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职业暴露与处理碳纳米管和纳米纤维工人功能性免疫反应的关联。

Association of occupational exposures with functional immune response in workers handling carbon nanotubes and nanofibers.

机构信息

Division of Field Studies and Engineering, National Institute for Occupational Safety and Health (NIOSH), Cincinnati, OH, USA.

Health Effects Laboratory Division, NIOSH, Cincinnati, OH, USA.

出版信息

Nanotoxicology. 2020 Apr;14(3):404-419. doi: 10.1080/17435390.2020.1717007. Epub 2020 Feb 7.

DOI:10.1080/17435390.2020.1717007
PMID:32031476
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7121920/
Abstract

The objective of this study was to evaluate the association between carbon nanotube and nanofiber (CNT/F) exposure and responses of whole blood challenged with secondary stimulants, adjusting for potential confounders, in a cross-sectional study of 102 workers. Multi-day exposure was measured by CNT/F structure count (SC) and elemental carbon (EC) air concentrations. Demographic, lifestyle and other occupational covariate data were obtained via questionnaire. Whole blood collected from each participant was incubated for 18 hours with and without two microbial stimulants (lipopolysaccharide/LPS and staphylococcal enterotoxin type B/SEB) using TruCulture technology to evaluate immune cell activity. Following incubation, supernatants were preserved and analyzed for protein concentrations. The stimulant:null response ratio for each individual protein was analyzed using multiple linear regression, followed by principal component (PC) analysis to determine whether patterns of protein response were related to CNT/F exposure. Adjusting for confounders, CNT/F metrics (most strongly, the SC-based) were significantly ( < 0.05) inversely associated with stimulant:null ratios of several individual biomarkers: GM-CSF, IFN-γ, interleukin (IL)-2, IL-4, IL-5, IL-10, IL-17, and IL-23. CNT/F metrics were significantly inversely associated with PC1 (a weighted mean of most biomarkers, explaining 25% of the variance in the protein ratios) and PC2 (a biomarker contrast, explaining 14%). Among other occupational exposures, only solvent exposure was significant (inversely related to PC2). CNT/F exposure metrics were uniquely related to stimulant responses in challenged whole blood, illustrating reduced responsiveness to a secondary stimulus. This approach, if replicated in other exposed populations, may present a relatively sensitive method to evaluate human response to CNT/F or other occupational exposures.

摘要

本研究的目的是评估在 102 名工人的横断面研究中,在调整潜在混杂因素后,碳纳米管和纳米纤维(CNT/F)暴露与全血对次级刺激物反应之间的关系。多日暴露通过 CNT/F 结构计数(SC)和元素碳(EC)空气浓度来测量。通过问卷获得了人口统计学、生活方式和其他职业协变量数据。从每个参与者采集全血,使用 TruCulture 技术在有和没有两种微生物刺激物(脂多糖/LPS 和葡萄球菌肠毒素 B/SEB)的情况下孵育 18 小时,以评估免疫细胞活性。孵育后,保存上清液并分析蛋白质浓度。使用多元线性回归分析每个个体蛋白的刺激物:空白反应比,然后进行主成分(PC)分析,以确定蛋白反应模式是否与 CNT/F 暴露有关。在调整混杂因素后,CNT/F 指标(尤其是基于 SC 的指标)与几种个体生物标志物的刺激物:空白反应比显著负相关(<0.05):GM-CSF、IFN-γ、白细胞介素(IL)-2、IL-4、IL-5、IL-10、IL-17 和 IL-23。CNT/F 指标与 PC1(大多数生物标志物的加权平均值,解释了蛋白比值方差的 25%)和 PC2(生物标志物对比,解释了 14%)显著负相关。在其他职业暴露中,只有溶剂暴露具有显著相关性(与 PC2 呈负相关)。CNT/F 暴露指标与受挑战全血中的刺激物反应具有独特的相关性,表明对次级刺激的反应性降低。如果在其他暴露人群中得到复制,这种方法可能代表了一种评估人类对 CNT/F 或其他职业暴露反应的相对敏感方法。

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本文引用的文献

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Association of pulmonary, cardiovascular, and hematologic metrics with carbon nanotube and nanofiber exposure among U.S. workers: a cross-sectional study.美国工人暴露于碳纳米管和纳米纤维与肺部、心血管和血液学指标的相关性:一项横断面研究。
Part Fibre Toxicol. 2018 May 16;15(1):22. doi: 10.1186/s12989-018-0258-0.
2
Carbon nanotube and nanofiber exposure and sputum and blood biomarkers of early effect among U.S. workers.美国工人暴露于碳纳米管和纳米纤维与痰液和血液早期效应生物标志物。
Environ Int. 2018 Jul;116:214-228. doi: 10.1016/j.envint.2018.04.004. Epub 2018 Apr 23.
3
Cardiovascular effects among workers exposed to multiwalled carbon nanotubes.暴露于多壁碳纳米管的工人中的心血管影响。
Occup Environ Med. 2018 May;75(5):351-358. doi: 10.1136/oemed-2017-104796. Epub 2018 Feb 10.
4
Exposure assessments for a cross-sectional epidemiologic study of US carbon nanotube and nanofiber workers.美国碳纳米管和纳米纤维工人的横断面流行病学研究的暴露评估。
Int J Hyg Environ Health. 2018 Apr;221(3):429-440. doi: 10.1016/j.ijheh.2018.01.006. Epub 2018 Jan 11.
5
Distinctive roles of age, sex, and genetics in shaping transcriptional variation of human immune responses to microbial challenges.年龄、性别和遗传因素在塑造人类对微生物挑战的免疫反应转录变异性方面的独特作用。
Proc Natl Acad Sci U S A. 2018 Jan 16;115(3):E488-E497. doi: 10.1073/pnas.1714765115. Epub 2017 Dec 27.
6
Standardized whole blood stimulation improves immunomonitoring of induced immune responses in multi-center study.标准化全血刺激在多中心研究中改善了对诱导免疫反应的免疫监测。
Clin Immunol. 2017 Oct;183:325-335. doi: 10.1016/j.clim.2017.09.019. Epub 2017 Sep 22.
7
A cross-sectional study of changes in markers of immunological effects and lung health due to exposure to multi-walled carbon nanotubes.一项关于因接触多壁碳纳米管而导致的免疫效应标志物和肺部健康变化的横断面研究。
Nanotoxicology. 2017 Apr;11(3):395-404. doi: 10.1080/17435390.2017.1308031. Epub 2017 Apr 3.
8
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9
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10
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