Tobacco-Specific Nitrosamines (NNAL, NNN, NAT, and NAB) Exposures in the US Population Assessment of Tobacco and Health (PATH) Study Wave 1 (2013–2014)
Author(s) -
Baoyun Xia,
Benjamin C. Blount,
Tonya Guillot,
Christina R. Brosius,
Li Yao,
Dana M. van Bemmel,
Heather L. Kimmel,
Cindy M. Chang,
Nicolette Borek,
Kathryn C. Edwards,
Charlie Lawrence,
Andrew Hyland,
Maciej Ł. Goniewicz,
Brittany Pine,
Yang Xia,
John T. Bernert,
B. Rey de Castro,
J. Jack Lee,
Justin Brown,
Stephen Arnstein,
Diane Choi,
Erin Wade,
Dorothy K. Hatsukami,
Gladys Ervies,
Angel A. Cobo,
Keegan J. Nicodemus,
Dana M. Freeman,
Stephen S. Hecht,
Kevin P. Conway,
Lanqing Wang
Publication year - 2020
Publication title -
nicotine and tobacco research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.338
H-Index - 113
eISSN - 1469-994X
pISSN - 1462-2203
DOI - 10.1093/ntr/ntaa110
Subject(s) - tobacco product , urine , population , metabolite , creatinine , chemistry , smokeless tobacco , solid phase extraction , tobacco smoke , confidence interval , carcinogen , chromatography , tobacco use , environmental health , medicine , toxicology , extraction (chemistry) , biochemistry , biology
The tobacco-specific nitrosamines (TSNAs) are an important group of carcinogens found in tobacco and tobacco smoke. To describe and characterize the levels of TSNAs in the Population Assessment of Tobacco and Health (PATH) Study Wave 1 (2013–2014), we present four biomarkers of TSNA exposure: N′-nitrosonornicotine, N′-nitrosoanabasine, N′-nitrosoanatabine, and 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanol (NNAL) which is the primary urinary metabolite of 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone. Methods We measured total TSNAs in 11 522 adults who provided urine using automated solid-phase extraction coupled to isotope dilution liquid chromatography–tandem mass spectrometry. After exclusions in this current analysis, we selected 11 004 NNAL results, 10 753 N′-nitrosonornicotine results, 10 919 N′-nitrosoanatabine results, and 10 996 N′-nitrosoanabasine results for data analysis. Geometric means and correlations were calculated using SAS and SUDAAN. Results TSNA concentrations were associated with choice of tobacco product and frequency of use. Among established, every day, exclusive tobacco product users, the geometric mean urinary NNAL concentration was highest for smokeless tobacco users (993.3; 95% confidence interval [CI: 839.2, 1147.3] ng/g creatinine), followed by all types of combustible tobacco product users (285.4; 95% CI: [267.9, 303.0] ng/g creatinine), poly tobacco users (278.6; 95% CI: [254.9, 302.2] ng/g creatinine), and e-cigarette product users (6.3; 95% CI: [4.7, 7.9] ng/g creatinine). TSNA concentrations were higher in every day users than in intermittent users for all the tobacco product groups. Among single product users, exposure to TSNAs differed by sex, age, race/ethnicity, and education. Urinary TSNAs and nicotine metabolite biomarkers were also highly correlated. Conclusions We have provided PATH Study estimates of TSNA exposure among US adult users of a variety of tobacco products. These data can inform future tobacco product and human exposure evaluations and related regulatory activities.
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