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Food Lipids: Chemistry, Nutrition, and Biotechnology

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10. E. N. Frankel. <strong>Chemistry</strong> of autoxidation: Mechanism, products <strong>and</strong> flavor significance.<br />

In: Flavor <strong>Chemistry</strong> of Fats <strong>and</strong> Oils (D. B. Min <strong>and</strong> T. H. Smouse, eds.). American<br />

Oil Chemists’ Society, 1985, pp. 1–34.<br />

11. R. T. Holman <strong>and</strong> O. C. Elmer. The rates of oxidation of unsaturated fatty acids <strong>and</strong><br />

esters. J. Am. Oil Chem. Soc. 24:127–129 (1947).<br />

12. C. H. Lea. Methods for determining peroxide in lipids. J. Sci. <strong>Food</strong> Agric. 3:586–594<br />

(1952).<br />

13. D. G. Bradley <strong>and</strong> D. B. Min. Singlet oxygen oxidation of foods. Crit. Rev. <strong>Food</strong> Sci.<br />

Nutr. 31:211–236 (1992).<br />

14. M. B. Korycka-Dahl <strong>and</strong> T. Richardson. Activated oxygen species <strong>and</strong> oxidation of food<br />

constituents. Crit. Rev. <strong>Food</strong> Sci. Nutr. 10:209–240 (1978).<br />

15. W. T. S. Yang <strong>and</strong> D. B. Min. <strong>Chemistry</strong> of singlet oxygen oxidation of foods. In: <strong>Lipids</strong><br />

in <strong>Food</strong> Flavors (C. T. Ho <strong>and</strong> T. G. Hartm<strong>and</strong>, eds.). American Chemical Society,<br />

Washington, DC, 1994, pp. 15–29.<br />

16. W. A. Waters. The kinetics <strong>and</strong> mechanism of metal catalyzed autoxidation. J. Am. Oil<br />

Chem. Soc. 48:427–433 (1971).<br />

17. J. M. McCord <strong>and</strong> I. Fridoich. The reduction of cytochrome c by milk xanthine oxidase.<br />

J. Biol. Chem. 243:5753–5760 (1968).<br />

18. J. M. McCord <strong>and</strong> I. Fridoich. Superoxide dismutase. An enzymatic function for erythrocuprein.<br />

J. Biol. Chem. 244:6049–6055 (1969).<br />

19. C. S. Foote <strong>and</strong> R. W. Denny. <strong>Chemistry</strong> of singlet oxygen quenching by �-carotene. J.<br />

Am. Chem. Soc. 90:6232–6238 (1968).<br />

20. A. M. Held, D. J. Halko, <strong>and</strong> J. K. Hurst. Mechanism of chlorine oxidation in hydrogen<br />

peroxide. J. Am. Chem. Soc. 100:5732–5740 (1978).<br />

21. A. H. Clements, R. H. Van Den Engh, D. H. Frost, K. Hoogenhout, <strong>and</strong> J. R. Nooi.<br />

Participation of singlet oxygen in photosensitized oxidation of 1,4-dienoic systems <strong>and</strong><br />

photooxidation of soybean oil. J. Am. Oil Chem. Soc. 50:325–330 (1973).<br />

22. M. Y. Jung, S. K. Kim, <strong>and</strong> S. Y. Kim. Riboflavin-sensitized photoxidation of ascorbic<br />

acid: kinetics <strong>and</strong> amino acid effects. <strong>Food</strong> Chem. 53:397–403 (1995).<br />

23. N. I. Krinsky. Singlet oxygen in biological systems. Trends Biochem. Sci. 2:35–38<br />

(1977).<br />

24. R. Usuki, Y. Endo, <strong>and</strong> T. Kaneda. Prooxidant activities of chlorophylls <strong>and</strong> phenophytins<br />

on the photooxidation of edible oils. Agric. Biol. Chem. 48:991–994 (1984).<br />

25. C. S. Foote. Photosensitized oxidation <strong>and</strong> singlet oxygen: Consequences in biological<br />

systems. In: Free Radicals in Biology, Vol. 2 (W. A. Pryor, ed.). Academic Press, New<br />

York, 1976, p. 85.<br />

26. K. Gollnick. Type II photooxygenation reactions in solution. In: Advances in Photochemistry,<br />

Vol. 6 (W. A. Noyes, Jr., G. S. Hammond, <strong>and</strong> J. N. Pitts, Jr., eds.). John<br />

Wiley <strong>and</strong> Sons, New York, 1968, pp. 1–122.<br />

27. A. Kepka <strong>and</strong> L. I. Grossweiner. Photodynamic oxidation of iodide ion <strong>and</strong> aromatic<br />

amino acids by eosine. Photochem. Photobiol. 14:621–639 (1972).<br />

28. P. J. Ke <strong>and</strong> R. G. Ackman. Bunsen coefficient for oxygen in marine oils at various<br />

temperatures determined by exponential dilution method with a polarographic oxygen<br />

electrode. J. Am. Oil Chem. Soc. 50:429–435 (1973).<br />

29. K. Whang <strong>and</strong> I. C. Peng. Electron paramagnetic resonance studies of the effectiveness<br />

of myoglobin <strong>and</strong> its derivatives as photosensitizers in singlet oxygen generation. J.<br />

<strong>Food</strong> Sci. 53:1863–1865 (1988).<br />

30. D. G. Bradley. Riboflavin photosensitized singlet oxygen oxidation in milk products.<br />

Ph.D. dissertation, The Ohio State University, Columbus, 1991.<br />

31. W. Adam. Singlet molecular oxygen <strong>and</strong> its role in organic peroxide chemistry. Chem.<br />

Ztg. 99:142–155 (1975).<br />

Copyright 2002 by Marcel Dekker, Inc. All Rights Reserved.

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