Differential genomic effects of four nano-sized and one micro-sized CeO2 particles on HepG2 cells

IF 0.7 4区 材料科学 Q3 Materials Science Materials Express Pub Date : 2023-10-01 DOI:10.1166/mex.2023.2527
Sheau-Fung Thai, Carlton P. Jones, Brian L. Robinette, Hongzu Ren, Beena Vallanat, Anna Fisher, Kirk T. Kitchin
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Abstract

The objective of this research was to perform a genomics study of five cerium oxide particles, 4 nano and one micrometer-sized particles which have been studied previously by our group with respect to cytotoxicity, biochemistry and metabolomics. Human liver carcinoma HepG2 cells were exposed to between 0.3 to 300 ug/ml of CeO 2 particles for 72 hours and then total RNA was harvested. Fatty acid accumulation was observed with W4, X5, Z7 and less with Q but not Y6.The gene expression changes in the fatty acid metabolism genes correlated the fatty acid accumulation we detected in the prior metabolomics study for the CeO 2 particles named W4, Y6, Z7 and Q, but not for X5. In particular, the observed genomics effects on fatty acid uptake and fatty acid oxidation offer a possible explanation of why many CeO 2 particles increase cellular free fatty acid concentrations in HepG2 cells. The major genomic changes observed in this study were sirtuin, ubiquitination signaling pathways, NRF2-mediated stress response and mitochondrial dysfunction. The sirtuin pathway was affected by many CeO 2 particle treatments. Sirtuin signaling itself is sensitive to oxidative stress state of the cells and may be an important contributor in CeO 2 particle induced fatty acid accumulation. Ubiquitination pathway regulates many protein functions in the cells, including sirtuin signaling, NRF2 mediated stress, and mitochondrial dysfunction pathways. NRF2-mediated stress response and mitochondrial were reported to be altered in many nanoparticles treated cells. All these pathways may contribute to the fatty acid accumulation in the CeO 2 particle treated cells.
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四种纳米级和一种微型CeO2颗粒对HepG2细胞的差异基因组效应
本研究的目的是对5个氧化铈颗粒,4个纳米和1个微米大小的颗粒进行基因组学研究,这些颗粒在细胞毒性,生物化学和代谢组学方面已经被我们的团队研究过。将人肝癌HepG2细胞暴露于0.3 ~ 300 ug/ml的ceo2颗粒中72小时,然后收集总RNA。W4、X5、Z7均有脂肪酸积累,Q较少,Y6无。脂肪酸代谢基因的表达变化与我们在之前的代谢组学研究中检测到的W4、Y6、Z7和Q的ceo2颗粒的脂肪酸积累相关,而与X5无关。特别是,观察到的基因组学对脂肪酸摄取和脂肪酸氧化的影响可能解释了为什么许多ceo2颗粒会增加HepG2细胞中的细胞游离脂肪酸浓度。本研究中观察到的主要基因组变化是sirtuin、泛素化信号通路、nrf2介导的应激反应和线粒体功能障碍。sirtuin通路受到多种ceo2粒子处理的影响。Sirtuin信号本身对细胞的氧化应激状态敏感,可能是ceo2颗粒诱导的脂肪酸积累的重要因素。泛素化途径调节细胞内多种蛋白质功能,包括sirtuin信号、NRF2介导的应激和线粒体功能障碍途径。据报道,在许多纳米颗粒处理的细胞中,nrf2介导的应激反应和线粒体发生了改变。所有这些途径都可能导致脂肪酸在ceo2颗粒处理的细胞中积累。
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来源期刊
Materials Express
Materials Express NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
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69
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>12 weeks
期刊介绍: Information not localized
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