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IV.F.2 - Nutrition and Cancer

from IV.F - Diet and Chronic Disease

Published online by Cambridge University Press:  28 March 2008

Kenneth F. Kiple
Affiliation:
Bowling Green State University, Ohio
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Summary

As early as the 1930s, experiments on laboratory animals revealed that diet can considerably influence the process of cancer causation and development (carcinogenesis) (Tannenbaum 1942a, 1942b; Tannenbaum and Silverstone 1953). It was several decades later, however, that the first epidemiological studies appeared to indicate that diet could play a role in human cancer. A key conference held in 1975, entitled “Nutrition in the Causation of Cancer,” summarized the existing knowledge and hypotheses (Wynder, Peters, and Vivona 1975). From that moment, research in experimental systems, including animal models and epidemiological studies, increased rapidly, providing extensive information on the impact of nutritional traditions and specific macro- and micronutrients on several types of cancer. Considerable progress had already been made in several underlying sciences. For example, advances had been achieved in understanding the mechanisms of action of nutrients, the process of carcinogenesis, and the classification of carcinogens according to their mode of action (Kroes 1979;Weisburger and Williams 1991).

In particular, epidemiological studies on the international variations in incidence rates for certain cancers pointed to the existence of one or more exogenous factors that could be controlled. Observational studies had been conducted with migrants from countries with lower incidence rates to countries with higher incidence rates. A rapid increase from the lower to the higher incidence in those migrants supported the suggestion that environmental causes, and especially prevailing dietary habits, may influence the development of a number of neoplasms.

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Publisher: Cambridge University Press
Print publication year: 2000

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References

Adamson, R. H., Gustafsson, J. A., Ito, N., et al. 1995. Heterocyclic amines in cooked foods. Proceedings of the 23rd International Symposium of the Princess Takamatsu Cancer Research Fund. Princeton, N.J.Google Scholar
Ames, B. N., and Gold, L. S.. 1992. Animal cancer tests and cancer prevention. Journal of the National Cancer Institute Monographs, no. 12.Google ScholarPubMed
Ames, B. N., Profet, M., and Gold, L. S.. 1990. Nature’s chemicals and synthetic chemicals: Comparative toxicology. Proceedings of the National Academy of Sciences 87.CrossRefGoogle ScholarPubMed
Baron, J. A., Verdier, M. Gerhardson, and Ekbom, A.. 1994. Coffee, tea, tobacco, and cancer of the large bowel. Cancer Epidemiology, Biomarkers, Prevention 3.Google ScholarPubMed
Bjelke, E. 1975. Dietary vitamin A and human lung cancer. International Journal of Cancer 15.CrossRefGoogle ScholarPubMed
Block, G., Patterson, B., and Subar, A.. 1992. Fruit, vegetables and cancer prevention: A review of the epidemiological evidence. Nutrition and Cancer 18.CrossRefGoogle ScholarPubMed
Bosland, M. C. 1986. Diet and cancer of the prostate: Epidemiologic and experimental evidence. In Diet, nutrition, and cancer: A critical evaluation, Vol. 1, ed. Reddy, B. S. and Cohen, L. A.. Boca Raton, Fla.Google Scholar
Brugge, J., Cuppan, T., Harlow, E., and McCormick, F.. 1991. Origins of human cancer; a comprehensive review. Plainview, N.Y.Google Scholar
Castelleto, R., Castellsague, X., Muñoz, M., et al. 1994. Alcohol, tobacco, mate drinking and esophageal cancer in Argentina. Cancer Epidemiology, Biomarkers, Prevention 3.Google Scholar
Chen, W., Weisburger, J. H., Fiala, E. S., et al. 1995. 2-Chloro-4-Methylthiobutanoic acid, a newly identified mutagen in salt, nitrite-treated fish. Nature 374.Google Scholar
Cohen, S. M., and Ellwein, L. B.. 1992. Risk assessment based on high dose animal exposure experiments. Chemical Research in Toxicology 5.CrossRefGoogle ScholarPubMed
,Committee on Diet and Health, Food and Nutrition Board. 1989. Diet and health: Implication for reducing chronic disease risk. Washington, D.C.
Correa, P. 1992. Human gastric carcinogenesis: A multistep and multifactorial process. First American Cancer Society Award Lecture on Cancer Epidemiology and Prevention. Cancer Research 52.Google Scholar
Craddock, V. M. 1992. Aetiology of oesophageal cancer: Some operative factors. European Journal of Cancer Prevention 1.CrossRefGoogle ScholarPubMed
Davidson, M. K., Davis, I. K., and Lindsey, J. R.. 1987. Requirement and selection of an animal model. International Journal of Medical Sciences 23.Google Scholar
Doll, R., and Peto, R.. 1981. The causes of cancer: Quantitative estimate of avoidable risks of cancer in the United States today. Journal of The National Cancer Institute 66.CrossRefGoogle ScholarPubMed
,Dutch Nutrition Council. 1986. Factoren in de voeding en het ontstaan van kanker (Dietary factors in relation to the causation of cancer). Dutch Nutrition Council Report. The Hague.
Echols, M., and Goodman, M. F.. 1991. Fidelity mechanisms in DNA replication. Annual Review of Biochemistry 60.CrossRefGoogle ScholarPubMed
Galloway, D. J. 1989. Animal models in the study of colorectal cancer. Cancer Surveys 8.Google Scholar
Harris, E. D. 1991. Regulation of anti-oxidant enzymes. Federation of American Societies for Experimental Biology Journal 6.Google Scholar
Highman, B., Norvell, M. J., and Shellenberg, T. E.. 1977. Pathological changes in female C3H mice continuously fed diets containing diethylstilbestrol or 17-beta-estradiol. Journal of Environmental Pathology and Toxicology 1.Google Scholar
Hirayama, T. 1989. Epidemiology of pancreatic cancer in Japan. Japanese Journal of Clinical Oncology 19.Google ScholarPubMed
Howson, C. P., Hiyama, T., and Wynder, E. L.. 1986. Decline of gastric cancer: Epidemiology of an unplanned triumph. Epidemiology Reviews 8.CrossRefGoogle ScholarPubMed
,International Agency for Research on Cancer. 1990. Cancer: Causes, occurrence and control. International Agency for Research on Cancer Scientific Publication no. 100. Lyon.
,International Agency for Research on Cancer. 1993. Some naturally occurring substances, food items and constituents, heterocyclic aromatic amines and mycotoxins. Monographs on the evaluation of carcinogenic risk to humans, no. 56. Lyon.
Joossens, J. V., Hill, M. J., and Geboers, J., eds. 1985. Diet and human carcinogenesis. Amsterdam.Google Scholar
Kroes, R. 1979. Animal data, interpretation and consequences. In Environmental carcinogenesis, ed. Emmelot, P. and Kriek, E.. Amsterdam.Google Scholar
Kroes, R. 1986. Diet in relation to cancer. In New concepts and developments in toxicology, ed. Chambers, P. L., Gehring, P., and Sakai, F.. New York.Google Scholar
Kroes, R. 1987. Contribution of toxicology towards risk assessment of carcinogens. Archives of Toxicology 60.CrossRefGoogle ScholarPubMed
Kroes, R., Beems, R. B., Bosland, M. C., et al. 1986. Nutritional factors in lung, colon and prostate carcinogenesis in animal models. Federation Proceedings 45.Google ScholarPubMed
Kvale, G., Bjelke, E., and Gart, J. J.. 1983. Dietary habits and lung cancer risk. International Journal of Cancer 31.CrossRefGoogle ScholarPubMed
Land, C. E., Boice, J. D., Shore, C. E., et al. 1980. Breast cancer risk from low dose exposure to ionizing radiation: Results of parallel analysis of three exposed populations of women. Journal of the National Cancer Institute 65.Google Scholar
Le Marchand, L., Hankin, J. H., Kolonel, L. N., et al. 1993. Intake of specific carotenoids and lung cancer risk. Cancer Epidemiology, Biomarkers, Prevention 2.Google ScholarPubMed
Levi, F., Lucchini, F., and La Vecchia, C.. 1994. Worldwide patterns of cancer mortality, 1985–1989. European Journal of Cancer Prevention 3.CrossRefGoogle Scholar
Liehr, J. G. 1990. Genotoxic effects of estrogens. Mutation Research 238.CrossRefGoogle ScholarPubMed
Meyskens, F. L. 1992. Strategies for prevention of cancer in humans. Oncology 6 (supplement).Google ScholarPubMed
Miller, S. A. 1992. Food additives and contaminants. In Toxicology: The basic science of poisons. Fourth edition, ed. Casarett, L. J. and Doull, J.. New York.Google Scholar
Miller, S. A. 1994. A brief history of chemical carcinogenesis. Cancer Letters 83.CrossRefGoogle ScholarPubMed
,National Research Council. 1982. Diet, nutrition, and cancer. Washington, D.C.
Negri, E., La Vecchia, C., Franceschi, S., and Tavani, A.. 1993. Attributable risk for oral cancer in northern Italy. Cancer Epidemiology, Biomarkers, Prevention 2.Google ScholarPubMed
Nomura, A. M. Y., and Kolonel, L. N.. 1991. Prostate cancer: A current perspective. American Journal of Epidemiology 13.Google ScholarPubMed
Olson, J. A., and Kobayashi, S.. 1992. Antioxidants in health and disease: An overview. Proceedings of the Society for Experimental Biology and Medicine 200.Google Scholar
Packer, L. 1992. Interactions among antioxidants in health and disease: Vitamin E and its redox cycle (43433). Proceedings of the Society for Experimental Biology and Medicine 200.Google Scholar
Parkin, D. M. 1993. Studies of cancer in migrant populations. In Cancer in Italian migrant populations, eds. Geddels, M., Parkin, D. M., and Khlat, M. et al. Lyon: International Agency for Research on Cancer, Scientific Publication no. 123.Google ScholarPubMed
Randerath, K., Randerath, E., Danna, T. F., et al. 1989. A new sensitive 32P-postlabeling assay based on the specific enzymatic conversion of bulky DNA lesions to radiolabeled dinucleotides and nucleoside 5′-monophosphates. Carcinogenesis 10.CrossRefGoogle ScholarPubMed
Reddy, B. S. 1992. Animal experimental evidence on macronutrients and cancer. In Macronutrients: Investigating their role in cancer, ed. Micozzi, M. S. and Moon, T. M.. New York.Google Scholar
Reddy, B. S., and Cohen, L. A.. 1986. Diet, nutrition, and cancer: A critical evaluation. In Macronutrients and cancer, Vol. 1. Boca Raton, Fla.Google Scholar
Ronai, Z. 1992. Ras oncogene detection in preneoplastic lesions: Possible applications for diagnosis and prevention (Review). Oncology Research 4.Google Scholar
Sai, K., Umemura, T., Tagaji, A., et al. 1992. The protective role of glutathione, cysteine and vitamin C against oxidative DNA damage induced in rat kidney by potassium bromate. Japanese Journal of Cancer Research 83.CrossRefGoogle ScholarPubMed
Seitz, H., and Simanowski, U. A.. 1991. Alcohol and cancer: A critical review. In Alcoholism: A molecular perspective, ed. Palmer, T. N.. New York.Google Scholar
Sugimura, T. 1992. Multistep carcinogenesis: A 1992 perspective. Science 258.CrossRefGoogle ScholarPubMed
Tannenbaum, A. 1942a. The genesis and growth of tumors: II. Effects of caloric restriction per se. Cancer Research 2.Google Scholar
Tannenbaum, A. 1942b. The genesis and growth of tumors: III. Effect of a high fat diet. Cancer Research 2.Google Scholar
Tannenbaum, A., and Silverstone, H.. 1953. Nutrition in relation to cancer. Advances in Cancer Research 1.CrossRefGoogle Scholar
Tomatis, L. 1992. Poverty and cancer. Cancer Epidemiology, Biomarkers, Prevention 1.Google ScholarPubMed
Trosko, J. E., and Goodman, J. I.. 1994. Intercellular communication may facilitate apoptosis: Implications for tumor promotion (Review). Molecular Carcinogenesis 11.CrossRefGoogle Scholar
,U.S. Public Health Service. 1988. The Surgeon General’s Report on Nutrition and Health, Department of Health and Human Services (Public Health Service) Publication no. 88–50210. Washington, D.C.
Watanapa, P., and Williamson, R. C. N.. 1993. Experimental pancreatic hyperplasia and neoplasia: Effects of dietary and surgical manipulation. British Journal of Cancer 67.CrossRefGoogle ScholarPubMed
Weisburger, J. H. 1991. Nutritional approach to cancer prevention with emphasis on vitamins, antioxidants and carcinogens. American Journal of Clinical Nutrition 53.CrossRefGoogle Scholar
Weisburger, J. H. 1992. Mechanisms of macronutrient carcinogenesis. In Macronutrients: Investigating their role in cancer, ed. Dekker, M., Micozzi, M. S., and Moon, T. E.. New York.Google Scholar
Weisburger, J. H. 1994. Commentary. Does the Delaney Clause of the U.S. Food and Drug Laws prevent human cancers?Fundamental and Applied Toxicology 22.CrossRefGoogle Scholar
Weisburger, J. H. 1996. Tea antioxidants and health. In Handbook of Antioxidants, eds. Cajenas, Enrique and Packer, Lester. New York.Google Scholar
Weisburger, J. H., and Kroes, R.. 1994. Mechanisms in nutrition and cancer. Meeting report. European Journal of Cancer Prevention 3.Google Scholar
Weisburger, J. H., and Williams, G.. 1991. Critical effective methods to detect genotoxic carcinogens and neoplasm promoting agents. Environmental Health Perspectives 90.CrossRefGoogle ScholarPubMed
Williams, G. M., and Weisburger, J. H.. 1991. Chemical carcinogens. In Casarett and Doull’s toxicology. Fourth edition, ed. Amdur, M. V., Doull, J., and Klaassen, C. D.. New York.Google Scholar
,World Cancer Research Fund. 1997. Food, nutrition, and the prevention of cancer: A global perspective. Washington, D.C.
Wynder, E. L., and Gori, G. B.. 1977. Contribution of the environment to cancer incidence: An epidemiologic exercise. Journal of the National Cancer Institute 58.CrossRefGoogle Scholar
Wynder, E. L., Peters, J. A., and Vivona, S., eds. 1975. Nutrition in the causation of cancer, a symposium. Cancer Research 35.Google Scholar
Wynder, E. L., Rose, O. P., and Cohen, L. A.. 1994. Nutrition and prostate cancer: A proposal for dietary intervention. Nutrition and Cancer 22.CrossRefGoogle ScholarPubMed
Wynder, E. L., Taioli, E., and Fujita, Y.. 1992. Ecologic study of lung cancer risk factors in the U.S. and Japan with special reference to smoking and diet. Japanese Cancer Research 83.Google ScholarPubMed
Yamasaki, H. 1990. Gap junctional intercellular communication and carcinogenesis. Carcinogenesis 11.CrossRefGoogle ScholarPubMed
Zeng, Y., Oshima, H., Bouvier, G., et al. 1993. Urinary excretion of nitrosamino acids and nitrite by inhabitants of high and low risk areas for nasopharyngeal carcinoma in southern China. Cancer Epidemiology, Biomarkers, Prevention 2.Google Scholar
Ziegler, R. G., Subar, A. F., Craft, N. E., et al. 1992. Does betacarotene explain why reduced cancer risk is associated with vegetable and fruit intake?Cancer Research 52.Google ScholarPubMed

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