density (DPS-NPs) without changing other factors, such as size, shape, and zeta potential and examined their effects on cell viability and physiology. PS- and DPS-NPs exhibited reactive oxygen species (ROS) scavenging activity by upregulating GPX3 expression and downregulating HSP70 (ROS-related gene) and XBP1 (endoplasmic reticulum stress-related gene) expression in human bone marrow-derived mesenchymal stem cells (hBM-MSCs). Additionally, they led to upregulation of MFN2 (mitochondrial fusion related gene) expression and downregulation of FIS1 (mitochondrial fission related gene) expression, indicating enhanced mitochondrial fusion in hBM-MSCs. Cell-cycle analysis revealed that PS- and DPS-NPs increased the proportion of cells in the S phase, indicating that they promoted cell proliferation and, specifically, the adipogenic differentiation of hBM-MSCs. However, the cytotoxicity of DPS-NPs against hBM-MSCs was higher than that of PS-NPs after long-term treatment under adipogenic conditions.

摘要

已有多项研究探讨了微塑料和纳米塑料对微生物、细胞和环境的影响。然而,仅有少数研究考察了它们的效应,尤其是它们的低内聚性对细胞活力和生理学的影响。我们合成了无表面活性剂的胺功能化聚苯乙烯(PS)纳米颗粒(NPs)和交联密度降低的 PS-NPs(DPS-NPs),没有改变其他因素,如大小、形状和 Zeta 电位,并考察了它们对细胞活力和生理学的影响。PS 和 DPS-NPs 通过上调 GPX3 表达和下调 HSP70(ROS 相关基因)和 XBP1(内质网应激相关基因)的表达,在人骨髓间充质干细胞(hBM-MSCs)中表现出活性氧(ROS)清除活性。此外,它们还导致 MFN2(线粒体融合相关基因)表达上调和 FIS1(线粒体分裂相关基因)表达下调,表明 hBM-MSCs 中的线粒体融合增强。细胞周期分析显示,PS 和 DPS-NPs 增加了 S 期细胞的比例,表明它们促进了细胞增殖,特别是 hBM-MSCs 的成脂分化。然而,在成脂条件下长期处理后,DPS-NPs 对 hBM-MSCs 的细胞毒性高于 PS-NPs。

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