journal article Open Access Aug 15, 2017

The role of polyphenols in modern nutrition

Nutrition Bulletin Vol. 42 No. 3 pp. 226-235 · Wiley
View at Publisher Save 10.1111/nbu.12278
Abstract
AbstractPolyphenols are found in plant‐based foods and beverages, notably apples, berries, citrus fruit, plums, broccoli, cocoa, tea and coffee and many others. There is substantial epidemiological evidence that a diet high in polyphenol‐rich fruit, vegetables, cocoa and beverages protects against developing cardiovascular disease and type 2 diabetes. The absorption and metabolism of these compounds have been well described and, for many, the gut microbiota play a critical role in absorption; taking into consideration the parent compound and the metabolites from colon bacteria catabolism, more than 80% of a dose can be absorbed and ultimately excreted in the urine. Common polyphenols in the diet are flavanols (cocoa, tea, apples, broad beans), flavanones (hesperidin in citrus fruit), hydroxycinnamates (coffee, many fruits), flavonols (quercetin in onions, apples and tea) and anthocyanins (berries). Many intervention studies, mechanistic in vitro data and epidemiological studies support a role for polyphenols against the development of chronic diseases. For example, flavanols decrease endothelial dysfunction, lower blood pressure and cholesterol, and modulate energy metabolism. Coffee and tea both reduce the risk of developing type 2 diabetes, through action of their constituent polyphenols. Despite extensive research, the exact mechanisms of action of polyphenols in the human body have not been decisively proven, but there is strong evidence that some targets such as nitric oxide metabolism, carbohydrate digestion and oxidative enzymes are important for health benefits. Consumption of polyphenols as healthy dietary components is consistent with the advice to eat five or more portions of fruit and vegetables per day, but it is currently difficult to recommend what ‘doses’ of specific polyphenols should be consumed to derive maximum benefit.
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References
94
[14]
Conquer JA "Supplementation with quercetin markedly increases plasma quercetin concentration without effect on selected risk factors for heart disease in healthy subjects" American Society for Nutritional Sciences (1998)
[17]
Dietary (Poly)phenolics in Human Health: Structures, Bioavailability, and Evidence of Protective Effects Against Chronic Diseases

Daniele Del Rio, Ana Rodriguez-Mateos, Jeremy P.E. Spencer et al.

Antioxidants & Redox Signaling 10.1089/ars.2012.4581
[22]
Drezner HL "Capillary integrity; a review and interim report after five year study of use of hesperidin‐C" American Practitioner and Digest of Treatment (1955)
[23]
EFSA NDA Panel (European Food Safety Authority Panel on Dietetic Products, Nutrition and Allergies) "Scientific Opinion on the modification of the authorisation of a health claim related to cocoa flavanols and maintenance of normal endothelium‐dependent vasodilation pursuant to Article 13(5) of Regulation (EC) No 1924/20061 following a request in accordance with Article 19 of Regulation (EC) No 1924/2006" EFSA Journal (2014)
[24]
Serum Lipid and Blood Pressure Responses to Quercetin Vary in Overweight Patients by Apolipoprotein E Genotype

Sarah Egert, Christine Boesch-Saadatmandi, Siegfried Wolffram et al.

The Journal of Nutrition 10.3945/jn.109.117655

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Citations
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Details
Published
Aug 15, 2017
Vol/Issue
42(3)
Pages
226-235
License
View
Funding
Biotechnology and Biological Sciences Research Council Award: DRINC BB/M027406/1
European Research Council Award: POLYTRUE? 322467
Cite This Article
G. Williamson (2017). The role of polyphenols in modern nutrition. Nutrition Bulletin, 42(3), 226-235. https://doi.org/10.1111/nbu.12278