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Integrated Transcriptomics Metabolomics and Lipidomics Profiling in Rat Lung Blood and Serum for Assessment of Laser Printer-Emitted Nanoparticle Inhalation Exposure-Induced Disease Risks

机译:大鼠肺血液和血清中的综合转录组学代谢组学和脂质组学分析用于评估激光打印机发射的纳米粒子吸入暴露引起的疾病风险

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摘要

Laser printer-emitted nanoparticles (PEPs) generated from toners during printing represent one of the most common types of life cycle released particulate matter from nano-enabled products. Toxicological assessment of PEPs is therefore important for occupational and consumer health protection. Our group recently reported exposure to PEPs induces adverse cardiovascular responses including hypertension and arrythmia via monitoring left ventricular pressure and electrocardiogram in rats. This study employed genome-wide mRNA and miRNA profiling in rat lung and blood integrated with metabolomics and lipidomics profiling in rat serum to identify biomarkers for assessing PEPs-induced disease risks. Whole-body inhalation of PEPs perturbed transcriptional activities associated with cardiovascular dysfunction, metabolic syndrome, and neural disorders at every observed time point in both rat lung and blood during the 21 days of exposure. Furthermore, the systematic analysis revealed PEPs-induced transcriptomic changes linking to other disease risks in rats, including diabetes, congenital defects, auto-recessive disorders, physical deformation, and carcinogenesis. The results were also confirmed with global metabolomics profiling in rat serum. Among the validated metabolites and lipids, linoleic acid, arachidonic acid, docosahexanoic acid, and histidine showed significant variation in PEPs-exposed rat serum. Overall, the identified PEPs-induced dysregulated genes, molecular pathways and functions, and miRNA-mediated transcriptional activities provide important insights into the disease mechanisms. The discovered important mRNAs, miRNAs, lipids and metabolites may serve as candidate biomarkers for future occupational and medical surveillance studies. To the best of our knowledge, this is the first study systematically integrating in vivo, transcriptomics, metabolomics, and lipidomics to assess PEPs inhalation exposure-induced disease risks using a rat model.
机译:在打印过程中,由碳粉产生的激光打印机发射的纳米颗粒(PEP)代表了纳米产品中生命周期释放的最常见类型之一。因此,PEP的毒理学评估对于保护职业和消费者健康非常重要。我们的小组最近报道,通过监测大鼠的左心室压力和心电图,暴露于PEP会诱发不利的心血管反应,包括高血压和心律失常。这项研究采用了大鼠肺和血液中全基因组的mRNA和miRNA分析以及大鼠血清中的代谢组学和脂质组学分析,以鉴定用于评估PEPs诱发疾病风险的生物标志物。在暴露的21天中,在每个观察到的时间点,在大鼠肺和血液中,全身吸入PEP都会扰乱与心血管功能障碍,代谢综合征和神经系统疾病相关的转录活性。此外,系统分析表明,PEPs诱导的转录组变化与大鼠的其他疾病风险相关,包括糖尿病,先天性缺陷,自身隐性疾病,身体变形和致癌作用。大鼠血清中的整体代谢组学图谱也证实了该结果。在验证的代谢物和脂质中,亚油酸,花生四烯酸,二十二碳六烯酸和组氨酸在暴露于PEPs的大鼠血清中显示出显着差异。总的来说,确定的PEPs诱导的基因,分子途径和功能失调以及miRNA介导的转录活性失调,为了解疾病机理提供了重要见识。被发现的重要的mRNA,miRNA,脂质和代谢物可以作为未来的职业和医学监测研究的候选生物标志物。据我们所知,这是第一项系统地整合体内,转录组学,代谢组学和脂质组学的研究,旨在使用大鼠模型评估PEP吸入暴露引起的疾病风险。

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