烟草制品中风味化学物质呼吸危害识别的计算方法

IF 3.8 3区 医学 Q2 CHEMISTRY, MEDICINAL
Reema Goel*, Samantha M. Reilly, Luis G. Valerio Jr.
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引用次数: 2

摘要

香料化学物质增加了烟草制品的吸引力和毒性,包括电子尼古丁传递系统(ENDS)。可用于烟草制品的香精化学品种类繁多。在本研究中,基于化学物质的固有危险结构和反应性,采用化学驱动的计算方法对风味化学物质进行评价。从公开信息中编译了3012种独特的风味化学物质。接下来,根据它们的(1)物理化学性质,(2)全球统一系统(GHS)健康危害分类,(3)与化学品反应性、不稳定性或毒性相关的结构警报,以及(4)与FDA有害和潜在有害成分(HPHCs)风味化学品共享的共同亚结构,这些化学物质是呼吸毒性物质。对构建的香料库进行计算分析,标记出638种化学物质具有GHS分类的呼吸健康危害,1079种化学物质具有至少一种结构警报,2297种化学物质与FDA已建立和拟议的hphc清单具有亚结构相似性。随后对风味库中173种化学物质的子集进行了分析,这些化学物质对呼吸健康有害,包含结构警报以及风味HPHC亚结构。然后确定了四种具有增加呼吸毒性潜力的一般毒性团结构。总之,计算方法是识别危害和理解结构-毒性关系的有效工具。在适当的使用背景和解释下,计算机方法可提供科学证据,支持对烟草制品中或从烟草制品中排放的化学品进行毒理学评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A Computational Approach for Respiratory Hazard Identification of Flavor Chemicals in Tobacco Products

A Computational Approach for Respiratory Hazard Identification of Flavor Chemicals in Tobacco Products

Flavor chemicals contribute to the appeal and toxicity of tobacco products, including electronic nicotine delivery systems (ENDS). The assortment of flavor chemicals available for use in tobacco products is extensive. In this study, a chemistry-driven computational approach was used to evaluate flavor chemicals based on intrinsic hazardous structures and reactivity of chemicals. A large library of 3012 unique flavor chemicals was compiled from publicly available information. Next, information was computed and collated based on their (1) physicochemical properties, (2) global harmonization system (GHS) health hazard classification, (3) structural alerts linked to the chemical’s reactivity, instability, or toxicity, and (4) common substructure shared with FDA’s harmful and potentially harmful constituents (HPHCs) flavor chemicals that are respiratory toxicants. Computational analysis of the constructed flavor library flagged 638 chemicals with GHS classified respiratory health hazards, 1079 chemicals with at least one structural alert, and 2297 chemicals with substructural similarity to FDA’s established and proposed list of HPHCs. A subsequent analysis was performed on a subset of 173 chemicals in the flavor library that are respiratory health hazards, contain structural alerts as well as flavor HPHC substructures. Four general toxicophore structures with an increased potential for respiratory toxicity were then identified. In summary, computational methods are efficient tools for hazard identification and understanding structure-toxicity relationship. With appropriate context of use and interpretation, in silico methods may provide scientific evidence to support toxicological evaluations of chemicals in or emitted from tobacco products.

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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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