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Combination of multiple analytical platforms and nontargeted approaches for comprehensive risk assessment characterization: thirdhand tobacco smoke as case study

机译:综合风险评估表征多种分析平台和非靶向方法的组合:第三手烟草烟雾作为案例研究

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Aim: To the date, most of the risk assessment studies are focused on the determination of specific families of toxicants in different environmental matrices and the evaluation of the human health risk associated to this exposure. Nevertheless, the risk associated to complex matrices exposure, such as indoor dust, which contains hundreds of contaminants, may lead to possible mixture-related effects - such as, antagonistic, synergistic, potentiating or additive effects - that are underestimated in targeted studies. Here, we evaluate the benefits of using different analytical platforms to achieve a more complete identification of the hazardous composition of complex environmental samples for a more holistic characterization of the human risk through the exposure to these contaminants. The developed methodology is applied to the risk evaluation of dust samples from smokers' and non-smokers' homes polluted with residual tobacco smoke, also so-called, thirdhand tobacco smoke (THS). Tobacco smoke is considered one of the major sources of inorganic and organic carcinogens in indoor environments, but more evidence of the chemical toxicity of THS and its impact on human health is necessary to improve understanding of the risks of THS-polluted environments. Methods: We have extracted indoor dust samples from smokers' and non-smokers' homes using pressurized liquid extraction and ethyl acetate as solvent. We have used three different analytical platforms to analyze these extracts, including single and comprehensive gas chromatography (GC-QTOF and GCxGC-TOF) and liquid chromatography (UPLC-QTOF). The raw data have been processed using in-house and commercial software programs. Univariate and multivariate statistical analysis have been used for feature selection to better profile THS toxicants. Results: The use of multiple analytical platforms allowed a more complete identification of the toxicological profile of THS. GCxGC-TOF, with enhanced separation power, provided a visual profiling of the samples and allowed the classification of the toxicants by chemical group. GC-QTOF, which provided the exact mass of the ions, favored the identification of the contaminants. UHPLC-QTOF is complementary to GC and permitted the identification of polar and semivolatile contaminants. The putative identification of the main contaminants was confirmed with the MS/MS spectrum and the use of compound standards. Conclusions: The results presented here demonstrate the benefits of using multiple analytical platforms and non-targeted approaches to achieve a more comprehensive risk assessment of complex environmental mixtures. The application of this holistic methodology in future studies will help to better understand the chemical risk of polluted environments.
机译:目的:到目前为止,大多数风险评估研究都集中在不同环境基质中的特定毒物系列的测定和与这种暴露相关的人体健康风险的评估。然而,与复杂的基质曝光相关的风险,例如含有数百个污染物的室内粉尘可能导致可能的混合相关的效果 - 例如拮抗,协同,增强或添加剂效应 - 被低估在有针对性的研究中。在这里,我们评估使用不同分析平台的益处来实现复杂环境样品的危险组合物,以通过暴露于这些污染物来更全面地表征人类风险。发达的方法应用于吸烟者和非吸烟者家庭的尘埃样本的风险评估,这些烟草烟雾污染,也称为所谓的烟草烟雾(THS)。烟草烟雾被认为是室内环境中无机和有机致癌物质的主要来源之一,但更多的证据表明THS的化学毒性及其对人类健康的影响是为了改善对污染环境风险的理解。方法:使用加压液体提取和乙酸乙酯作为溶剂从吸烟者和非吸烟者家中提取室内灰尘样本。我们使用了三种不同的分析平台来分析这些提取物,包括单一和综合气相色谱(GC-QTOF和GCXGC-TOF)和液相色谱(UPLC-QTOF)。使用内部和商业软件程序处理了原始数据。单变量和多变量统计分析已被用于特征选择,以更好的概况THS毒物。结果:使用多个分析平台允许更完全鉴定THS的毒理学概况。 GCXGC-TOF,具有增强的分离能量,提供了样品的可视分析,并通过化学组允许毒物分类。 GC-QTOF提供了离子的确切质量,有利于鉴定污染物。 UHPLC-QTOF与GC互补,允许鉴定极性和半溶血污染物。用MS / MS光谱和使用化合物标准的使用证实了主要污染物的推定鉴定。结论:这里提出的结果表明了使用多个分析平台和非目标方法来实现复杂环境混合物更全面的风险评估的益处。在未来的研究中,这种整体方法的应用将有助于更好地了解污染环境的化学风险。

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