BACKGROUND: A growing body of evidence shows that secondhand cigarette smoke undergoes numerous chemical changes after it is released into the air: it can adsorb to indoor surfaces, desorb back into the air and undergo chemical changes as it ages. OBJECTIVES: To test the effects of aging on the concentration of polycyclic aromatic hydrocarbons (PAHs), nicotine and tobacco-specific nitrosamines in cigarette smoke. METHODS: We generated sidestream and mainstream cigarette smoke with a smoking machine, diluted it with conditioned filtered air, and passed it through a 6 m(3) flow reactor with air exchange rates that matched normal residential air exchange rates. We tested the effects of 60 min aging on the concentration of 16 PAHs, nicotine, cotinine and tobacco-specific nitrosamines. We also measured sorption and deposition of nicotine, cotinine and tobacco-specific nitrosamines on materials placed within the flow reactor. RESULTS: We observed mass losses of 62% for PAHs, 72%, for nicotine, 79% for N-nitrosonornicotine and 80% for 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone (NNK). Extraction of cotton cloth exposed to smoke yielded nicotine and NNK. The ratio of NNK:nicotine on the exposed cloth was 10-fold higher than that in aerosol samples. CONCLUSIONS: Our data suggest that the majority of the PAHs, nicotine, cotinine and tobacco-specific nitrosamines that are released during smoking in homes and public places deposit on room surfaces. These data give an estimate of the potential for accumulation of carcinogens in thirdhand cigarette smoke. Exposure to PAHs and tobacco-specific nitrosamines, through dermal absorption and inhalation of contaminated dust, may contribute to smoking-attributable morbidity and mortality.
BACKGROUND: A growing body of evidence shows that secondhand cigarette smoke undergoes numerous chemical changes after it is released into the air: it can adsorb to indoor surfaces, desorb back into the air and undergo chemical changes as it ages. OBJECTIVES: To test the effects of aging on the concentration of polycyclic aromatic hydrocarbons (PAHs), nicotine and tobacco-specific nitrosamines in cigarette smoke. METHODS: We generated sidestream and mainstream cigarette smoke with a smoking machine, diluted it with conditioned filtered air, and passed it through a 6 m(3) flow reactor with air exchange rates that matched normal residential air exchange rates. We tested the effects of 60 min aging on the concentration of 16 PAHs, nicotine, cotinine and tobacco-specific nitrosamines. We also measured sorption and deposition of nicotine, cotinine and tobacco-specific nitrosamines on materials placed within the flow reactor. RESULTS: We observed mass losses of 62% for PAHs, 72%, for nicotine, 79% for N-nitrosonornicotine and 80% for 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone (NNK). Extraction of cotton cloth exposed to smoke yielded nicotine and NNK. The ratio of NNK:nicotine on the exposed cloth was 10-fold higher than that in aerosol samples. CONCLUSIONS: Our data suggest that the majority of the PAHs, nicotine, cotinine and tobacco-specific nitrosamines that are released during smoking in homes and public places deposit on room surfaces. These data give an estimate of the potential for accumulation of carcinogens in thirdhand cigarette smoke. Exposure to PAHs and tobacco-specific nitrosamines, through dermal absorption and inhalation of contaminated dust, may contribute to smoking-attributable morbidity and mortality.
Authors: Thomas F Northrup; Georg E Matt; Melbourne F Hovell; Amir M Khan; Angela L Stotts Journal: Nicotine Tob Res Date: 2015-08-26 Impact factor: 4.244
Authors: Peyton Jacob; Neal L Benowitz; Hugo Destaillats; Lara Gundel; Bo Hang; Manuela Martins-Green; Georg E Matt; Penelope J E Quintana; Jonathan M Samet; Suzaynn F Schick; Prue Talbot; Noel J Aquilina; Melbourne F Hovell; Jian-Hua Mao; Todd P Whitehead Journal: Chem Res Toxicol Date: 2016-12-21 Impact factor: 3.739
Authors: Thomas F Northrup; Peyton Jacob; Neal L Benowitz; Eunha Hoh; Penelope J E Quintana; Melbourne F Hovell; Georg E Matt; Angela L Stotts Journal: Public Health Rep Date: 2016 Mar-Apr Impact factor: 2.792
Authors: Altaf H Sarker; Kelly S Trego; Weiguo Zhang; Peyton Jacob; Antoine M Snijders; Jian-Hua Mao; Suzaynn F Schick; Priscilla K Cooper; Bo Hang Journal: Environ Mol Mutagen Date: 2020-04-16 Impact factor: 3.216
Authors: Thomas F Northrup; Amir M Khan; Peyton Jacob; Neal L Benowitz; Eunha Hoh; Melbourne F Hovell; Georg E Matt; Angela L Stotts Journal: Tob Control Date: 2015-12-03 Impact factor: 7.552
Authors: Georg E Matt; Penelope J E Quintana; Eunha Hoh; Joy M Zakarian; Nathan G Dodder; Rachael A Record; Melbourne F Hovell; E Melinda Mahabee-Gittens; Samuel Padilla; Laura Markman; Kayo Watanabe; Thomas E Novotny Journal: Nicotine Tob Res Date: 2021-01-22 Impact factor: 4.244