School of Public Health, San Diego State University, San Diego, CA, USA.
San Diego State University Research Foundation, San Diego, CA, USA.
J Expo Sci Environ Epidemiol. 2022 Mar;32(2):244-258. doi: 10.1038/s41370-021-00359-9. Epub 2021 Jul 23.
Exposure assessment is critical for connecting environmental pollutants to health outcomes and evaluating impacts of interventions or environmental policies. Silicone wristbands (SWBs) show promise for multi-pollutant exposure assessment, including polycyclic aromatic hydrocarbons (PAHs), a ubiquitous class of toxic environmental pollutants.
To review published studies where SWBs were worn on the wrist for human environmental exposure assessments and evaluate the ability of SWBs to capture personal exposures, identify gaps which need to be addressed to implement this tool, and make recommendations for future studies to advance the field of exposure science through utilization of SWBs.
We performed a systematic search and a cited reference search in Scopus and extracted key study descriptions.
Thirty-nine unique studies were identified, with analytes including PAHs, pesticides, flame retardants, and tobacco products. SWBs were shipped under ambient conditions without apparent analyte loss, indicating utility for global exposure and health studies. Nineteen articles detected a total of 60 PAHs in at least one SWB. Correlations with other concurrent biological and air measurements indicate the SWB captures exposure to flame retardants, tobacco products, and PAHs.
SWBs show promise as a simple-to-deploy tool to estimate environmental and occupational exposures to chemical mixtures, including PAHs.
暴露评估对于将环境污染物与健康结果联系起来以及评估干预措施或环境政策的影响至关重要。硅树脂腕带(SWB)在多污染物暴露评估方面具有广阔的应用前景,包括多环芳烃(PAHs),这是一类普遍存在的有毒环境污染物。
回顾已发表的研究,这些研究将 SWB 戴在手腕上进行人体环境暴露评估,并评估 SWB 捕捉个人暴露的能力,确定需要解决的差距,以实施这一工具,并为未来的研究提供建议,通过利用 SWB 推进暴露科学领域。
我们在 Scopus 中进行了系统搜索和引用参考文献搜索,并提取了关键的研究描述。
确定了 39 项独特的研究,分析物包括 PAHs、农药、阻燃剂和烟草制品。SWB 在没有明显分析物损失的环境条件下运输,表明其可用于全球暴露和健康研究。19 篇文章共检测到至少 1 个 SWB 中的 60 种 PAHs。与其他同时进行的生物和空气测量的相关性表明,SWB 可以捕捉到阻燃剂、烟草制品和 PAHs 的暴露情况。
SWB 作为一种简单易用的工具,有望用于估计化学混合物的环境和职业暴露,包括 PAHs。