Nontargeted Analysis in Tobacco Research: Challenges and Opportunities

IF 3.8 3区 医学 Q2 CHEMISTRY, MEDICINAL
Ayomipo Adeniji, Rachel El-Hage, Marielle C. Brinkman and Ahmad El-Hellani*, 
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Abstract

Tobacco products are evolving at a pace that has outstripped tobacco control, leading to a high prevalence of tobacco use in the population. Researchers have been tirelessly developing suitable techniques to assess these products’ emissions, toxicity, and public health impact. The nonclinical testing of tobacco products to assess the chemical profile of emissions is needed for evidence-based regulations. This testing has largely relied on targeted analytical methods that focus on constituent lists that may fall short in determining the toxicity of newly designed tobacco products. Nontargeted analysis (NTA), or the process of identifying and quantifying compounds within a complex matrix without prior knowledge of its chemical composition, is a promising technique for tobacco regulation, but it is not without challenges. The lack of standardized methods for sample generation, sample preparation, chromatographic separation, compound identification, and data analysis and reporting must be addressed so that the quality and reproducibility of the data generated by NTA can be benchmarked. This review discusses the challenges and highlights the opportunities of NTA in studying tobacco product constituents and emissions.

Abstract Image

烟草研究中的非目标分析:挑战与机遇。
烟草产品的发展速度超过了烟草控制,导致烟草在人群中的使用率很高。研究人员一直在不懈地开发合适的技术来评估这些产品的排放、毒性和对公众健康的影响。基于证据的法规需要对烟草产品进行非临床测试,以评估排放的化学特征。这项测试在很大程度上依赖于有针对性的分析方法,这些方法侧重于成分清单,这些成分清单可能无法确定新设计的烟草产品的毒性。非靶向分析(NTA),或在事先不了解复杂基质中化合物化学成分的情况下识别和量化其化合物的过程,是一种很有前途的烟草监管技术,但它并非没有挑战。必须解决样品生成、样品制备、色谱分离、化合物鉴定以及数据分析和报告缺乏标准化方法的问题,以便对NTA生成的数据的质量和再现性进行基准测试。这篇综述讨论了NTA在研究烟草产品成分和排放方面的挑战并强调了其机遇。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.90
自引率
7.30%
发文量
215
审稿时长
3.5 months
期刊介绍: Chemical Research in Toxicology publishes Articles, Rapid Reports, Chemical Profiles, Reviews, Perspectives, Letters to the Editor, and ToxWatch on a wide range of topics in Toxicology that inform a chemical and molecular understanding and capacity to predict biological outcomes on the basis of structures and processes. The overarching goal of activities reported in the Journal are to provide knowledge and innovative approaches needed to promote intelligent solutions for human safety and ecosystem preservation. The journal emphasizes insight concerning mechanisms of toxicity over phenomenological observations. It upholds rigorous chemical, physical and mathematical standards for characterization and application of modern techniques.
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