University of Washington, Department of Environmental & Occupational Health Sciences, University of Washington, Seattle, WA 98105, USA.
Environ Sci Process Impacts. 2013 Apr;15(4):721-9. doi: 10.1039/c3em30906a.
Using exhaled breath condensate (EBC) as a biological media for analysis of biomarkers of exposure may facilitate the understanding of inhalation exposures. In this study, we present method validation for the collection of EBC and analysis of metals in EBC. The collection method was designed for use in a small scale longitudinal study with the goal of improving reproducibility while maintaining economic feasibility. We incorporated the use of an Rtube with additional components as an assembly, and trained subjects to breathe into the apparatus. EBC was collected from 8 healthy adult subjects with no known elevated exposures to Mn, Cr, Ni, and Cd repeatedly (10 times) within 7 days and analyzed for these metals via ICP-MS. Method detection limits were obtained by mimicking the process of EBC collection with ultrapure water, and resulted in 46-62% of samples falling in a range less than the method detection limit. EBC metal concentrations were found to be statistically significantly associated (p < 0.05) with room temperature and relative humidity during collection, as well as with the gender of the subject. The geometric mean EBC metal concentrations in our unexposed subjects were 0.57 μg Mn per L, 0.25 μg Cr per L, 0.87 μg Ni per L, and 0.14 μg Cd per L. The overall standard deviation was greater than the mean estimate, and the major source in EBC metals concentrations was due to fluctuations in subjects' measurements over time rather than to the differences between separate subjects. These results suggest that measurement and control of EBC collection and analytical parameters are critical to the interpretation of EBC metals measurements. In particular, rigorous estimation of method detection limits of metals in EBC provides a more thorough evaluation of accuracy.
利用呼出气冷凝物(EBC)作为暴露生物标志物分析的生物介质可能有助于理解吸入暴露。在这项研究中,我们提出了 EBC 收集和 EBC 中金属分析的方法验证。该收集方法旨在用于小规模纵向研究,目标是在保持经济可行性的同时提高重现性。我们将 Rtube 与其他组件结合在一起作为一个组件,并对研究对象进行呼吸训练。我们对 8 名无已知高水平暴露于 Mn、Cr、Ni 和 Cd 的健康成年受试者进行了 EBC 重复(10 次)收集,在 7 天内用 ICP-MS 分析这些金属。通过模拟 EBC 收集过程,用超纯水获得方法检测限,结果 46%-62%的样品浓度小于方法检测限。EBC 金属浓度与收集过程中的室温、相对湿度以及研究对象的性别呈统计学显著相关(p<0.05)。在未暴露的研究对象中,EBC 金属浓度的几何平均值分别为 Mn 0.57μg/L、Cr 0.25μg/L、Ni 0.87μg/L 和 Cd 0.14μg/L。总体标准差大于平均值,EBC 金属浓度的主要来源是由于研究对象随时间的测量波动,而不是由于不同研究对象之间的差异。这些结果表明,EBC 收集和分析参数的测量和控制对 EBC 金属测量的解释至关重要。特别是,金属在 EBC 中的方法检测限的严格估计提供了对准确性的更全面评估。