烟草和烟草制品中NNK的水平是否取决于伪烟碱或尼古丁-1′- n -氧化物的水平?

H. Ji, S. Moldoveanu
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引用次数: 0

摘要

4-(N′-甲基亚硝胺)-1-(3-吡啶基)-1-丁酮(NNK)是一种具有潜在致癌性的烟草特异性亚硝胺(TSNA),是美国食品和药物管理局(FDA)有害和潜在有害成分(HPHCs)清单中的重要化合物。因此,正在作出重大努力,以了解这种化合物的形成并减少其在烟草制品中的含量。NNK的形成被认为是4-(甲胺)-1-(3-吡啶基)-1-丁酮(伪烟碱或PON)亚硝化的结果。本研究评估了各种烟草和烟草制品中NNK和PON水平之间的相关性。由于尼古丁-1′- n -氧化物可参与PON的形成,因此还评估了该化合物水平与NNK水平的相关性。开发了两种用于烟草和烟草制品中PON定量的原始方法,并采用了一种完善的方法来分析NNK。NNK水平与PON水平的相关性很差。NNK水平与尼古丁-1′- n -氧化物的相关性也得到了相同的结果。这表明烟草或烟草制品中较高水平的PON或尼古丁-1′- n -氧化物不会导致较高水平的NNK。本研究并没有证明烟草或烟草制品中的NNK不是通过PON产生的,但证明了烟草和烟草制品中NNK形成的限制因素不是PON或尼古丁-1′- n -氧化物的水平,其他因素对NNK形成的有效性负责。
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Does the Level of NNK in Tobacco and Tobacco Products Depend on the Level of Pseudooxynicotine or of Nicotine-1′-N-Oxide?
Summary 4-(N’-methylnitrosamino)-1-(3-pyridyl)-1-butanone (NNK) is a potentially carcinogenic tobacco specific nitrosamine (TSNA) and an important compound in the Harmful and Potentially Harmful Constituents (HPHCs) list of U.S. Food and Drug Administration (FDA). For this reason, significant effort is being made for an understanding of the formation of this compound and for the reduction of its level in tobacco products. Formation of NNK is assumed to be the result of nitrosation of 4-(methylamino)-1-(3-pyridyl)-1-butanone (pseudooxynicotine or PON). Present study evaluated the correlation between the levels of NNK and those of PON in a variety of tobaccos and tobacco products. Since nicotine-1′-N-oxide can be involved in the formation of PON, the correlation of the levels of this compound with the levels of NNK was also evaluated. Two original methods were developed for the quantitation of PON in tobacco and tobacco products and a well-established method has been used for the analysis of NNK. The correlation between the levels of NNK with that of PON was proven to be very poor. The same result was obtained for the correlation between NNK levels and nicotine-1′-N-oxide. This indicated that a higher level of PON or of nicotine-1′-N-oxide in tobacco or tobacco products does not lead to a higher level of NNK. The study does not prove that NNK in tobacco or tobacco products is not generated via PON, but it demonstrated that the limiting factor in the formation of NNK in tobacco and tobacco products is not the level of PON or that of nicotine-1′-N-oxide, and other factors are responsible for the effectiveness of NNK formation.
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