Improved Method for the Determination of Tobacco-specific Nitrosamines (TSNA) in Tobacco Smoke

The method used to determine tobacco-specific nitrosamines [TSNA], N’-nitrosonornicotine [NNN], 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone [NNK], N’-nitrosoanabasine [NAB] and N’-nitrosoanatabine [NAT], in mainstream smoke was modified. The methodology included trapping mainstream smoke in a buf...

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Main Authors: Fischer S, Spiegelhalder B
Format: Article
Language:English
Published: Sciendo 1989-01-01
Series:Beiträge zur Tabakforschung International
Online Access:https://doi.org/10.2478/cttr-2013-0594
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spelling doaj-d53c1e66e85742ab952facafc1c1c8482021-09-06T19:22:12ZengSciendoBeiträge zur Tabakforschung International1612-92371989-01-0114314515310.2478/cttr-2013-0594Improved Method for the Determination of Tobacco-specific Nitrosamines (TSNA) in Tobacco SmokeFischer S0Spiegelhalder B1Institute of Toxicology and Chemotherapy, German Cancer Research Center, Heidelberg, GermanyInstitute of Toxicology and Chemotherapy, German Cancer Research Center, Heidelberg, GermanyThe method used to determine tobacco-specific nitrosamines [TSNA], N’-nitrosonornicotine [NNN], 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone [NNK], N’-nitrosoanabasine [NAB] and N’-nitrosoanatabine [NAT], in mainstream smoke was modified. The methodology included trapping mainstream smoke in a buffer solution and on a Cambridge filter, extracting TSNA from the buffer solution and the filter with dichloromethane, clean-up procedures and analysis by GC/TEA. Extracts from both the buffer solution and the filter were cleaned up and analysed individually. The clean-up procedure included column chromatography on basic alumina and the removal of nicotine. N-Nitrosodibenzylamine [NDBenzA] which had suitable chromatographic properties was used as internal standard. N’-Nitrosopentylpicolylamine [NPePicA], a newly synthesized nitrosamine with physicochemical properties similar to the TSNA, could also be used as an internal standard. The recoveries for the buffer solution were as follows: NDBenzA 89 %, NPePicA 83 %, NNN 85 %, NNK 88 %, NAB/NAT 85 %. For the TSNA trapped on the filter the following recoveries were determined: NDBenzA 81 %, NPePicA 75 %, NNN 77 %, NNK 78 %, NAB/NAT 75 %. Parameters influencing the TSNA values in the mainstream smoke were investigated. Artifact formation of TSNA during mainstream smoke collection did not occur under standard conditions. TSNA values were greatly influenced by the puff volume, they increased with increasing puff volume. Reproducible and reliable results can be achieved in a relatively short time with the method reported.https://doi.org/10.2478/cttr-2013-0594
collection DOAJ
language English
format Article
sources DOAJ
author Fischer S
Spiegelhalder B
spellingShingle Fischer S
Spiegelhalder B
Improved Method for the Determination of Tobacco-specific Nitrosamines (TSNA) in Tobacco Smoke
Beiträge zur Tabakforschung International
author_facet Fischer S
Spiegelhalder B
author_sort Fischer S
title Improved Method for the Determination of Tobacco-specific Nitrosamines (TSNA) in Tobacco Smoke
title_short Improved Method for the Determination of Tobacco-specific Nitrosamines (TSNA) in Tobacco Smoke
title_full Improved Method for the Determination of Tobacco-specific Nitrosamines (TSNA) in Tobacco Smoke
title_fullStr Improved Method for the Determination of Tobacco-specific Nitrosamines (TSNA) in Tobacco Smoke
title_full_unstemmed Improved Method for the Determination of Tobacco-specific Nitrosamines (TSNA) in Tobacco Smoke
title_sort improved method for the determination of tobacco-specific nitrosamines (tsna) in tobacco smoke
publisher Sciendo
series Beiträge zur Tabakforschung International
issn 1612-9237
publishDate 1989-01-01
description The method used to determine tobacco-specific nitrosamines [TSNA], N’-nitrosonornicotine [NNN], 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone [NNK], N’-nitrosoanabasine [NAB] and N’-nitrosoanatabine [NAT], in mainstream smoke was modified. The methodology included trapping mainstream smoke in a buffer solution and on a Cambridge filter, extracting TSNA from the buffer solution and the filter with dichloromethane, clean-up procedures and analysis by GC/TEA. Extracts from both the buffer solution and the filter were cleaned up and analysed individually. The clean-up procedure included column chromatography on basic alumina and the removal of nicotine. N-Nitrosodibenzylamine [NDBenzA] which had suitable chromatographic properties was used as internal standard. N’-Nitrosopentylpicolylamine [NPePicA], a newly synthesized nitrosamine with physicochemical properties similar to the TSNA, could also be used as an internal standard. The recoveries for the buffer solution were as follows: NDBenzA 89 %, NPePicA 83 %, NNN 85 %, NNK 88 %, NAB/NAT 85 %. For the TSNA trapped on the filter the following recoveries were determined: NDBenzA 81 %, NPePicA 75 %, NNN 77 %, NNK 78 %, NAB/NAT 75 %. Parameters influencing the TSNA values in the mainstream smoke were investigated. Artifact formation of TSNA during mainstream smoke collection did not occur under standard conditions. TSNA values were greatly influenced by the puff volume, they increased with increasing puff volume. Reproducible and reliable results can be achieved in a relatively short time with the method reported.
url https://doi.org/10.2478/cttr-2013-0594
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