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尿液和血浆中氧化应激生物标志物在新加坡六家印刷中心操作人员中的变化及其与打印机排放纳米颗粒暴露的几个度量指标的关系。

Biomarkers of oxidative stress in urine and plasma of operators at six Singapore printing centers and their association with several metrics of printer-emitted nanoparticle exposures.

机构信息

Department of Biomedical and Nutritional Sciences, Zuckerberg College of Health Sciences, University of Massachusetts Lowell, Lowell, MA, USA.

Center for Nanotechnology and Nanotoxicology, Harvard T.H. Chan School of Public Health, Boston, MA, USA.

出版信息

Nanotoxicology. 2022 Nov-Dec;16(9-10):913-934. doi: 10.1080/17435390.2023.2175735. Epub 2023 Feb 12.

Abstract

Inhalation of nanoparticles emitted from toner-based printing equipment (TPE), such as laser printers and photocopiers, also known as PEPs, has been associated with systemic inflammation, hypertension, cardiovascular disease, respiratory disorders, and genotoxicity. Global serum metabolomics analysis in 19 healthy TPE operators found 52 dysregulated biomolecules involved in upregulation of inflammation, immune, and antioxidant responses and downregulation of cellular energetics and cell proliferation. Here, we build on the metabolomics study by investigating the association of a panel of nine urinary OS biomarkers reflecting DNA/RNA damage (8OHdG, 8OHG, and 5OHMeU), protein/amino acid oxidation (o-tyrosine, 3-chlorotyrosine, and 3-nitrotyrosine), and lipid oxidation (8-isoprostane, 4-hydroxy nonenal, and malondialdehyde [MDA]), as well as plasma total MDA and total protein carbonyl (TPC), with several nanoparticle exposure metrics in the same 19 healthy TPE operators. Plasma total MDA, urinary 5OHMeU, 3-chlorotyrosine, and 3-nitrotyrosine were positively, whereas o-tyrosine inversely and statistically significantly associated with PEPs exposure in multivariate models, after adjusting for age and urinary creatinine. Urinary 8OHdG, 8OHG, 5OHMeU, and total MDA in urine and plasma had group mean values higher than expected in healthy controls without PEPs exposure and comparable to those of workers experiencing low to moderate levels of oxidative stress (OS). The highest exposure group had OS biomarker values, most notably 8OHdG, 8OHG, and total MDA, that compared to workers exposed to welding fumes and titanium dioxide. Particle number concentration was the most sensitive and robust exposure metric. A combination of nanoparticle number concentration and OS potential of fresh aerosols is recommended for larger scale future studies.

摘要

基于墨粉的打印设备(TPE),如激光打印机和复印机,所排放的纳米颗粒的吸入,也被称为 PEP,与全身炎症、高血压、心血管疾病、呼吸道疾病和遗传毒性有关。在 19 名健康的 TPE 操作人员中进行的全球血清代谢组学分析发现,有 52 种失调的生物分子参与了炎症、免疫和抗氧化反应的上调,以及细胞能量和细胞增殖的下调。在这里,我们在代谢组学研究的基础上,通过调查反映 DNA/RNA 损伤(8OHdG、8OHG 和 5OHMeU)、蛋白质/氨基酸氧化(o-酪氨酸、3-氯酪氨酸和 3-硝基酪氨酸)和脂质氧化(8-异前列腺素、4-羟基壬烯醛和丙二醛[MDA])的九个尿液 OS 生物标志物的面板与同一 19 名健康 TPE 操作人员中的多个纳米颗粒暴露指标的相关性,来进一步研究。在多变量模型中,在调整年龄和尿肌酐后,血浆总 MDA、尿 5OHMeU、3-氯酪氨酸和 3-硝基酪氨酸与 PEP 暴露呈正相关,而 o-酪氨酸呈负相关且具有统计学意义。尿液和血浆中的尿 8OHdG、8OHG、5OHMeU 和总 MDA 的组平均值高于无 PEP 暴露的健康对照者的预期值,且与经历低至中度氧化应激(OS)的工人相当。最高暴露组的 OS 生物标志物值最高,尤其是 8OHdG、8OHG 和总 MDA,与接触焊接烟尘和二氧化钛的工人相比。颗粒数浓度是最敏感和最稳健的暴露指标。建议在未来更大规模的研究中,结合纳米颗粒数浓度和新鲜气溶胶的 OS 潜力进行研究。

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