Santa Rios Andrea, Fobil Julius, Basu Niladri
Faculty of Agricultural and Environmental Sciences, McGill University, Ste-Anne-de-Bellevue, Québec, Canada.
Department of Biological, Environmental and Occupational Health Science, University of Ghana School of Public Health, Accra, Ghana.
Environ Toxicol Chem. 2021 Aug;40(8):2183-2188. doi: 10.1002/etc.5121. Epub 2021 Jul 1.
Biomonitoring methylmercury (MeHg) exposure is problematic in resource-limited settings and with difficult-to-access populations where traditional biomarker approaches present logistical, economic, and ethical issues. The present study aimed to validate the use of dried blood spots (DBS) to assess MeHg exposure in a real-world contaminated field setting. Whole-blood and DBS samples were collected from electronic waste workers (n = 20) from Agbogbloshie (Ghana) in 2017, and DBS were also artificially created in the laboratory using the field-collected blood. Whole-blood MeHg concentrations averaged 0.84 µg/L, which was not different from levels measured in the corresponding DBS samples (field-collected or artificially created). Whole-blood MeHg comprised 61% of the blood total Hg concentrations. Linear regression analysis revealed no differences in MeHg concentrations between whole-blood samples and field-collected DBS (slope 0.89, R = 0.94) and between field and laboratory DBS (slope 0.89, R = 0.96). The MeHg content in DBS punch blanks averaged 0.86 pg and thus was not of concern. These findings indicate that DBS are a suitable tool for assessing MeHg exposure in real-world environmental settings that may be heavily contaminated. Environ Toxicol Chem 2021;40:2183-2188. © 2021 SETAC.
在资源有限的环境中以及针对难以接触到的人群进行生物监测甲基汞(MeHg)暴露存在问题,因为传统生物标志物方法存在后勤、经济和伦理方面的问题。本研究旨在验证使用干血斑(DBS)在实际受污染的现场环境中评估MeHg暴露情况。2017年从加纳阿博布罗西的电子垃圾工人(n = 20)中采集了全血和DBS样本,并且还在实验室中使用现场采集的血液人工制作了DBS。全血中MeHg浓度平均为0.84µg/L,这与相应的DBS样本(现场采集或人工制作)中测得的水平没有差异。全血中的MeHg占血液总汞浓度的61%。线性回归分析显示,全血样本与现场采集的DBS之间(斜率0.89,R = 0.94)以及现场和实验室DBS之间(斜率0.89,R = 0.96)的MeHg浓度没有差异。DBS打孔空白样本中的MeHg含量平均为0.86 pg,因此无需担忧。这些发现表明,DBS是评估实际可能受到严重污染的环境中MeHg暴露的合适工具。《环境毒理学与化学》2021年;40:2183 - 2188。© 2021 SETAC。