A dietary pattern that is associated with C-peptide and risk of colorectal cancer in women (original) (raw)
Abstract
Purpose
Higher serum C-peptide concentrations have shown to be associated with an increased risk of colorectal cancer (CRC). Therefore, we used diet information to identify food groups that correlated with fasting serum concentrations of C-peptide and assess the association of this dietary pattern and CRC risk.
Methods
Major food contributors to fasting C-peptide concentrations were identified with stepwise linear regression in a subsample (n = 833) of women from a large cohort. We then summed the consumption frequency of the major food contributors to form a C-peptide dietary pattern for the entire cohort (n = 66,714). Risk for CRC was computed using Cox proportional hazard model with the C-peptide dietary pattern score as the predictor.
Results
In up to 20 years of follow-up, we ascertained 985 cases of CRC and 758 colon cancer. After adjusting for confounders, the C-peptide dietary pattern, characterized by higher meat, fish, and sweetened beverage intake, but lower coffee, high fat dairy, and whole grains intake, showed direct association with CRC risk (RR comparing extreme quintiles = 1.29, 95 % CI = 1.05–1.58, p trend = 0.048). The same comparison was slightly stronger for colon cancer (RR = 1.35, 95 % CI = 1.07–1.70, p trend = 0.009). In stratified analysis, there was no association between the C-peptide dietary pattern and colon cancer among lean and active women. However, for overweight or sedentary women, RR for the same comparison was 1.58 (95 % CI = 1.20–2.07, p trend = 0.002) (p for interaction = 0.007).
Conclusion
We derived a dietary pattern that correlated with C-peptide concentrations. This pattern was associated with an increase in colon cancer, especially among women who were overweight or sedentary.
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References
- Jenab M, Riboli E, Cleveland R et al (2007) Serum C-peptide, IGFBP-1 and IGFBP-2 and risk of colon and rectal cancers in the European prospective investigation into cancer and nutrition. Int J Cancer 121:368–376
Article PubMed CAS Google Scholar - Otani T, Iwasaki M, Sasazuki S, Inoue M, Tsugane S, Group JPHC-bPS (2007) Plasma C-peptide, insulin-like growth factor-I, insulin-like growth factor binding proteins and risk of colorectal cancer in a nested case-control study: the Japan public health center-based prospective study. Int J Cancer. 120: 2007–2012
- Wei EK, Ma J, Pollak MN, Fuchs CS, Hankinson SE, Giovannucci EL (2005) A prospective study of C-peptide, insulin-like growth factor-I, insulin-like growth factor binding protein-1, and the risk of colorectal cancer in women. Cancer Epidemiol Biomarkers Prev 14:850–855
Article PubMed CAS Google Scholar - Giovannucci EL (1995) Insulin and colon cancer. Cancer Causes Control 164–179:16
Google Scholar - Fung TT, Rimm E, Spiegelman D et al (2001) Association between dietary patterns and plasma biomarkers of obesity and cardiovascular disease risk. Am J Clin Nutr 73:61–67
PubMed CAS Google Scholar - Giovannucci EL, Rimm E, Liu Y, Willett WC (2004) Height, predictors of C-peptide and cancer risk in men. Int J Epidemiol 33:217–225
Article PubMed Google Scholar - Kerver JM, Yang EJ, Bianchi L, Song WO (2003) Dietary patterns associated with risk factors for cardiovascular disease in healthy US adults. Am J Clin Nutr 78:1103–1110
PubMed CAS Google Scholar - Bobe G, Murphy G, Rogers CJ et al (2010) Serum adiponectin, leptin, C-peptide, homocysteine, and colorectal adenoma recurrence in the polyp prevention trial. Cancer Epidemiol Biomarkers Prev 19:1441–1452
Article PubMed CAS Google Scholar - Jensen MK, Koh-Banerjee P, Franz M, Sampson L, Gronbaek H, Rimm E (2006) Whole grains, bran, and germ in relation to homocysteine and markers of glycemic control, lipids, and inflammation 1. Am J Clin Nutr 83:2275–2283
Google Scholar - Loopstra-Masters Rc, Liese AD, Haffner SM, Wagenknecht LE, Hanley AJ (2011) Associations between the intake of caffeinated and decaffeinated coffee and measures of insulin sensitivity and beta cell function. Diabetologia 54:320–328
Article PubMed CAS Google Scholar - Wu T, Willett WC, Hankinson SE, Giovannucci EL (2005) Caffeinated coffee, decaffeinated coffee, and caffeine in relation to plasma C-peptide levels, a marker of insulin secretion, in US women. Diabetes Care 28:1390–1396
Article PubMed CAS Google Scholar - Gnagnarella P, Gandini S, La Vecchia C, Maisonneuve P (2008) Glycemic index, glycemic load, and cancer risk: a meta-analysis. Am J Clin Nutr 87:1793–1801
PubMed CAS Google Scholar - Nimptsch K, Jc Brand-Miller, Franz M, Sampson L, Willett WC, Giovannucci EL (2011) Dietary insulin index and insulin load in relation to biomarkers of glycemic control, plasma lipids, and inflammation markers. Am J Clin Nutr 94:182–190
Article PubMed CAS Google Scholar - Bao Y, Nimptsch K, Meyerhardt JA et al (2010) Dietary insulin load, dietary insulin index, and colorectal cancer. Cancer Epidemiol Biomarkers Prev 19:3020–3026
Article PubMed CAS Google Scholar - Colditz GA, Martin P, Stampfer MJ et al (1986) Validation of questionaire information on risk factors and disease outcomes in a prospetive cohort of women. Am J Epidemiol 123:894–900
PubMed CAS Google Scholar - Willett WC (1998) Nutritional epidemiology. Oxford Univeristy Press, New York
Book Google Scholar - Feskanich D, Rimm E, Giovannucci EL et al (1993) Reproducibility and validity of food intake measurements from a semiquantitative food frequency questionnaire. J Am Dietetic Assoc 93:790–796
Article CAS Google Scholar - Ainsworth BE, Haskell WL, Whitt MC et al (2000) Compendium of physical activities: an update of activity codes and MET intensities. Med Sci Sport Exerc 32:S498–S504
Article CAS Google Scholar - Rosner BA, Cook N, Portman R, Daniels S, Falkner B (2008) Determination of blood pressure percentiles in normal-weight children: some methodological issues. Am J Epidemiol 167:653–666
Article PubMed CAS Google Scholar - Hu FB, Rimm E, Smith-Warner SA et al (1999) Reproducibility and validity of dietary patterns assessed with a food-frequency questionnaire. Am J Clin Nutr 69:243–249
PubMed CAS Google Scholar - McNaughton SA, Mishra GD, Brunner EJ (2008) Dietary patterns, insulin resistance, and incidence of type 2 diabetes in the Whitehall II study. Diabetes Care 31:1343–1348
Article PubMed Google Scholar - Hu FB, Stampfer MJ, Rimm E et al (1999) Dietary fat and coronary heart disease: a comparison of approaches for adjusting for total energy intake and modeling repeated dietary measurements. Am J Epidemiol 149:531–540
Article PubMed CAS Google Scholar - Kaaks R, Toniolo P, Akhmedkhanov A et al (2000) Serum C-peptide, insulin-like growth factor (IGF)-I, IGF-binding proteins, and colorectal cancer risk in women. Int J Cancer 92:1592–1600
CAS Google Scholar - Le Merchand L, Wang H, Rinaldi S et al (2010) Associations of plasma C-peptide and IGFBP-1 levels with risk of colorectal adenoma in a multiethnic population. Cancer Epidemiol Biomarkers Prev 19:1471–1477
Article Google Scholar - Giovannucci EL, Harlan DM, Archer MC et al (2010) Diabetes and cancer: a consensus report. CA Cancer J Clin 60:207–221
Article PubMed Google Scholar - Ning Y, Wang L, Giovannucci EL (2010) A quantitative analysis of body mass index and colorectal cancer: findings from 56 observational studies. Obesity Rev 11:19–30
Article CAS Google Scholar
Acknowledgments
We would like to thank the participants and staff of the Nurses’ Health Study for their valuable contributions as well as the following state cancer registries for their help: AL, AZ, AR, CA, CO, CT, DE, FL, GA, ID, IL, IN, IA, KY, LA, ME, MD, MA, MI, NE, NH, NJ, NY, NC, ND, OH, OK, OR, PA, RI, SC, TN, TX, VA, WA, WY. This work is funded by the National Institute of Health research grants CA87969, HL60712, and CA95589.
Conflict of interest
There is not conflict of interest for any of the authors.
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Authors and Affiliations
- Department of Nutrition, Simmons College, 300 The Fenway, Boston, MA, 02115, USA
Teresa T. Fung - Department of Nutrition, Harvard School of Public Health, 667 Huntington Ave, Boston, MA, 02115, USA
Teresa T. Fung, Frank B. Hu & Edward Giovannucci - Channing Laboratory, Department of Medicine, Brigham and Women’s Hospital and Harvard Medical School, Boston, MA, USA
Frank B. Hu & Edward Giovannucci - Department of Medical Oncology, Dana Farber Cancer Institute, Boston, MA, 02115, USA
Charles S. Fuchs - German Institute of Human Nutrition, and Technical University of Munich, Munich, Germany
Matthias Schulze - Lady Davis Institute for Medical Research, McGill University, Montreal, QC, Canada
Michael Pollak - Department of Environmental Health, University of Cincinnati, Cincinnati, OH, USA
Tianying Wu
Authors
- Teresa T. Fung
- Frank B. Hu
- Matthias Schulze
- Michael Pollak
- Tianying Wu
- Charles S. Fuchs
- Edward Giovannucci
Corresponding author
Correspondence toTeresa T. Fung.
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Fung, T.T., Hu, F.B., Schulze, M. et al. A dietary pattern that is associated with C-peptide and risk of colorectal cancer in women.Cancer Causes Control 23, 959–965 (2012). https://doi.org/10.1007/s10552-012-9969-y
- Received: 22 January 2012
- Accepted: 11 April 2012
- Published: 26 April 2012
- Issue date: June 2012
- DOI: https://doi.org/10.1007/s10552-012-9969-y