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首页> 外文期刊>Biological research for nursing >Saliva and Exhaled Breath Condensate Correlate With Serum in 4-12-Year-Olds Exposed to Secondhand Electronic Cigarette Vapors: A Pilot Study
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Saliva and Exhaled Breath Condensate Correlate With Serum in 4-12-Year-Olds Exposed to Secondhand Electronic Cigarette Vapors: A Pilot Study

机译:唾液和呼出的呼吸冷凝物与暴露于二手电子烟蒸气的 4-12 岁儿童的血清相关:一项初步研究

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Electronic cigarette use is highest among adults of child-bearing age. Many parents that use electronic cigarettes believe that secondhand exposure of electronic cigarette vapors for their children is not dangerous and is less harmful than secondhand exposure to traditional cigarette smoke. These beliefs may prompt excessive secondhand exposure to electronic cigarette vapors for their children. Little research has been done to document exposure in children. The traditional biological method of exposure detection is through a blood draw, which is difficult and undesirable in children. The purpose of this study was to assess the feasibility of using saliva and exhaled breath condensate as non-invasive biomatrices for detecting secondhand electronic cigarette vapor exposure in children. In this cross-sectionally designed study, we recruited 22 children exposed to electronic cigarette vapors and 26 non-exposed between the ages of 4-12 years. We compared metabolic features across three biomatrices, blood, saliva, and exhaled breath condensate. We noted moderate to strong pairwise, sample-specific, and feature-specific adjusted correlations. Annotated features associated with direct and secondhand electronic cigarette exposure were noted. These results demonstrate that less invasive biomatrices may be used to detect features associated with secondhand electronic cigarette vapor exposure in children.
机译:育龄成年人的电子烟使用率最高。许多使用电子烟的父母认为,对孩子来说,二手接触电子烟蒸气并不危险,而且比二手暴露于传统香烟烟雾的危害更小。这些信念可能会促使他们的孩子过度接触二手电子烟蒸气。很少有研究来记录儿童的暴露情况。传统的生物暴露检测方法是通过抽血,这在儿童中是困难和不可取的。本研究的目的是评估使用唾液和呼出的呼吸冷凝物作为非侵入性生物基质检测儿童二手电子烟蒸气暴露的可行性。在这项横断面设计的研究中,我们招募了 22 名暴露于电子烟蒸气的儿童和 26 名未暴露于 4-12 岁之间的儿童。我们比较了三种生物基质的代谢特征,即血液、唾液和呼出的呼吸冷凝物。我们注意到中度到强的成对、样本特异性和特征特异性调整相关性。注意到与直接和二手电子烟暴露相关的注释特征。这些结果表明,侵入性较小的生物基质可用于检测与儿童二手电子烟蒸气暴露相关的特征。

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