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Relationship between chemical structure and the occupational asthma hazard of low molecular weight organic compounds

机译:低分子量有机化合物的化学结构与职业性哮喘危害的关系

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摘要

>Aims: To investigate quantitatively, relationships between chemical structure and reported occupational asthma hazard for low molecular weight (LMW) organic compounds; to develop and validate a model linking asthma hazard with chemical substructure; and to generate mechanistic hypotheses that might explain the relationships. >Methods: A learning dataset used 78 LMW chemical asthmagens reported in the literature before 1995, and 301 control compounds with recognised occupational exposures and hazards other than respiratory sensitisation. The chemical structures of the asthmagens and control compounds were characterised by the presence of chemical substructure fragments. Odds ratios were calculated for these fragments to determine which were associated with a likelihood of being reported as an occupational asthmagen. Logistic regression modelling was used to identify the independent contribution of these substructures. A post-1995 set of 21 asthmagens and 77 controls were selected to externally validate the model. >Results: Nitrogen or oxygen containing functional groups such as isocyanate, amine, acid anhydride, and carbonyl were associated with an occupational asthma hazard, particularly when the functional group was present twice or more in the same molecule. A logistic regression model using only statistically significant independent variables for occupational asthma hazard correctly assigned 90% of the model development set. The external validation showed a sensitivity of 86% and specificity of 99%. >Conclusions: Although a wide variety of chemical structures are associated with occupational asthma, bifunctional reactivity is strongly associated with occupational asthma hazard across a range of chemical substructures. This suggests that chemical cross-linking is an important molecular mechanism leading to the development of occupational asthma. The logistic regression model is freely available on the internet and may offer a useful but inexpensive adjunct to the prediction of occupational asthma hazard.
机译:>目的:定量研究低分子量(LMW)有机化合物的化学结构与所报告的职业性哮喘危险之间的关系;建立并验证将哮喘危害与化学亚结构联系起来的模型;并产生可能解释这种关系的机械假设。 >方法:一个学习数据集使用了1995年前文献中报道的78种LMW化学哮喘原和301种对照化合物,这些化合物具有公认的职业暴露和危害,而不是呼吸道致敏作用。哮喘原和对照化合物的化学结构以化学亚结构片段的存在为特征。计算这些片段的几率,以确定哪些片段与被报告为职业性哮喘原的可能性有关。使用逻辑回归建模来确定这些子结构的独立贡献。选择1995年后的一组21种哮喘原和77个对照对模型进行外部验证。 >结果:含氮或氧的官能团(例如异氰酸酯,胺,酸酐和羰基)与职业性哮喘危险有关,尤其是当同一分子中存在两个或多个官能团时。仅使用统计上显着的独立变量进行职业性哮喘危害的逻辑回归模型正确分配了模型开发集的90%。外部验证显示灵敏度为86%,特异性为99%。 >结论:尽管多种化学结构与职业性哮喘有关,但双功能反应性与多种化学亚结构中的职业性哮喘危害密切相关。这表明化学交联是导致职业性哮喘发展的重要分子机制。逻辑回归模型可从互联网上免费获得,并且可以为预测职业性哮喘危害提供有用但廉价的辅助工具。

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