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Effect of Sugar Content on Acetaldehyde Yield in Cigarette Smoke


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1. IARC (International Agency for Research on Cancer): Monographs on the evaluation of the carcinogenic risk of chemicals to humans; World Heath Organization, Lyon, France, 71 (1999).Search in Google Scholar

2. World Heath Organization: Advancing knowledge on regulating tobacco products; WHO, Geneva, Switzerland, 2001.Search in Google Scholar

3. Seeman, J.I., M. Dixon, and H.J. Haussmann: Acetal-dehyde in mainstream tobacco smoke: formation and occurrence in smoke and bioavailability in the smoker; Chem. Res. Toxicol. 15 (2002) 1331–1349.Search in Google Scholar

4. Akehurst, B.C.: Tobacco; 2nd Edition, Longman Inc. New York 1981.Search in Google Scholar

5. Talhout, R., A. Opperhuizen, and J.G.C. van Amsterdam: Sugars as tobacco ingredient: effects on mainstream smoke composition; Food Chem. Toxicol. 44 (2006) 1789–1798.Search in Google Scholar

6. Scientific Committee on Emerging and Newly Identified Health Risks (SCENIHR): Addictive ness and attractiveness of tobacco additives; ISBN 978-92-79-12788-5. 12th November 2010. Available at: http://ec.europa.eu/health/scientific_committees/emer ging/docs/scenihr_o_031.pdf (accessed November 2011).Search in Google Scholar

7. Hahn, J. and J. Schaub: Influence of tobacco additives on the chemical composition of mainstream smoke; Beitr. Tabakforsch. Int. 24 (2010) 100–116.Search in Google Scholar

8. Sanders, E.B., A.I. Goldsmith, and J.I. Seeman: A model that distinguishes the pyrolysis of D-glucose, D-fructose, and sucrose from that of cellulose. Application to the understanding of cigarette smoke formation; J. Anal. Appl. Pyrolysis 66 (2002) 29–50.Search in Google Scholar

9. Purkis, S.W., C. Mueller, and M. Intorp: The fate of ingredients in and impact on cigarette smoke; Food Chem. Toxicol. 49 (2011) 3238–3248.Search in Google Scholar

10. Carmines E.L.: Evaluation of the potential effects of ingredients added to cigarettes. Part 1: cigarette design, testing approach, and review of results; Food Chem. Toxicol. 40 (2002) 77–91.Search in Google Scholar

11. Rustemeier K., R. Stabbert, H.J. Haussmann, E. Roemer, and E.L. Carmines: Evaluation of the potential effects of ingredients added to cigarettes. Part 2: chemical composition of mainstream smoke; Food Chem. Toxicol. 40 (2002) 93–104.Search in Google Scholar

12. Baker R.R., E.D. Massey, and G. Smith: An overview of the effects of tobacco ingredients on smoke chemistry and toxicity; Food Chem. Toxicol. 42 (2004) Suppl: S53–83.10.1016/j.fct.2004.01.00115072838Search in Google Scholar

13. Intorp, M., J. Pani, and M. Blumenstock: Influence of Tobacco Additives on the Chemical Composition of Mainstream Smoke - Additional Analysis of Three Tobacco Industry Based Laboratories; Beitr. Tabakforsch. Int. 24 (2010) 139–144.Search in Google Scholar

14. Roemer, E., S. Wittke, E. Trelles Sticken, J.J. Piade, T. Bonk, and M.K. Schorp: The addition of cocoa, glycerol, and saccharose to the tobacco of cigarettes: implications for smoke chemistry, in vitro cytotoxicity, mutagenicity and further endpoints; Beitr. Tabakforsch. Int. 24 (2010) 117–138.Search in Google Scholar

15. Gaworski, C.L., K.A. Wagner, M.J. Morton, and M.J. Oldham: Insights from a multi year program designed to test the impact of ingredients on mainstream cigarette smoke toxicity; Inhal. Toxicol. (2011) 1–12.Search in Google Scholar

16. Phillpotts, D.F., D. Spencer, and D.T. Westcott: The effect of natural sugar content of tobacco upon the acetaldehyde concentration found in cigarette smoke; Beitr. Tabakforsch. Int. 8 (1975) 7–10.Search in Google Scholar

17. O'Connor, R.J. and P.J. Hurley: Existing technologies to reduce specific toxicant emiss ions in c igarette smoke; Tob. Control 18 (2008) 139–148.Search in Google Scholar

18. Tobacco Research Council: Standard methods for the analysis of tobacco smoke; Research Paper 11. 2nd Edition; London UK 1974.Search in Google Scholar

19. ISO Standard 3308: Routine analytical smoking machine - Definition and standard conditions; International Organization for Standardization, Geneva Switzerland 2000.Search in Google Scholar

20. Gregg, E., C. Hill, M. Hollywood, M. Kearney, D. McLaughlin, K. McAdam, S. Purkis, and M. Williams: The UK smoke constituents testing study. Summary of results and comparison with other studies; Beitr. Tabakforsch. Int. 21 (2004) 117–138.Search in Google Scholar

21. Beuter, H. O.: Methods Enzym. Anal.; edited by H.U. Bergmeyer, Publisher: VCH, Weilheim Germany (3rd Edition, Volume 6, 321–327 (1985).Search in Google Scholar

22. Siddiqui, I.R. and N. Rosa: Low molecular weight carbohydrates of tobacco; Tob. Sci. 27 (1982) 130–134.Search in Google Scholar

23. ISO Standard 3402: Tobacco and tobacco products -Atmosphere for conditioning and testing; International Organization for Standardization, Geneva Switzerland 1999.Search in Google Scholar

24. ISO Standard 10362: Cigarettes - Determination of water in smoke condensates. Part 1. Gas-chromatographic method; International Organization for Standardization, Geneva Switzerland 1999.Search in Google Scholar

25. ISO Standard 4387: Cigarettes - Determination of total and nicotine free dry particulate matter using a routine analytical smoking machine; International Organization for Standardization, Geneva Switzerland 2000.Search in Google Scholar

26. ISO Standard 10315: Cigarettes - Determination of nicotine in smoke condensates - Gas-chromatographic method. International Organization for Standardization, Geneva Switzerland 2000.Search in Google Scholar

27. Health Canada: Determination of selected carbonyls in mainstream tobacco smoke 1999; Available at: http://www.hcsc.gc.ca/hc-ps/tobac-tabac/legislation/re g/indust/method/_main-principal/carbonyl02-eng.php #a17 (accessed November 2011).Search in Google Scholar

28. European Commission: On the approximation of the laws, regulations and administrative provisions of the Member States concerning the manufacture, presentation and sale of tobacco products Directive 2001/37/EC of the European Parliament and of the Council; 2001. Available at: http://eur-lex.europa.eu /LexUriServ/LexUriServ.do?uri=OJ:L:2001:194:0026:0034:EN:pdf (accessed November 2011).Search in Google Scholar

29. Zilkey B.F., W.A. Court, M.R. Binns, E.K. Walker, V.A. Dirks, and P.K. Basrur: Chemical studies on Canadian tobacco and tobacco smoke; Tob. Int. 184 (1982) 83–89.Search in Google Scholar

30. Seeman, J.I., S.W. Laffoon, and A.J. Kassman: Evaluation of relationships between mainstream smoke acetaldehyde and NFDPM and carbon monoxide yields in tobacco blends of U.S. commercial cigarettes; Inhalation Toxicol. 15 (2003) 373–395.Search in Google Scholar

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