Effects of cooking and extra virgin olive oil addition on bioaccessibility of carotenes in tomato sauce

Effects of cooking and extra virgin olive oil addition on bioaccessibility of carotenes in tomato sauce

In this study, the effects of cooking and the addition of extra virgin olive oil on the in vitro bioaccessibility of carotenoidsin tomato sauce were evaluated. The results indicated that total antioxidant activity, α-tocopherol, lycopene, β-carotene, lutein, andchlorophyll a contents were positively affected by the combination of cooking and addition of extra virgin olive oil. Moreover, after invitro digestion, for intestinal phase, lycopene and β-carotene were observed in all samples, whereas α-tocopherol and chlorophyll a werenot detected in any of the samples. Lycopene (≈8.5-fold) and β-carotene (≈5-fold) were significantly improved (P < 0.05) by the effect ofcooking and addition of extra virgin olive oil to the samples compared to control tomato sauce (without oil and cooking).

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  • Ahuja KD, Pittaway JK, Ball MJ (2006). Effects of olive oil and tomato lycopene combination on serum lycopene, lipid profile, and lipid oxidation. Nutrition 22: 259-265.
  • Arranz S, Martinez-Huelamo M, Vallverdu-Queralt A, ValderasMartinez P, Illan M et al. (2015). Influence of olive oil on carotenoid absorption from tomato juice and effects on postprandial lipemia. Food Chem 168: 203-210.
  • Barba FJ, Mariutti LR, Bragagnolo N, Mercadante AZ, BarbosaCánovas GV et al. (2017). Bioaccessibility of bioactive compounds from fruits and vegetables after thermal and nonthermal processing. Trends Food Sci Technol 67: 195-206.
  • Bengtsson A, Brackmann C, Enejder A, Alminger ML, Svanberg U (2010). Effects of thermal processing on the in vitro bioaccessibility and microstructure of β-carotene in orangefleshed sweet potato. J Agric Food Chem 58: 11090-11096.
  • Berendsen AA, Kang JH, Van de Rest O, Jankovic N, Kampman E et al. (2017). Association of adherence to a healthy diet with cognitive decline in European and American older adults: A meta-analysis within the CHANCES consortium. Dement Geriatr Cogn Disord 43: 215-227.
  • Capanoglu E, Beekwilder J, Boyacioglu D, Hall R, De Vos R (2008). Changes in antioxidant and metabolite profiles during production of tomato paste. J Agric Food Chem 56: 964-973.
  • Colle IJ, Lemmens L, Tolesa GN, Van Buggenhout S, De Vleeschouwer K, Van Loey AM, Hendrickx ME (2010). Lycopene degradation and isomerization kinetics during thermal processing of an olive oil/tomato emulsion. J Agric Food Chem 58: 12784- 12789.
  • Colle IJ, Van Buggenhout, S, Lemmens L, Van Loey AM, Hendrickx ME (2012). The type and quantity of lipids present during digestion influence the in vitro bioaccessibility of lycopene from raw tomato pulp. Food Res Int 45: 250-255.
  • Colle IJ, Lemmens L, Van Buggenhout S, Met K, Van Loey AM, Hendrickx ME (2013). Processing tomato pulp in the presence of lipids: The impact on lycopene bioaccessibility. Food Res Int 51: 32-38.
  • Desmarchelier C, Borel P (2017). Overview of carotenoid bioavailability determinants: From dietary factors to host genetic variations. Trends Food Sci Technol 69: 270-280.
  • Failla ML, Chitchumronchokchai C, Ferruzzi MG, Goltz SR, Campbell WW (2014). Unsaturated fatty acids promote bioaccessibility and basolateral secretion of carotenoids and alpha-tocopherol by Caco-2 cells. Food Funct 5: 1101-1112.
  • Fernández-García E, Mínguez-Mosquera MI, Pérez-Gálvez A (2007). Changes in composition of the lipid matrix produce a differential incorporation of carotenoids in micelles. Interaction effect of cholesterol and oil. Innov Food Sci Emerg Technol 8: 379-384.
  • Fielding JM, Rowley KG, Cooper P, O’Dea K (2005). Increases in plasma lycopene concentration after consumption of tomatoes cooked with olive oil. Asia Pac J Clin Nutr 14: 131-136.
  • Ghavipour M, Sotoudeh G, Ghorbani M (2015). Tomato juice consumption improves blood antioxidative biomarkers in overweight and obese females. Clin Nutr 34: 805-809. Hedren E, Diaz V, Svanberg U (2002). Estimation of carotenoid accessibility from carrots determined by an in vitro digestion method. Eur J Clin Nutr 56: 425-430.
  • Hornero-Méndez D, Mínguez-Mosquera MI (2007). Bioaccessibility of carotenes from carrots: Effect of cooking and addition of oil. Innov Food Sci Emerg Technol 8: 407-412.
  • Huo T, Ferruzzi MG, Schwartz SJ, Failla ML (2007). Impact of fatty acyl composition and quantity of triglycerides on bioaccessibility of dietary carotenoids. J Agric Food Chem 55: 8950-8957.
  • Kamiloglu S, Demirci M, Selen S, Toydemir G, Boyacioglu D, Capanoglu E (2014). Home processing of tomatoes (Solanum lycopersicum): effects on in vitro bioaccessibility of total lycopene, phenolics, flavonoids, and antioxidant capacity. J Sci Food Agric 94: 2225-2233.
  • Kostic D, White WS, Olson JA (1995). Intestinal absorption, serum clearance and interactions between lutein and beta-carotene when administered to human adults in separate or combined oral doses. Am J Clin Nutr 62: 604-610.
  • Kumaran A, Karunakaran RJ (2006). Antioxidant and free radical scavenging activity of an aqueous extract of Coleus aromaticus. Food Chem 97: 109-114.
  • Lemmens L, Colle I, Van Buggenhout S, Palmero P, Van Loey A et al. (2014). Carotenoid bioaccessibility in fruit and vegetablebased food products as affected by product (micro) structural characteristics and the presence of lipids: A review. Trends Food Sci Technol 38: 125-135.
  • Minekus M, Alminger M, Alvito P, Balance S, Bohn T et al. (2014). A standardised static in vitro digestion method suitable for food—an international consensus. Food Funct 5: 1113-1124.
  • Moelants KRN, Lemmens L, Vandebroeck M, Van Buggenhout S, Van Loey AM et al. (2012). Relation between particle size and carotenoid bioaccessibility in carrot- and tomato-derived suspensions. J Agric Food Chem 60: 11995-12003.
  • Mutsokoti L, Panozzo A, Pallares Pallares A, Jaiswal S, Van Loey A et al. (2017). Carotenoid bioaccessibility and the relation to lipid digestion: A kinetic study. Food Chem 232: 124-134.
  • Ortak M, Caltinoglu C, Sensoy I, Karakaya S, Mert B (2017). Changes in functional properties and in vitro bioaccessibilities of β-carotene and lutein after extrusion processing. J Food Sci Technol 54: 3543-3551.
  • Pannellini T, Iezzi M, Liberatore M, Sabatini F, Iacobelli S et al. (2010). A dietary tomato supplement prevents prostate cancer in TRAMP mice. Cancer Prev Res 3: 1284-1291.
  • Parada J, Aguilera JM (2007). Food microstructure affects the bioavailability of several nutrients. J Food Sci 72: 21-32.
  • Periago MJ, Bravo S, Garcia-Alonso FJ, Rincon F (2013). Detection of key factors affecting lycopene in vitro accessibility. J Agric Food Chem 61: 3859-3867.
  • Reboul E, Thap S, Tourniaire F, André M, Juhel C, Morange S et al. (2007). Differential effect of dietary antioxidant classes (carotenoids, polyphenols, vitamins C and E) on lutein absorption. Br J Nutr 97: 440-446.
  • Riccioni G, Mancini B, Di Ilio E, Bucciarelli T, D’Orazio N (2008). Protective effect of lycopene in cardiovascular disease. Eur Rev Med Pharmacol Sci 12: 183-190.
  • Turati F, Rossi M, Pelucchi C, Levi F, La Vecchia C (2015). Fruit and vegetables and cancer risk: a review of southern European studies. Br J Nutr 113: 102-110.
  • Vallverdú-Queralt A, Regueiro J, De Alvarenga JFR, Torrado X, Lamuela-Raventos RM (2015). Carotenoid profile of tomato sauces: effect of cooking time and content of extra virgin olive oil. Int J Mol Sci 16: 9588-9599.
  • Van het Hof KH, Brouwer IA, West CE, Haddeman E, SteegersTheunissen RP et al. (1999). Bioavailability of lutein from vegetables is 5 times higher than that of β-carotene. Am J Clin Nutr 70: 261-268.
  • Visioli F (2000). Antioxidants in Mediterranean diets. World Rev Nutr Diet 87: 43-55.
  • Yonekura L, Nagao A (2007). Intestinal absorption of dietary carotenoids. Mol Nutr Food Res 51: 107-115.