Suppr超能文献

毒理学中的呼吸生物标志物。

Breath biomarkers in toxicology.

作者信息

Pleil Joachim D

机构信息

Office of Research and Development, U.S. Environmental Protection Agency, Research Triangle Park, NC, 27711, USA.

出版信息

Arch Toxicol. 2016 Nov;90(11):2669-2682. doi: 10.1007/s00204-016-1817-5. Epub 2016 Sep 1.

Abstract

Exhaled breath has joined blood and urine as a valuable resource for sampling and analyzing biomarkers in human media for assessing exposure, uptake metabolism, and elimination of toxic chemicals. This article focuses current use of exhaled gas, aerosols, and vapor in human breath, the methods for collection, and ultimately the use of the resulting data. Some advantages of breath are the noninvasive and self-administered nature of collection, the essentially inexhaustible supply, and that breath sampling does not produce potentially infectious waste such as needles, wipes, bandages, and glassware. In contrast to blood and urine, breath samples can be collected on demand in rapid succession and so allow toxicokinetic observations of uptake and elimination in any time frame. Furthermore, new technologies now allow capturing condensed breath vapor directly, or just the aerosol fraction alone, to gain access to inorganic species, lung pH, proteins and protein fragments, cellular DNA, and whole microorganisms from the pulmonary microbiome. Future applications are discussed, especially the use of isotopically labeled probes, non-targeted (discovery) analysis, cellular level toxicity testing, and ultimately assessing "crowd breath" of groups of people and the relation to dose of airborne and other environmental chemicals at the population level.

摘要

呼出气已成为与血液和尿液一样有价值的资源,可用于在人体介质中采集和分析生物标志物,以评估有毒化学物质的暴露、摄取代谢和消除情况。本文重点介绍呼出气、气溶胶和蒸汽在人体呼吸中的当前用途、收集方法以及最终对所得数据的使用。呼吸的一些优点包括收集的非侵入性和自我管理性质、基本上取之不尽的供应,以及呼吸采样不会产生诸如针头、擦拭物、绷带和玻璃器皿等潜在传染性废物。与血液和尿液相比,呼吸样本可以按需快速连续采集,从而可以在任何时间范围内对摄取和消除进行毒物动力学观察。此外,新技术现在允许直接捕获冷凝的呼吸蒸汽,或仅捕获气溶胶部分,以获取无机物种、肺pH值、蛋白质和蛋白质片段、细胞DNA以及来自肺部微生物群的整个微生物。文中还讨论了未来的应用,特别是同位素标记探针的使用、非靶向(发现)分析、细胞水平毒性测试,以及最终评估人群的“群体呼吸”及其与人群水平上空气中和其他环境化学物质剂量的关系。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验