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Latest research:
Nutrition

References

Last updated:
12 Aug 2026
Part of
Nutrition
  1. ISIC, ‘Coffee as part of a healthy diet and lifestyle’. Available to download here.
  2. de Melo Pereira G.V. et al. (2020) Chemical composition and health properties of coffee and coffee by-products. Adv Food Nutr Res, 91:65-96.
  3. Kobylińska Z. et al. (2025) Coffee as a Source of Antioxidants and an Elixir of Youth. Antioxidants (Basel),27;14(3)
  4. Emadi R.C., Kamangar F. (2025) Coffee's Impact on Health and Well-Being. Nutrients, 17(15):2558.
  5. Ungvari Z., Kunutsor S.K. (2024) Coffee consumption and cardiometabolic health: a comprehensive review of the evidence. Geroscience, 46(6):6473-6510.
  6. Saud S., Salamatullah A.M. (2021) Relationship between the Chemical Composition and the Biological Functions of Coffee. Molecules, 26(24):7634.
  7. European Food Safety Authority (EFSA). (2015) Scientific Opinion on the Safety of Caffeine. EFSA Journal. 13(5):4102.
  8. European Food Safety Authority (EFSA). (2011) FSA Panel on Dietetic Products, Nutrition and Allergies (NDA): Scientific Opinion on the substantiation of health claims related to caffeine and increased fat oxidation leading to a reduction in body fat mass (ID 735, 1484), increased energy expenditure leading to a reduction in body weight (ID 1487), increased alertness (ID 736, 1101, 1187, 1485, 1491, 2063, 2103) and increased attention (ID 736, 1485, 1491, 2375) pursuant to Article 13(1) of Regulation (EC) No 1924/20061. EFSA Journal. 9(4):2054.
  9. Kløve K., Petersen A. (2025) A systematic review and meta-analysis of the acute effect of caffeine on attention. Psychopharmacology, 242(9):1909-1930.
  10. European Food Safety Authority (EFSA). (2011) Panel on Dietetic Products, Nutrition and Allergies (NDA): Scientific Opinion on the substantiation of health claims related to caffeine and increase in physical performance during short-term high-intensity exercise (ID 737, 1486, 1489), increase in endurance performance (ID 737, 1486), increase in endurance capacity (ID 1488) and reduction in the rated perceived exertion/effort during exercise (ID 1488, 1490) pursuant to Article 13(1) of Regulation (EC) No 1924/2006. EFSA Journal. 9(4):2053.
  11. Clark I., Landolt H.P. (2017) Coffee, caffeine, and sleep: A systematic review of epidemiological studies and randomized controlled trials. Sleep Med Rev., 31:70-78.
  12. Williamson G. (2017) The role of polyphenols in modern nutrition. Nutr Bull, 42(3):226-235.
  13. Nguyen V. et al. (2024) Chlorogenic Acid: A Systematic Review on the Biological Functions, Mechanistic Actions, and Therapeutic Potentials. Nutrients, 16(7):924.
  14. Buelna-Chontal M. (2024) Coffee Fuel for Your Day or Foe for Your Arteries. Antioxidants, 13(12):1455.
  15. Food Standard Agency, Public Health England (2014) McCance and Widdowson’s The Composition of Foods, 7th, Cambridge, Royal Society of Chemistry.
  16. Olechno E. et al.(2021) Are They a Source of Macroelements in Human Nutrition? Foods,10(6):1328.
  17. Killer S.C., Blannin A.K., Jeukendrup A.E. (2014) No evidence of dehydration with moderate daily coffee intake: A counterbalanced cross-over study in a free-living population. PLoS ONE, 9:e84154.
  18. Silva A.M. et al. (2013). Total body water and its compartments are not affected by ingesting a moderate dose of caffeine in healthy young adult males. Nutr. Metab, 38:6.
  19. Ben Miri Y. et al. (2024) Comprehensive Insights into Ochratoxin A: Occurrence, Analysis, and Control Strategies. Foods, 13(8):1184.
  20. Massahi T. et al. (2024) A worldwide systematic review of ochratoxin A in various coffee products - human exposure and health risk assessment. Food Addit Contam Part A. Chem Anal Control Expo Risk Assess, 41(12):1594-1610.
  21. European Commission (2023). Regulation setting maximum levels for certain contaminants in foodstuffs 2023/915. Available at: https://eur-lex.europa.eu/eli/reg/2023/915/oj/eng
  22. European Food Safety Authority (EFSA). (2020). Risk assessment of ochratoxin A in food. EFSA Journal. 18(5):6113.
  23. Fakhri Y. et al. (2022) Ochratoxin A in coffee and coffee-based products: a global systematic review, meta-analysis, and probabilistic risk assessment. Res Environ Health, 39(2):211-220
  24. European Food Safety Authority (EFSA). (2015). Scientific Opinion on Acrylamide in Food. EFSA Journal,13(6):4104.
  25. Lipworth L. et al. (2012): Review of epidemiologic studies of dietary acrylamide intake and risk of cancer. Eur J Cancer Prev. 21(4):375-86.
  26. Loomis D, et al. (2016). Carcinogenicity of drinking coffee, mate and very hot beverages. Lancet Oncol. 17(7):877-8. 
  27. Timmermann C.A.G. et al.(2021) A Review of Dietary Intake of Acrylamide in Humans. Toxics, 9(7):155.
  28. Strocchi G. et al. (2022) Acrylamide in coffee: What is known and what still needs to be explored. A review. Food Chem, 393:133406.
  29. Nehlig A., Cunha R.A. (2020) The Coffee-Acrylamide Apparent Paradox: An Example of Why the Health Impact of a Specific Compound in a Complex Mixture Should Not Be Evaluated in Isolation. Nutrients, 12(10):3141.
  30. Basaran B., Cuvalci B., Kaban G. (2023) Dietary Acrylamide Exposure and Cancer Risk: A Systematic Approach to Human Epidemiological Studies. Foods, 12(2):346.
  31. European Commission, ‘Establishing mitigation measures and benchmark levels for the reduction of the presence of acrylamide in food’. Available at: http://eur-lex.europa.eu/legal-content/EN/TXT/PDF/?uri=CELEX:32017R2158&from=EN
  32. Kettlitz B. et al. (2019) Furan and Methylfurans in Foods: An Update on Occurrence, Mitigation, and Risk Assessment. Compr Rev Food Sci Food Saf, 18(3):738-752.
  33. Park S.H., Jo A., Lee K.G. (2021) Effect of various roasting, extraction and drinking conditions on furan and 5-hydroxymethylfurfural levels in coffee. Food Chem, 1;358:129806.
  34. European Food Safety Authority (EFSA). (2011): Update on furan levels in food from monitoring years 2004-2010 and exposure assessment. EFSA Journal. 9(9):2347.
  35. European Food Safety Authority (EFSA). (2017). Scientific opinion on the risks for public health related to the presence of furan and methylfurans in food. EFSA Journal. 15(10):5005.