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Formation of Dihydroxybenzenes in Cigarette Smoke. Part 1. Contribution from Chlorogenic Acid and Rutin Cover

Formation of Dihydroxybenzenes in Cigarette Smoke. Part 1. Contribution from Chlorogenic Acid and Rutin

By: MF Davis,  HD Mills and  SC Moldoveanu  
Open Access
|Dec 2014

References

  1. 1. Kaur, N., M. Lacasse, A. Fürtös, K.C. Waldron, and A. Morin: Sequential fractionation with concurrent chemical and toxicological characterization of the combustion products of chlorogenic acid; J. Chromatogr. A 1216 (2009) 4703-4712.
  2. 2. Chouchane, S., J.B. Wooten, F.J. Tewes, A. Wittig, B.P. Müller, D. Veltel, and J. Diekmann: Involvement of semiquinone radicals in the in vitro cytotoxicity of cigarette mainstream smoke; Chem. Res. Toxicol. 19 (2006) 1602-1610.
  3. 3. Gopalakrishna, R., Z.-H. Chen, and U. Gundimeda: Tobacco smoke tumor promoters, catechol and hydroquinone, induce oxidative regulation of protein kinase C and influence invasion and metastasis of lung carcinoma cells; Proc. Natl. Acad. Sci. 91 (1994) 12233!12237.
  4. 4. Lau, S.S., T.J. Monks, J.I. Everitt, E. Kleymenova, and C.L. Walker: Carcinogenicity of a nephrotoxic metab-olite of the “nongenotoxic” carcinogen hydroquinone; Chem. Res. Toxicol. 14 (2001) 25!33.
  5. 5. http://potency.berkeley.edu/chemnameindex.html (ac-cessed June 2012)
  6. 6. Carmella, S.G., S.S. Hecht, T.C. Tso, and D. Hoffmann: Roles of tobacco cellulose, sugars and chlorogenic acid as precursors to catechol in cigarette smoke; J. Agric. Food Chem., 32 (1964) 267!273.
  7. 7. Schlotzhauer, W.S., M.E. Snook, O.T. Chortyk, and R.L. Wilson: Pyrolytic evaluation of low chlorogenic acid tobaccos in the formation of the tobacco smoke co-carcinogen catechol; J. Anal. Appl. Pyrol. 22 (1992) 231!238.
  8. 8. Schlotzhauer, W.S. and O.T. Chortyk: Pyrolytic stud-ies on the origin of phenolic compounds in tobacco smoke; Tob. Sci. 25 (1981) 6!10.
  9. 9. McGrath, T.E., A.P. Brown, N.K. Meruva, and W.G. Chan: Phenolic compound formation from the low temperature pyrolysis of tobacco; J. Anal. Appl. Pyrol. 84 (2009) 170!178.
  10. 10. Dyakonov, A.J., R.T. Walker, C.A. Brown, F.R. Perini, D.S. Passer, J. Guan, and E.A. Robinson: Stud-ies of the Formation of Smoke Phenols; Beitr. Tabakforsch. Int. 23 (2008) 68!84.
  11. 11. Liu, C., Y. DeGrandpré, A. Porter, A. Griffiths, K. McAdam, R. Voisine, F. Côté, and C. Proctor: The use of a novel tobacco treatment process to reduce toxicant yields in cigarette smoke; Food Chem. Toxicol. 49 (2011) 1904!1917.
  12. 12. Baker, R.R. and L.J. Bishop: The pyrolysis of tobacco ingredients; J. Anal. Appl. Pyrol. 71 (2004) 223!311.10.1016/S0165-2370(03)00090-1
  13. 13. International Organisation for Standardization (ISO): ISO 3308:1991 Routine analytical cigarette smoking machine- definitions and standard conditions (E); ISO, Geneva, Switzerland, 1991.
  14. 14. International Organisation for Standardization (ISO): ISO 4387:1991 Cigarette - Determination of total and nicotine free dry particulate matter using a routine analytical smoking machine (E); ISO, Geneva, Swit-zerland, 1991.
  15. 15. Moldoveanu, S.C. and M. Kiser: Gas chromatogra-phy/mass spectrometry versus liquid chromato-graphy/fluorescence detection in the analysis of phe-nols in mainstream cigarette smoke; J. Chromatogr. A. 1141 (2007) 90!97.
  16. 16. Moldoveanu, S.C.: Analytical pyrolysis of natural or-ganic polymers; Elsevier, Amsterdam, 1998, pp. 53!54.
  17. 17. Jenkins Jr., R.W., R.H. Newman, and M.K. Chavis: Cigarette Smoke Formation Studies: II. Smoke Distri-bution and Mainstream Pyrolytic Composition of Added 14C-Menthol (U); Beitr. Tabakforsch. 5 (1970) 299!301.
  18. 18. Moldoveanu, S.C.: Pyrolysis of organic molecules with applications to health and environmental issues; Elsevier, Amsterdam, 2010, pp. 298!305.
  19. 19. Stotesbury, S.J., H. Digard, L.J. Willoughby, and A. Couch: The Pyrolysis of Tobacco Additives as a Means of Predicting Their Behavior in a Burning Ciga-rette; Beitr. Tabakforsch. Int. 18 (1999) 147!163.
  20. 20. Leffingwell, J.C.: Leaf Chemistry; in: Tobacco Pro-duction, Chemistry and Technology, edited by D.L. Davis and M.T. Nielsen, Blackwell Science, Berlin, 1988, pp. 265!284.
  21. 21. Rodgman, A. and T.A. Perfetti: The Chemical Compo-nents of Tobacco and Tobacco Smoke; CRC Press, Boca Raton, 2009, FL, p. 1126.10.1201/9781420078848
  22. 22. Perfetti, T.A. and A. Rodgman: The Complexity of Tobacco and Tobacco Smoke; Beitr. Tabakforsch. Int. 24 (2011) 215!232.
  23. 23. De Smet, R., J. Van Kaer, B. Van Vlem, A. De Cubber, P. Brunet, N. Lamaire, and R. Vanholder: Toxicity of free p-cresol: A prospective and cross-sectional analysis; Clin. Chem. 49 (2003) 470!478.
  24. 24. Chen, P.X. and S.C. Moldoveanu: Mainstream Smoke Chemical Analyses for 2R4F Kentucky Reference Cigarette; Beitr. Tabakforsch. Int. 20 (2003) 448!458.
Language: English
Page range: 396 - 408
Submitted on: Sep 15, 2011
Accepted on: Jun 22, 2012
Published on: Dec 30, 2014
Published by: Institut für Tabakforschung GmbH
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2014 MF Davis, HD Mills, SC Moldoveanu, published by Institut für Tabakforschung GmbH
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.