Investigation of gene–diet interactions in the incretin system and risk of type 2 diabetes: the EPIC-InterAct study
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[1] A. Miller,et al. Overweight, obesity and fat distribution in 50- to 64-year-old participants in the European Prospective Investigation into Cancer and Nutrition (EPIC) , 2002, Public Health Nutrition.
[2] M. Schulze,et al. Whole-grain consumption and transcription factor-7-like 2 (TCF7L2) rs7903146: gene–diet interaction in modulating type 2 diabetes risk , 2008, British Journal of Nutrition.
[3] J. Holst,et al. Differential effects of saturated and monounsaturated fats on postprandial lipemia and glucagon-like peptide 1 responses in patients with type 2 diabetes. , 2003, The American journal of clinical nutrition.
[4] F. Hu,et al. TCF7L2, dietary carbohydrate, and risk of type 2 diabetes in US women. , 2009, The American journal of clinical nutrition.
[5] W. Hall,et al. Casein and whey exert different effects on plasma amino acid profiles, gastrointestinal hormone secretion and appetite , 2003, British Journal of Nutrition.
[6] T. Hansen,et al. Incretin and pancreatic hormone secretion in Caucasian non‐diabetic carriers of the TCF7L2 rs7903146 risk T allele , 2013, Diabetes, obesity & metabolism.
[7] L. Groop,et al. Variants in KCNQ1 are associated with susceptibility to type 2 diabetes mellitus , 2008, Nature Genetics.
[8] M. Orho-Melander,et al. Role of TCF7L2 risk variant and dietary fibre intake on incident type 2 diabetes , 2012, Diabetologia.
[9] D. van der A,et al. The amount and type of dairy product intake and incident type 2 diabetes: results from the EPIC-InterAct Study. , 2012, The American journal of clinical nutrition.
[10] E. Feskens,et al. Dietary fibre and incidence of type 2 diabetes in eight European countries: the EPIC-InterAct Study and a meta-analysis of prospective studies , 2015, Diabetologia.
[11] N. Stefan,et al. A common genetic variant in WFS1 determines impaired glucagon-like peptide-1-induced insulin secretion , 2009, Diabetologia.
[12] W C Willett,et al. Adjustment for total energy intake in epidemiologic studies. , 1997, The American journal of clinical nutrition.
[13] M. Clifford,et al. Coffee acutely modifies gastrointestinal hormone secretion and glucose tolerance in humans: glycemic effects of chlorogenic acid and caffeine. , 2003, The American journal of clinical nutrition.
[14] J. Holst,et al. Differential effects of saturated and monounsaturated fatty acids on postprandial lipemia and incretin responses in healthy subjects. , 1999, The American journal of clinical nutrition.
[15] J. Holst,et al. Metabolic effects of amino acid mixtures and whey protein in healthy subjects: studies using glucose-equivalent drinks. , 2007, The American journal of clinical nutrition.
[16] Christian Gieger,et al. Genetic fine-mapping and genomic annotation defines causal mechanisms at type 2 diabetes susceptibility loci , 2016 .
[17] P. Petocz,et al. An insulin index of foods: the insulin demand generated by 1000-kJ portions of common foods. , 1997, The American journal of clinical nutrition.
[18] E. Tai,et al. Genetic Variation in KCNQ1 Associates With Fasting Glucose andβ-Cell Function , 2009, Diabetes.
[19] F. Nystrom,et al. A Randomized Cross-Over Trial of the Postprandial Effects of Three Different Diets in Patients with Type 2 Diabetes , 2013, PloS one.
[20] Peter Almgren,et al. Mechanisms by which common variants in the TCF7L2 gene increase risk of type 2 diabetes. , 2007, The Journal of clinical investigation.
[21] F. Clavel-Chapelon,et al. Dietary Fibre Intake and Risks of Cancers of the Colon and Rectum in the European Prospective Investigation into Cancer and Nutrition (EPIC) , 2012, PloS one.
[22] C. Deacon,et al. Glucose-induced incretin hormone release and inactivation are differently modulated by oral fat and protein in mice. , 2006, Endocrinology.
[23] F. Hu,et al. Prevention and management of type 2 diabetes: dietary components and nutritional strategies , 2014, The Lancet.
[24] M. Loder,et al. TCF7L2 controls insulin gene expression and insulin secretion in mature pancreatic beta-cells. , 2008, Biochemical Society transactions.
[25] Alex Doney,et al. Genetic variation in GIPR influences the glucose and insulin responses to an oral glucose challenge , 2010, Nature Genetics.
[26] N E Day,et al. European Prospective Investigation into Cancer and Nutrition (EPIC): study populations and data collection , 2002, Public Health Nutrition.
[27] J. Florez,et al. Progress, pitfalls, and prospects , 2013 .
[28] A. Fritsche,et al. Genetic variants affecting incretin sensitivity and incretin secretion , 2010, Diabetologia.
[29] E. Feskens,et al. Consumption of fatty foods and incident type 2 diabetes in populations from eight European countries , 2014, European Journal of Clinical Nutrition.
[30] Y. Kawakami,et al. Correction: A Src-Tks5 Pathway Is Required for Neural Crest Cell Migration during Embryonic Development , 2012, PLoS ONE.
[31] M. McCarthy,et al. Gene-Lifestyle Interaction and Type 2 Diabetes: The EPIC InterAct Case-Cohort Study , 2014, PLoS medicine.
[32] E. Tai,et al. Genetic variation in KCNQ1 associates with fasting glucose and beta-cell function: a study of 3,734 subjects comprising three ethnicities living in Singapore. , 2009, Diabetes.
[33] T. Hansen,et al. SNPs in KCNQ1 are associated with susceptibility to type 2 diabetes in East Asian and European populations , 2008, Nature Genetics.
[34] J. Holst,et al. Impaired glucagon-like peptide-1-induced insulin secretion in carriers of transcription factor 7-like 2 (TCF7L2) gene polymorphisms , 2009, Diabetologia.
[35] J. Holst,et al. Impact of cereal fibre on glucose-regulating factors , 2005, Diabetologia.
[36] J. Holst,et al. Glycemia and insulinemia in healthy subjects after lactose-equivalent meals of milk and other food proteins: the role of plasma amino acids and incretins. , 2004, The American journal of clinical nutrition.
[37] C. González,et al. Olive oil intake and mortality within the Spanish population (EPIC-Spain). , 2012, The American journal of clinical nutrition.
[38] J. Holst,et al. The incretin system and its role in type 2 diabetes mellitus , 2009, Molecular and Cellular Endocrinology.
[39] J. Habener,et al. Glucagon-like Peptide-1 Activation of TCF7L2-dependent Wnt Signaling Enhances Pancreatic Beta Cell Proliferation* , 2008, Journal of Biological Chemistry.
[40] Jo Mitchell,et al. Validity and repeatability of a simple index derived from the short physical activity questionnaire used in the European Prospective Investigation into Cancer and Nutrition (EPIC) study , 2003, Public Health Nutrition.
[41] P. Clifton,et al. Effects of a Protein Preload on Gastric Emptying, Glycemia, and Gut Hormones After a Carbohydrate Meal in Diet-Controlled Type 2 Diabetes , 2009, Diabetes Care.
[42] Toshiko Tanaka,et al. Interactions of Dietary Whole-Grain Intake With Fasting Glucose– and Insulin-Related Genetic Loci in Individuals of European Descent , 2010, Diabetes Care.
[43] P. Tessari,et al. Slow versus fast proteins in the stimulation of beta‐cell response and the activation of the entero‐insular axis in type 2 diabetes , 2007, Diabetes/metabolism research and reviews.
[44] N Slimani,et al. The EPIC nutrient database project (ENDB): a first attempt to standardize nutrient databases across the 10 European countries participating in the EPIC study , 2007, European Journal of Clinical Nutrition.
[45] J. Li,et al. Adjusting multiple testing in multilocus analyses using the eigenvalues of a correlation matrix , 2005, Heredity.
[46] C. Östenson,et al. Consumption of whole grain reduces risk of deteriorating glucose tolerance, including progression to prediabetes. , 2013, The American journal of clinical nutrition.
[47] C. Mcintosh,et al. Decreased TCF7L2 protein levels in type 2 diabetes mellitus correlate with downregulation of GIP- and GLP-1 receptors and impaired beta-cell function. , 2015, Human molecular genetics.
[48] J. Florez,et al. Gene-Environment and Gene-Treatment Interactions in Type 2 Diabetes , 2013, Diabetes Care.
[49] R. Yada,et al. The acute impact of ingestion of breads of varying composition on blood glucose, insulin and incretins following first and second meals. , 2008, The British journal of nutrition.
[50] U. Nöthlings,et al. Total dietary carbohydrate, sugar, starch and fibre intakes in the European Prospective Investigation into Cancer and Nutrition , 2009, European Journal of Clinical Nutrition.
[51] T. Consortium. Design and cohort description of the InterAct Project: an examination of the interaction of genetic and lifestyle factors on the incidence of type 2 diabetes in the EPIC Study , 2011 .