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广泛的时间转录组和微小RNA分析确定了多壁碳纳米管诱导人肺细胞线粒体功能障碍的分子机制。

Extensive temporal transcriptome and microRNA analyses identify molecular mechanisms underlying mitochondrial dysfunction induced by multi-walled carbon nanotubes in human lung cells.

作者信息

Nymark Penny, Wijshoff Peter, Cavill Rachel, van Herwijnen Marcel, Coonen Maarten L J, Claessen Sandra, Catalán Julia, Norppa Hannu, Kleinjans Jos C S, Briedé Jacob J

机构信息

Department of Toxicogenomics, Maastricht University , Maastricht , The Netherlands .

出版信息

Nanotoxicology. 2015;9(5):624-35. doi: 10.3109/17435390.2015.1017022. Epub 2015 Apr 1.

Abstract

Understanding toxicity pathways of engineered nanomaterials (ENM) has recently been brought forward as a key step in twenty-first century ENM risk assessment. Molecular mechanisms linked to phenotypic end points is a step towards the development of toxicity tests based on key events, which may allow for grouping of ENM according to their modes of action. This study identified molecular mechanisms underlying mitochondrial dysfunction in human bronchial epithelial BEAS 2B cells following exposure to one of the most studied multi-walled carbon nanotubes (Mitsui MWCNT-7). Asbestos was used as a positive control and a non-carcinogenic glass wool material was included as a negative fibre control. Decreased mitochondrial membrane potential (MMP↓) was observed for MWCNTs at a biologically relevant dose (0.25 μg/cm(2)) and for asbestos at 2 μg/cm(2), but not for glass wool. Extensive temporal transcriptomic and microRNA expression analyses identified a 330-gene signature (including 26 genes with known mitochondrial function) related to MWCNT- and asbestos-induced MMP↓. Forty-nine of the MMP↓-associated genes showed highly similar expression patterns over time (six time points) and the majority was found to be regulated by two transcription factors strongly involved in mitochondrial homeostasis, APP and NRF1. In addition, four miRNAs were correlated with MMP↓ and one of them, miR-1275, was found to negatively correlate with a large part of the MMP↓-associated genes. Cellular processes such as gluconeogenesis, mitochondrial LC-fatty acid β-oxidation and spindle microtubule function were enriched among the MMP↓-associated genes and miRNAs. These results are expected to be useful in the identification of key events in ENM-related toxicity pathways for the development of molecular screening techniques.

摘要

了解工程纳米材料(ENM)的毒性途径最近已被视为21世纪ENM风险评估的关键步骤。与表型终点相关的分子机制是朝着基于关键事件开发毒性测试迈出的一步,这可能允许根据ENM的作用模式对其进行分组。本研究确定了人类支气管上皮BEAS 2B细胞在暴露于研究最多的多壁碳纳米管之一(三井MWCNT-7)后线粒体功能障碍的分子机制。石棉用作阳性对照,非致癌玻璃棉材料用作阴性纤维对照。在生物相关剂量(0.25μg/cm²)下观察到MWCNT和在2μg/cm²下观察到石棉时线粒体膜电位降低(MMP↓),但玻璃棉未出现这种情况。广泛的时间转录组和微小RNA表达分析确定了一个与MWCNT和石棉诱导的MMP↓相关的330个基因的特征(包括26个具有已知线粒体功能的基因)。49个与MMP↓相关的基因在不同时间(六个时间点)表现出高度相似的表达模式,并且发现大多数受两个强烈参与线粒体稳态的转录因子APP和NRF1调节。此外,四个微小RNA与MMP↓相关,其中之一miR-1275被发现与大部分与MMP↓相关的基因呈负相关。糖异生、线粒体LC-脂肪酸β-氧化和纺锤体微管功能等细胞过程在与MMP↓相关的基因和微小RNA中富集。这些结果有望有助于识别ENM相关毒性途径中的关键事件,以开发分子筛选技术。

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