Applied Chemicals and Materials Division, NIST, 325 Broadway, Boulder, CO 80305, United States of America.
Chemical Sciences Division, NIST, 100 Bureau Drive, Gaithersburg, MD 20899, United States of America.
J Breath Res. 2022 Jul 7;16(4). doi: 10.1088/1752-7163/ac70ef.
Exhaled breath is a non-invasive, information-rich matrix with the potential to diagnose or monitor disease, including infectious disease. Despite significant effort dedicated to biomarker identification in case control studies, very few breath tests are established in practice. In this topical review, we identify how gas standards support breath analysis today and what is needed to support further expansion and translation to practice. We examine forensic and clinical breath tests and discuss how confidence has been built through unambiguous biomarker identification and quantitation supported by gas calibration standards. Based on this discussion, we identify a need for multicomponent gas standards with part-per-trillion to part-per-million concentrations. We highlight National Institute of Standards and Technology gas standards developed for atmospheric measurements that are also relevant to breath analysis and describe investigations of long-term stability, chemical reactions, and interactions with gas cylinder wall treatments. An overview of emerging online instruments and their need for gas standards is also presented. This review concludes with a discussion of our ongoing research to examine the feasibility of producing multicomponent gas standards at breath-relevant concentrations. Such standards could be used to investigate interference from ubiquitous endogenous compounds and as a starting point for standards tailored to specific breath tests.
呼气是一种非侵入性、信息丰富的基质,具有诊断或监测疾病的潜力,包括传染病。尽管在病例对照研究中投入了大量精力来识别生物标志物,但实际上只有很少的呼吸测试得到了确立。在本次专题评论中,我们确定了气体标准如何支持当今的呼吸分析,以及需要什么来支持进一步的扩展和转化为实践。我们研究了法医和临床呼吸测试,并讨论了如何通过气体校准标准支持的明确生物标志物识别和定量来建立信心。基于这一讨论,我们确定需要具有万亿分之几到百万分之几浓度的多组分气体标准。我们重点介绍了美国国家标准与技术研究院为大气测量开发的气体标准,这些标准也与呼吸分析相关,并描述了对长期稳定性、化学反应以及与气瓶壁处理相互作用的研究。还介绍了新兴在线仪器及其对气体标准的需求概述。本文的结论是讨论我们正在进行的研究,以检验在呼吸相关浓度下生产多组分气体标准的可行性。这些标准可用于研究普遍存在的内源性化合物的干扰,并作为针对特定呼吸测试的标准的起点。