Skip to main content
Top
Published in: European Journal of Nutrition 4/2016

01-06-2016 | Original Contribution

Dietary polyphenol intake in Europe: the European Prospective Investigation into Cancer and Nutrition (EPIC) study

Authors: Raul Zamora-Ros, Viktoria Knaze, Joseph A. Rothwell, Bertrand Hémon, Aurelie Moskal, Kim Overvad, Anne Tjønneland, Cecilie Kyrø, Guy Fagherazzi, Marie-Christine Boutron-Ruault, Marina Touillaud, Verena Katzke, Tilman Kühn, Heiner Boeing, Jana Förster, Antonia Trichopoulou, Elissavet Valanou, Eleni Peppa, Domenico Palli, Claudia Agnoli, Fulvio Ricceri, Rosario Tumino, Maria Santucci de Magistris, Petra H. M. Peeters, H. Bas Bueno-de-Mesquita, Dagrun Engeset, Guri Skeie, Anette Hjartåker, Virginia Menéndez, Antonio Agudo, Esther Molina-Montes, José María Huerta, Aurelio Barricarte, Pilar Amiano, Emily Sonestedt, Lena Maria Nilsson, Rikard Landberg, Timothy J. Key, Kay-Thee Khaw, Nicholas J. Wareham, Yunxia Lu, Nadia Slimani, Isabelle Romieu, Elio Riboli, Augustin Scalbert

Published in: European Journal of Nutrition | Issue 4/2016

Login to get access

Abstract

Background/Objectives

Polyphenols are plant secondary metabolites with a large variability in their chemical structure and dietary occurrence that have been associated with some protective effects against several chronic diseases. To date, limited data exist on intake of polyphenols in populations. The current cross-sectional analysis aimed at estimating dietary intakes of all currently known individual polyphenols and total intake per class and subclass, and to identify their main food sources in the European Prospective Investigation into Cancer and Nutrition cohort.

Methods

Dietary data at baseline were collected using a standardized 24-h dietary recall software administered to 36,037 adult subjects. Dietary data were linked with Phenol-Explorer, a database with data on 502 individual polyphenols in 452 foods and data on polyphenol losses due to cooking and food processing.

Results

Mean total polyphenol intake was the highest in Aarhus—Denmark (1786 mg/day in men and 1626 mg/day in women) and the lowest in Greece (744 mg/day in men and 584 mg/day in women). When dividing the subjects into three regions, the highest intake of total polyphenols was observed in the UK health-conscious group, followed by non-Mediterranean (non-MED) and MED countries. The main polyphenol contributors were phenolic acids (52.5–56.9 %), except in men from MED countries and in the UK health-conscious group where they were flavonoids (49.1–61.7 %). Coffee, tea, and fruits were the most important food sources of total polyphenols. A total of 437 different individual polyphenols were consumed, including 94 consumed at a level >1 mg/day. The most abundant ones were the caffeoylquinic acids and the proanthocyanidin oligomers and polymers.

Conclusion

This study describes the large number of dietary individual polyphenols consumed and the high variability of their intakes between European populations, particularly between MED and non-MED countries.
Appendix
Available only for authorised users
Literature
1.
go back to reference Perez-Jimenez J, Neveu V, Vos F, Scalbert A (2010) Systematic analysis of the content of 502 polyphenols in 452 foods and beverages: an application of the phenol-explorer database. J Agric Food Chem 58:4959–4969CrossRef Perez-Jimenez J, Neveu V, Vos F, Scalbert A (2010) Systematic analysis of the content of 502 polyphenols in 452 foods and beverages: an application of the phenol-explorer database. J Agric Food Chem 58:4959–4969CrossRef
2.
go back to reference Zamora-Ros R, Touillaud M, Rothwell JA, Romieu I, Scalbert A (2014) Measuring exposure to the polyphenol metabolome in observational epidemiologic studies: current tools and applications and their limits. Am J Clin Nutr 100:11–26CrossRef Zamora-Ros R, Touillaud M, Rothwell JA, Romieu I, Scalbert A (2014) Measuring exposure to the polyphenol metabolome in observational epidemiologic studies: current tools and applications and their limits. Am J Clin Nutr 100:11–26CrossRef
3.
go back to reference Manach C, Williamson G, Morand C, Scalbert A, Remesy C (2005) Bioavailability and bioefficacy of polyphenols in humans. I. Review of 97 bioavailability studies. Am J Clin Nutr 81:230S–242S Manach C, Williamson G, Morand C, Scalbert A, Remesy C (2005) Bioavailability and bioefficacy of polyphenols in humans. I. Review of 97 bioavailability studies. Am J Clin Nutr 81:230S–242S
4.
go back to reference Vauzour D, Rodriguez-Mateos A, Corona G, Oruna-Concha MJ, Spencer JP (2010) Polyphenols and human health: prevention of disease and mechanisms of action. Nutrients 2:1106–1131CrossRef Vauzour D, Rodriguez-Mateos A, Corona G, Oruna-Concha MJ, Spencer JP (2010) Polyphenols and human health: prevention of disease and mechanisms of action. Nutrients 2:1106–1131CrossRef
5.
go back to reference Wang X, Ouyang YY, Liu J, Zhao G (2014) Flavonoid intake and risk of CVD: a systematic review and meta-analysis of prospective cohort studies. Br J Nutr 111:1–11CrossRef Wang X, Ouyang YY, Liu J, Zhao G (2014) Flavonoid intake and risk of CVD: a systematic review and meta-analysis of prospective cohort studies. Br J Nutr 111:1–11CrossRef
6.
go back to reference Zamora-Ros R, Jimenez C, Cleries R, Agudo A, Sánchez MJ, Sánchez-Cantalejo E, Molina-Montes E, Navarro C, Chirlaque MD, Huerta JM et al (2013) Dietary flavonoid and lignan intake and mortality in a Spanish cohort. Epidemiology 24:726–733CrossRef Zamora-Ros R, Jimenez C, Cleries R, Agudo A, Sánchez MJ, Sánchez-Cantalejo E, Molina-Montes E, Navarro C, Chirlaque MD, Huerta JM et al (2013) Dietary flavonoid and lignan intake and mortality in a Spanish cohort. Epidemiology 24:726–733CrossRef
7.
go back to reference Zamora-Ros R, Forouhi NG, Sharp SJ, González CA, Buijsses B, Guevara M, van der Schouw YT, Amiano P, Boeing H, Bredsdorff L et al (2013) The association between dietary flavonoid and lignan intakes and incident type 2 diabetes in European population: the EPIC-InterAct study. Diabetes Care 36:3961–3970CrossRef Zamora-Ros R, Forouhi NG, Sharp SJ, González CA, Buijsses B, Guevara M, van der Schouw YT, Amiano P, Boeing H, Bredsdorff L et al (2013) The association between dietary flavonoid and lignan intakes and incident type 2 diabetes in European population: the EPIC-InterAct study. Diabetes Care 36:3961–3970CrossRef
8.
go back to reference U.S. Department of Agriculture (2004) USDA database for the proanthocyanidin content of selected foods. USDA, Beltsville U.S. Department of Agriculture (2004) USDA database for the proanthocyanidin content of selected foods. USDA, Beltsville
9.
go back to reference U.S. Department of Agriculture (2007) USDA database for the flavonoid content of selected foods. USDA, Beltsville U.S. Department of Agriculture (2007) USDA database for the flavonoid content of selected foods. USDA, Beltsville
10.
go back to reference U.S. Department of Agriculture (2008) USDA database for the isoflavone content of selected foods. USDA, Beltsville U.S. Department of Agriculture (2008) USDA database for the isoflavone content of selected foods. USDA, Beltsville
11.
go back to reference Neveu V, Perez-Jimenez J, Vos F, Crespy F, du Chaffaut L, Mennen L, Knox C, Eisner R, Cruz J, Wishart D et al (2010) Phenol-Explorer: an online comprehensive database on polyphenol contents in foods. Database (Oxford) 2010:bap024 Neveu V, Perez-Jimenez J, Vos F, Crespy F, du Chaffaut L, Mennen L, Knox C, Eisner R, Cruz J, Wishart D et al (2010) Phenol-Explorer: an online comprehensive database on polyphenol contents in foods. Database (Oxford) 2010:bap024
12.
go back to reference Rothwell JA, Perez-Jimenez J, Neveu V, Medina-Remón A, M’hiri N, García-Lobato P Manach C, Knox C, Eisner R, Wishart DS et al (2013) Phenol-Explorer 3.0: a major update of the Phenol-Explorer database to incorporate data on the effects of food processing on polyphenol content. Database (Oxford) 2013:bat070 Rothwell JA, Perez-Jimenez J, Neveu V, Medina-Remón A, M’hiri N, García-Lobato P Manach C, Knox C, Eisner R, Wishart DS et al (2013) Phenol-Explorer 3.0: a major update of the Phenol-Explorer database to incorporate data on the effects of food processing on polyphenol content. Database (Oxford) 2013:bat070
13.
go back to reference Rothwell JA, Medina-Remon A, Perez-Jimenez J, Neveu V, Knaze V, Slimani N, Scalbert A (2015) Effects of food processing on polyphenol contents: a systematic analysis using phenol-explorer data. Mol Nutr Food Res 59:160–170CrossRef Rothwell JA, Medina-Remon A, Perez-Jimenez J, Neveu V, Knaze V, Slimani N, Scalbert A (2015) Effects of food processing on polyphenol contents: a systematic analysis using phenol-explorer data. Mol Nutr Food Res 59:160–170CrossRef
14.
go back to reference Chun OK, Chung SJ, Song WO (2007) Estimated dietary flavonoid intake and major food sources of US adults. J Nutr 137:1244–1252 Chun OK, Chung SJ, Song WO (2007) Estimated dietary flavonoid intake and major food sources of US adults. J Nutr 137:1244–1252
15.
go back to reference Zamora-Ros R, Knaze V, Lujan-Barroso L, Romieu I, Scalbert A, Slimani N, Hjartaker A, Engeset D, Skeie G, Overvad K et al (2013) Differences in dietary intakes, food sources, and determinants of total flavonoids between Mediterranean and non-Mediterranean countries participating in the European Prospective Investigation into Cancer and Nutrition (EPIC) study. Br J Nutr 109:1498–1507CrossRef Zamora-Ros R, Knaze V, Lujan-Barroso L, Romieu I, Scalbert A, Slimani N, Hjartaker A, Engeset D, Skeie G, Overvad K et al (2013) Differences in dietary intakes, food sources, and determinants of total flavonoids between Mediterranean and non-Mediterranean countries participating in the European Prospective Investigation into Cancer and Nutrition (EPIC) study. Br J Nutr 109:1498–1507CrossRef
16.
go back to reference Johannot L, Somerset SM (2006) Age-related variations in flavonoid intake and sources in the Australian population. Public Health Nutr 9:1045–1054CrossRef Johannot L, Somerset SM (2006) Age-related variations in flavonoid intake and sources in the Australian population. Public Health Nutr 9:1045–1054CrossRef
17.
go back to reference Perez-Jimenez J, Fezeu L, Touvier M, Arnault N, Manach C, Hercberg S, Galan P, Scalbert A (2011) Dietary intake of 337 polyphenols in French adults. Am J Clin Nutr 93:1220–1228CrossRef Perez-Jimenez J, Fezeu L, Touvier M, Arnault N, Manach C, Hercberg S, Galan P, Scalbert A (2011) Dietary intake of 337 polyphenols in French adults. Am J Clin Nutr 93:1220–1228CrossRef
18.
go back to reference Tresserra-Rimbau A, Medina-Remon A, Perez-Jimenez J, Martínez-González MA, Covas MI, Corella D, Salas-Salvadó J, Gómez-Gracia E, Lapetra J, Arós F et al (2013) Dietary intake and major food sources of polyphenols in a Spanish population at high cardiovascular risk: the PREDIMED study. Nutr Metab Cardiovasc Dis 23:953–959CrossRef Tresserra-Rimbau A, Medina-Remon A, Perez-Jimenez J, Martínez-González MA, Covas MI, Corella D, Salas-Salvadó J, Gómez-Gracia E, Lapetra J, Arós F et al (2013) Dietary intake and major food sources of polyphenols in a Spanish population at high cardiovascular risk: the PREDIMED study. Nutr Metab Cardiovasc Dis 23:953–959CrossRef
19.
go back to reference Grosso G, Stepaniak U, Topor-Madry R, Szafraniec K, Pajak A (2014) Estimated dietary intake and major food sources of polyphenols in the Polish arm of the HAPIEE study. Nutrition 30:1398–1403CrossRef Grosso G, Stepaniak U, Topor-Madry R, Szafraniec K, Pajak A (2014) Estimated dietary intake and major food sources of polyphenols in the Polish arm of the HAPIEE study. Nutrition 30:1398–1403CrossRef
20.
go back to reference Ovaskainen ML, Torronen R, Koponen JM, Sinkko H, Hellström J, Reinivuo H, Mattila P (2008) Dietary intake and major food sources of polyphenols in Finnish adults. J Nutr 138:562–566 Ovaskainen ML, Torronen R, Koponen JM, Sinkko H, Hellström J, Reinivuo H, Mattila P (2008) Dietary intake and major food sources of polyphenols in Finnish adults. J Nutr 138:562–566
21.
go back to reference Riboli E, Kaaks R (1997) The EPIC Project: rationale and study design. European Prospective Investigation into Cancer and Nutrition. Int J Epidemiol 26(Suppl 1):S6–S14CrossRef Riboli E, Kaaks R (1997) The EPIC Project: rationale and study design. European Prospective Investigation into Cancer and Nutrition. Int J Epidemiol 26(Suppl 1):S6–S14CrossRef
22.
go back to reference Riboli E, Hunt KJ, Slimani N, Ferrari P, Norat T, Fahey M, Charrondière UR, Hémon B, Casagrande C, Vignat J et al (2002) European Prospective Investigation into Cancer and Nutrition (EPIC): study populations and data collection. Public Health Nutr 5:1113–1124CrossRef Riboli E, Hunt KJ, Slimani N, Ferrari P, Norat T, Fahey M, Charrondière UR, Hémon B, Casagrande C, Vignat J et al (2002) European Prospective Investigation into Cancer and Nutrition (EPIC): study populations and data collection. Public Health Nutr 5:1113–1124CrossRef
23.
go back to reference Slimani N, Kaaks R, Ferrari P, Casagrande C, Clavel-Chapelon F, Lotze G, Kroke A, Trichopoulos D, Trichopoulou A, Lauria C et al (2002) European Prospective Investigation into Cancer and Nutrition (EPIC) calibration study: rationale, design and population characteristics. Public Health Nutr 5:1125–1145CrossRef Slimani N, Kaaks R, Ferrari P, Casagrande C, Clavel-Chapelon F, Lotze G, Kroke A, Trichopoulos D, Trichopoulou A, Lauria C et al (2002) European Prospective Investigation into Cancer and Nutrition (EPIC) calibration study: rationale, design and population characteristics. Public Health Nutr 5:1125–1145CrossRef
24.
go back to reference Slimani N, Ferrari P, Ocké M, Welch A, Boeing H, Liere M, Pala V, Amiano P, Lagiou A, Mattisson I et al (2000) Standardization of the 24-hour diet recall calibration method used in the European prospective investigation into cancer and nutrition (EPIC): general concepts and preliminary results. Eur J Clin Nutr 54:900–917CrossRef Slimani N, Ferrari P, Ocké M, Welch A, Boeing H, Liere M, Pala V, Amiano P, Lagiou A, Mattisson I et al (2000) Standardization of the 24-hour diet recall calibration method used in the European prospective investigation into cancer and nutrition (EPIC): general concepts and preliminary results. Eur J Clin Nutr 54:900–917CrossRef
25.
go back to reference Brustad M, Skeie G, Braaten T, Slimani N, Lund E (2003) Comparison of telephone vs face-to-face interviews in the assessment of dietary intake by the 24 h recall EPIC SOFT program—the Norwegian Calibration Study. Eur J Clin Nutr 57:107–113CrossRef Brustad M, Skeie G, Braaten T, Slimani N, Lund E (2003) Comparison of telephone vs face-to-face interviews in the assessment of dietary intake by the 24 h recall EPIC SOFT program—the Norwegian Calibration Study. Eur J Clin Nutr 57:107–113CrossRef
26.
go back to reference Wareham NJ, Jakes RW, Rennie KL, Schuit J, Mitchell J, Hennings S, Day NE (2003) 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. Public Health Nutr 6:407–413CrossRef Wareham NJ, Jakes RW, Rennie KL, Schuit J, Mitchell J, Hennings S, Day NE (2003) 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. Public Health Nutr 6:407–413CrossRef
27.
go back to reference Parras P, Martínez-Tome M, Jiménez AM, Murcia MA (2007) Antioxidant capacity of coffees of several origins brewed following three different procedures. Food Chem 102:582–592CrossRef Parras P, Martínez-Tome M, Jiménez AM, Murcia MA (2007) Antioxidant capacity of coffees of several origins brewed following three different procedures. Food Chem 102:582–592CrossRef
28.
go back to reference U.S. Department of Agriculture (2012) USDA National Nutrient Database for Standard Reference, Release 25. US Department of Agriculture, Agricultural Research Service, Washington, DC U.S. Department of Agriculture (2012) USDA National Nutrient Database for Standard Reference, Release 25. US Department of Agriculture, Agricultural Research Service, Washington, DC
29.
go back to reference Dilis V, Trichopoulou A (2010) Antioxidant intakes and food sources in Greek adults. J Nutr 140:1274–1279CrossRef Dilis V, Trichopoulou A (2010) Antioxidant intakes and food sources in Greek adults. J Nutr 140:1274–1279CrossRef
30.
go back to reference Zamora-Ros R, Rothwell JA, Scalbert A, Knaze V, Romieu I, Slimani N, Fagherazzi G, Perquier F, Touillaud M, Molina-Montes E et al (2013) Dietary intakes and food sources of phenolic acids in the European Prospective Investigation into Cancer and Nutrition (EPIC) study. Br J Nutr 110:1500–1511 CrossRef Zamora-Ros R, Rothwell JA, Scalbert A, Knaze V, Romieu I, Slimani N, Fagherazzi G, Perquier F, Touillaud M, Molina-Montes E et al (2013) Dietary intakes and food sources of phenolic acids in the European Prospective Investigation into Cancer and Nutrition (EPIC) study. Br J Nutr 110:1500–1511 CrossRef
31.
go back to reference Zamora-Ros R, Andres-Lacueva C, Lamuela-Raventos RM, Berenguer T, Jakszyn P, Barricarte A, Ardanaz E, Amiano P, Dorronsoro M, Larrañaga N et al (2010) Estimation of dietary sources and flavonoid intake in a Spanish adult population (EPIC-Spain). J Am Diet Assoc 110:390–398CrossRef Zamora-Ros R, Andres-Lacueva C, Lamuela-Raventos RM, Berenguer T, Jakszyn P, Barricarte A, Ardanaz E, Amiano P, Dorronsoro M, Larrañaga N et al (2010) Estimation of dietary sources and flavonoid intake in a Spanish adult population (EPIC-Spain). J Am Diet Assoc 110:390–398CrossRef
32.
go back to reference Knaze V, Zamora-Ros R, Lujan-Barroso L, Romieu I, Scalbert A, Slimani N, Riboli E, van Rossum CT, Bueno-de-Mesquita HB, Trichopoulou A et al (2012) Intake estimation of total and individual flavan-3-ols, proanthocyanidins and the aflavins, their food sources and determinants in the European Prospective Investigation into Cancer and Nutrition (EPIC) study. Br J Nutr 108:1095–1108CrossRef Knaze V, Zamora-Ros R, Lujan-Barroso L, Romieu I, Scalbert A, Slimani N, Riboli E, van Rossum CT, Bueno-de-Mesquita HB, Trichopoulou A et al (2012) Intake estimation of total and individual flavan-3-ols, proanthocyanidins and the aflavins, their food sources and determinants in the European Prospective Investigation into Cancer and Nutrition (EPIC) study. Br J Nutr 108:1095–1108CrossRef
33.
go back to reference Zamora-Ros R, Knaze V, Romieu I, Scalbert A, Slimani N, Clavel-Chapelon F, Touilaud M, Perquier F, Skeie G, Engeset D et al (2013) Impact of thearubigins on the estimation of total dietary flavonoids in the European Prospective Investigation into Cancer and Nutrition (EPIC) study. Eur J Clin Nutr 67:779–782CrossRef Zamora-Ros R, Knaze V, Romieu I, Scalbert A, Slimani N, Clavel-Chapelon F, Touilaud M, Perquier F, Skeie G, Engeset D et al (2013) Impact of thearubigins on the estimation of total dietary flavonoids in the European Prospective Investigation into Cancer and Nutrition (EPIC) study. Eur J Clin Nutr 67:779–782CrossRef
34.
go back to reference Zamora-Ros R, Knaze V, Lujan-Barroso L, Slimani N, Romieu I, Touillaud M, Kaaks R, Teucher B, Mattiello A, Grioni S et al (2011) Estimation of the intake of anthocyanidins and their food sources in the European Prospective Investigation into Cancer and Nutrition (EPIC) study. Br J Nutr 106:1090–1099CrossRef Zamora-Ros R, Knaze V, Lujan-Barroso L, Slimani N, Romieu I, Touillaud M, Kaaks R, Teucher B, Mattiello A, Grioni S et al (2011) Estimation of the intake of anthocyanidins and their food sources in the European Prospective Investigation into Cancer and Nutrition (EPIC) study. Br J Nutr 106:1090–1099CrossRef
35.
go back to reference Zamora-Ros R, Knaze V, Lujan-Barroso L, Slimani N, Romieu I, Fedirko V, de Magistris MS, Ericson U, Amiano P, Trichopoulou A et al (2011) Estimated dietary intakes of flavonols, flavanones and flavones in the European Prospective Investigation into Cancer and Nutrition (EPIC) 24-h dietary recall cohort. Br J Nutr 106:1915–1925CrossRef Zamora-Ros R, Knaze V, Lujan-Barroso L, Slimani N, Romieu I, Fedirko V, de Magistris MS, Ericson U, Amiano P, Trichopoulou A et al (2011) Estimated dietary intakes of flavonols, flavanones and flavones in the European Prospective Investigation into Cancer and Nutrition (EPIC) 24-h dietary recall cohort. Br J Nutr 106:1915–1925CrossRef
36.
go back to reference Zamora-Ros R, Knaze V, Lujan-Barroso L, Kuhnle GG, Mulligan AA, Touillaud M, Slimani N, Romieu I, Powell N, Tumino R et al (2012) Dietary intakes and food sources of phytoestrogens in the European Prospective Investigation into Cancer and Nutrition (EPIC) 24-hour dietary recall cohort. Eur J Clin Nutr 66:932–941CrossRef Zamora-Ros R, Knaze V, Lujan-Barroso L, Kuhnle GG, Mulligan AA, Touillaud M, Slimani N, Romieu I, Powell N, Tumino R et al (2012) Dietary intakes and food sources of phytoestrogens in the European Prospective Investigation into Cancer and Nutrition (EPIC) 24-hour dietary recall cohort. Eur J Clin Nutr 66:932–941CrossRef
37.
go back to reference Chan SG, Ho SC, Kreiger N, Darlington G, So KF, Chong PY (2007) Dietary sources and determinants of soy isoflavone intake among midlife Chinese Women in Hong Kong. J Nutr 137:2451–2455 Chan SG, Ho SC, Kreiger N, Darlington G, So KF, Chong PY (2007) Dietary sources and determinants of soy isoflavone intake among midlife Chinese Women in Hong Kong. J Nutr 137:2451–2455
38.
go back to reference Mulligan AA, Welch AA, McTaggart AA, Bhaniani A, Bingham SA (2007) Intakes and sources of soya foods and isoflavones in a UK population cohort study (EPIC-Norfolk). Eur J Clin Nutr 61:248–254CrossRef Mulligan AA, Welch AA, McTaggart AA, Bhaniani A, Bingham SA (2007) Intakes and sources of soya foods and isoflavones in a UK population cohort study (EPIC-Norfolk). Eur J Clin Nutr 61:248–254CrossRef
39.
go back to reference Peterson J, Dwyer J, Adlercreutz H, Scalbert A, Jacques P, McCullough ML (2010) Dietary lignans: physiology and potential for cardiovascular disease risk reduction. Nutr Rev 68:571–603CrossRef Peterson J, Dwyer J, Adlercreutz H, Scalbert A, Jacques P, McCullough ML (2010) Dietary lignans: physiology and potential for cardiovascular disease risk reduction. Nutr Rev 68:571–603CrossRef
40.
go back to reference Baur JA, Sinclair DA (2006) Therapeutic potential of resveratrol: the in vivo evidence. Nat Rev Drug Discov 5:493–506CrossRef Baur JA, Sinclair DA (2006) Therapeutic potential of resveratrol: the in vivo evidence. Nat Rev Drug Discov 5:493–506CrossRef
41.
go back to reference Zamora-Ros R, Andres-Lacueva C, Lamuela-Raventos RM, Berenguer T, Jakszyn P, Martínez C, Sánchez MJ, Navarro C, Chirlaque MD, Tormo MJ et al (2008) Concentrations of resveratrol and derivatives in foods and estimation of dietary intake in a Spanish population: European Prospective Investigation into Cancer and Nutrition (EPIC)-Spain cohort. Br J Nutr 100:188–196CrossRef Zamora-Ros R, Andres-Lacueva C, Lamuela-Raventos RM, Berenguer T, Jakszyn P, Martínez C, Sánchez MJ, Navarro C, Chirlaque MD, Tormo MJ et al (2008) Concentrations of resveratrol and derivatives in foods and estimation of dietary intake in a Spanish population: European Prospective Investigation into Cancer and Nutrition (EPIC)-Spain cohort. Br J Nutr 100:188–196CrossRef
42.
go back to reference Willet W (1998) Nutritional epidemiology, 2nd edn. Oxford University Press, New YorkCrossRef Willet W (1998) Nutritional epidemiology, 2nd edn. Oxford University Press, New YorkCrossRef
43.
go back to reference Skeie G, Braaten T, Hjartaker A, Lentjes M, Amiano P, Jakszyn P, Pala V, Palanca A, Niekerk EM, Verhagen H et al (2009) Use of dietary supplements in the European Prospective Investigation into Cancer and Nutrition calibration study. Eur J Clin Nutr 63(Suppl 4):S226–S238CrossRef Skeie G, Braaten T, Hjartaker A, Lentjes M, Amiano P, Jakszyn P, Pala V, Palanca A, Niekerk EM, Verhagen H et al (2009) Use of dietary supplements in the European Prospective Investigation into Cancer and Nutrition calibration study. Eur J Clin Nutr 63(Suppl 4):S226–S238CrossRef
44.
go back to reference Ludwig IA, Mena P, Calani L, Cid C, Del Rio D, Lean ME, Crozier A (2014) Variations in caffeine and chlorogenic acid contents of coffees: What are we drinking? Food Funct 5:1718–1726CrossRef Ludwig IA, Mena P, Calani L, Cid C, Del Rio D, Lean ME, Crozier A (2014) Variations in caffeine and chlorogenic acid contents of coffees: What are we drinking? Food Funct 5:1718–1726CrossRef
Metadata
Title
Dietary polyphenol intake in Europe: the European Prospective Investigation into Cancer and Nutrition (EPIC) study
Authors
Raul Zamora-Ros
Viktoria Knaze
Joseph A. Rothwell
Bertrand Hémon
Aurelie Moskal
Kim Overvad
Anne Tjønneland
Cecilie Kyrø
Guy Fagherazzi
Marie-Christine Boutron-Ruault
Marina Touillaud
Verena Katzke
Tilman Kühn
Heiner Boeing
Jana Förster
Antonia Trichopoulou
Elissavet Valanou
Eleni Peppa
Domenico Palli
Claudia Agnoli
Fulvio Ricceri
Rosario Tumino
Maria Santucci de Magistris
Petra H. M. Peeters
H. Bas Bueno-de-Mesquita
Dagrun Engeset
Guri Skeie
Anette Hjartåker
Virginia Menéndez
Antonio Agudo
Esther Molina-Montes
José María Huerta
Aurelio Barricarte
Pilar Amiano
Emily Sonestedt
Lena Maria Nilsson
Rikard Landberg
Timothy J. Key
Kay-Thee Khaw
Nicholas J. Wareham
Yunxia Lu
Nadia Slimani
Isabelle Romieu
Elio Riboli
Augustin Scalbert
Publication date
01-06-2016
Publisher
Springer Berlin Heidelberg
Published in
European Journal of Nutrition / Issue 4/2016
Print ISSN: 1436-6207
Electronic ISSN: 1436-6215
DOI
https://doi.org/10.1007/s00394-015-0950-x

Other articles of this Issue 4/2016

European Journal of Nutrition 4/2016 Go to the issue