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首页> 外文期刊>Nanotoxicology >Silver, titanium dioxide, and zinc oxide nanoparticles trigger miRNA/isomiR expression changes in THP-1 cells that are proportional to their health hazard potential
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Silver, titanium dioxide, and zinc oxide nanoparticles trigger miRNA/isomiR expression changes in THP-1 cells that are proportional to their health hazard potential

机译:银,二氧化钛和氧化锌纳米颗粒触发MiRNA / Isomir表达的变化,其与其健康危险潜力成比例

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After over a decade of nanosafety research, it is indisputable that the vast majority of nano-sized particles induce a plethora of adverse cellular responses - the severity of which is linked to the material's physicochemical properties. Differentiated THP-1 cells were previously exposed for 6 h and 24 h to silver, titanium dioxide, and zinc oxide nanoparticles at the maximum molar concentration at which no more than 15% cellular cytotoxicity was observed. All three nanoparticles differed in extent of induction of biological pathways corresponding to immune response signaling and metal ion homeostasis. In this study, we integrated gene and miRNA expression profiles from the same cells to propose miRNA biomarkers of adverse exposure to metal-based nanoparticles. We employed RNA sequencing together with a quantitative strategy that also enables analysis of the overlooked repertoire of length and sequence miRNA variants called isomiRs. Whilst only modest changes in expression were observed within the first 6 h of exposure, the miRNA/isomiR (miR) profiles of each nanoparticle were unique. Via canonical correlation and pathway enrichment analyses, we identified a co-regulated miR-mRNA cluster, predicted to be highly relevant for cellular response to metal ion homeostasis. These miRs were annotated to be canonical or variant isoforms of hsa-miR-142-5p, -342-3p, -5100, -6087, -6894-3p, and -7704. Hsa-miR-5100 was differentially expressed in response to each nanoparticle in both the 6 h and 24 h exposures. Taken together, this co-regulated miR-mRNA cluster could represent potential biomarkers of sub-toxic metal-based nanoparticle exposure.
机译:经过十多年的纳米安全研究,绝对的大多数纳米尺寸颗粒诱导过多的不良细胞反应 - 其严重程度与材料的物理化学性质相关联。将分化的THP-1细胞预先暴露于6小时和24小时,向银,二氧化钛和氧化锌纳米颗粒处,在最大摩尔浓度下观察到不超过15%的细胞毒性。所有三个纳米颗粒在诱导对应于免疫响应信号和金属离子稳态的生物途径的程度上不同。在该研究中,我们综合来自同一细胞的基因和miRNA表达谱,提出了金属基纳米颗粒不良暴露的mirNA生物标志物。我们使用RNA测序与定量策略一起进行,也能够分析称为ISOMIR的长度和序列MiRNA变体的忽略的曲目。在暴露的前6小时内仅观察到表达时的适度变化,而每种纳米颗粒的miRNA / Isomir(miR)曲线是独特的。通过规范相关和途径富集分析,我们鉴定了共调控的miR-mRNA簇,预测对金属离子稳态的细胞反应非常相关。这些MIR被注释为CON-MIR-142-5P,-342-3P,-5100,6087,-6894-3P和-7704的典型或变体同种型。 HSA-MIR-5100响应于6小时和24小时暴露的每个纳米颗粒差异表达。这种共调解的miR-mRNA簇可以代表亚毒性金属基纳米粒子暴露的潜在生物标志物。

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