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肺部暴露于富含金属的焊接纳米颗粒后外周血单个核细胞中的氧化应激、DNA甲基化和端粒长度变化

Oxidative Stress, DNA Methylation, and Telomere Length Changes in Peripheral Blood Mononuclear Cells after Pulmonary Exposure to Metal-Rich Welding Nanoparticles.

作者信息

Shoeb Mohammad, Kodali Vamsi K, Farris Breanne Y, Bishop Lindsey M, Meighan Terence G, Salmen Rebecca, Eye Tracy, Friend Sherri, Schwegler-Berry Diane, Roberts Jenny R, Zeidler-Erdely Patti C, Erdely Aaron, Antonini James M

机构信息

Health Effects Laboratory Division, National Institute for Occupational Safety and Health, Morgantown, WV 26505 USA.

出版信息

NanoImpact. 2017 Jan;5:61-69. doi: 10.1016/j.impact.2017.01.001.

Abstract

Welding fume is a complex mixture of different potentially cytotoxic and genotoxic metals, such as chromium (Cr), manganese (Mn), nickel (Ni), and iron (Fe). Documented health effects have been observed in workers exposed to welding fume. The objective of the study was to use an animal model to identify potential biomarkers of epigenetic changes (e.g., changes in telomere length, DNA methylation) in isolated peripheral blood mononuclear cells (PBMCs) after exposure to different welding fumes. Male Sprague-Dawley rats were exposed by intratracheal instillation (ITI) of 2.0 mg/rat of gas metal arc-mild steel (GMA-MS) or manual metal arc-stainless steel (MMA-SS) welding fume. Vehicle controls received sterile saline by ITI. At 4 h, 14 h, 1 d, 3 d, 10 d, and 30 d, bronchoalveolar lavage (BAL) was performed to assess lung inflammation. Whole blood was collected, and PBMCs were isolated. Dihydroethidium (DHE) fluorescence and 4-hydroxylnonenal protein adduct (P-HNE) formation were measured in PBMCs to assess reactive oxygen species (ROS) production. DNA alterations in PBMCs were determined by evaluating changes in DNA methylation and telomere length. Metal composition of the two fumes was different: MMA-SS (41 % Fe, 29 % Cr, 17 % Mn, 3 % Ni) versus GMA-MS (85 % Fe, 14 % Mn). The more soluble and chemically complex MMA-SS sample induced a more persistent and greater inflammatory response compared to the other groups. Also, oxidative stress markers increased at 24 h in the PBMCs recovered from the MMA-SS group compared to other group. No significant differences were observed when comparing DNA methylation between the welding fume and control groups at any of the time points, whereas the MMA-SS sample significantly increased telomere length at 1 and 30 d after a single exposure compared to the other groups. These findings suggest that genotoxic metals in MMA-SS fume (e.g., Cr and Ni), that are absent in the GMA-MS fume, may enhance lung toxicity, as well as induce markers of oxidative stress and increase telomere length in PBMCs. Importantly, the measurement of telomere length in cells isolated from peripheral blood may serve as a potential biomarker of response in the assessment of toxicity associated with welding fumes.

摘要

焊接烟尘是不同的具有潜在细胞毒性和基因毒性的金属的复杂混合物,如铬(Cr)、锰(Mn)、镍(Ni)和铁(Fe)。已观察到接触焊接烟尘的工人出现了有记录的健康影响。本研究的目的是使用动物模型来确定暴露于不同焊接烟尘后,分离的外周血单个核细胞(PBMC)中表观遗传变化(如端粒长度、DNA甲基化变化)的潜在生物标志物。通过气管内滴注(ITI),给雄性Sprague-Dawley大鼠分别注入2.0mg/只的气体保护金属电弧焊-低碳钢(GMA-MS)或手工金属电弧焊-不锈钢(MMA-SS)焊接烟尘。溶剂对照组通过ITI接受无菌生理盐水。在4小时、14小时、1天、3天、10天和30天时,进行支气管肺泡灌洗(BAL)以评估肺部炎症。采集全血并分离PBMC。在PBMC中测量二氢乙锭(DHE)荧光和4-羟基壬烯醛蛋白加合物(P-HNE)的形成,以评估活性氧(ROS)的产生。通过评估DNA甲基化和端粒长度的变化来确定PBMC中的DNA改变。两种烟尘的金属成分不同:MMA-SS(41%Fe、29%Cr、17%Mn、3%Ni)与GMA-MS(85%Fe、14%Mn)。与其他组相比,更易溶且化学性质更复杂的MMA-SS样品诱导了更持久、更强烈地炎症反应。此外,与其他组相比,从MMA-SS组回收的PBMC中氧化应激标志物在24小时时增加。在任何时间点比较焊接烟尘组和对照组之间的DNA甲基化时,未观察到显著差异,而与其他组相比,单次暴露后1天和30天时,MMA-SS样品显著增加了端粒长度。这些发现表明,MMA-SS烟尘中存在而GMA-MS烟尘中不存在的基因毒性金属(如Cr和Ni)可能会增强肺部毒性,以及诱导氧化应激标志物并增加PBMC中的端粒长度。重要的是,测量从外周血分离的细胞中的端粒长度可能作为评估与焊接烟尘相关毒性的潜在反应生物标志物。

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