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The influence of interactions among phenolic compounds on the antiradical activity of chokeberries (Aronia melanocarpa)

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Pages 345-352 | Published online: 10 Jan 2011

References

  • Altunkaya A, Becker EM, Gökmen V, Skibsted LH. 2009. Antioxidant activity of lettuce extract (Latuca sativa) and synergism with added phenolic antioxidants. Food Chem. 115:163–168.
  • Benvenuti S, Pellati F, Melegari M, Bertelli D. 2004. Polyphenols, anthocyanins, ascorbic acid, and radical scavenging activity of Rubus, Ribes, and Aronia. J Food Sci. 69:164–169.
  • Bermúdez-Soto MJ, Tomás-Barberán FA. 2004. Evaluation of commercial red fruit juice concentrates as ingredients for antioxidant functional juices. Eur Food Res Technol. 219:133–141.
  • Bermúdez-Soto MJ, Larrosa M, García-Cantalejo J, Espín JC, Tomás-Barberan FA, García-Conesa MT. Transcriptional changes in human caco-2 colon cancer cells following exposure to a recurrent non-toxic dose of polyphenol-rich chokeberry juice. Genes Nutr. 2007a; 2:111–113.
  • Bermúdez-Soto MJ, Larrosa M, Garcia-Cantalejo JM, Espin JC, Tomás-Barberan FA, Garcia-Conesa MT. Up-regulation of tumor suppressors carcinoembryonic antigen-related cell adhesion molecule 1 in human colon cancer Caco-2 cells following repetitive exposure to dietary levels of a polyphenol-rich chokeberry juice. J Nutr Biochem. 2007b; 18:259–271.
  • Brand Williams W, Cuvelier ME, Berset C. 1995. Use of a free radical method to evaluate antioxidant activity. Lebensm Wiss Technol. 28:25–30.
  • Castañeda-Ovando A, Pacheco-Hernández ML, Páez-Hernández ME, Rodríguez JA, Galán-Vidal CA. 2009. Chemical studies of anthocyanins: A review. Food Chem. 113:859–871.
  • Gąsiorowski K, Szyba K, Brokos B, Kolaczyńska B, Jankowiak-Wlodarczyk M, Oszmiański J. 1997. Antimutagenic activity of anthocyanins isolated from Aronia melanocarpa fruits. Cancer Lett. 119:37–46.
  • Goupy P, Dufour C, Loonis M, Dangles O. 2003. Quantitative kinetic analysis of hydrogen transfer reactions from dietary polyphenols to the DPPH radical. J Agric Food Chem. 51:615–622.
  • Graversen HB, Becker EM, Skibsted LH, Andersen ML. 2008. Antioxidant synergism between fruit juice and α-tocopherol. A comparison between high phenolic chokeberry (Aronia melanocarpa) and high ascorbic blackcurrant (Ribes nigrum). Eur Food Res Technol. 226:737–743.
  • Hellström JK, Shikov AN, Makarova MN, Pihlanto AM, Pozharitskaya ON, Ryhänen EL, Kivijärvi P, Makarov VG, Mattila PH. 2010. Blood pressure-lowering properties of chokeberry (Aronia mitchurinii, var. Viking). J Func Foods. 2:163–169.
  • Heo HJ, Kim YJ, Chung D, Kim DO. 2007. Antioxidant capacities of individual and combined phenolics in a model system. Food Chem. 104:87–92.
  • Hidalgo M, Sánchez-Moreno C, de Pascual-Teresa S. 2010. Flavonoid-flavonoid interaction and its effect on their antioxidant activity. Food Chem. 121:691–696.
  • Jakobek L, Šeruga M, Medvidović-Kosanović M, Novak I. Anthocyanin content and antioxidant activity of various red fruit juices. Dtsch Lebensm Rundsch. 2007a; 103:58–64.
  • Jakobek L, Šeruga M, Novak I, Medvidović-Kosanović M. Flavonols, phenolic acids and antioxidant activity of some red fruits. Dtsch Lebensm Rundsch. 2007b; 103:369–378.
  • Jurgoński A, Juśkiewicz J, Zduńczyk Z. 2008. Ingestion of black chokeberry fruit extract leads to intestinal and systemic changes in a rat model of prediabetes and hyperlipidemia. Plant Foods Hum Nutr. 63:176–182.
  • Kulling SE, Rawel HM. 2008. Chokeberry (Aronia melanocarpa)—A review on the characteristic components and potential health effects. Planta Med. 74:1625–1634.
  • Lattanzio V, Kroon PA, Quideau S, Treutter D. 2008. Plant phenolics—Secondary metabolites with diverse functions. In: Daayf F, Lattanzio V. editors. Recent Advantages in Polyphenol Research. Vol. 1. p Chichester: Wiley-Blackwell1–24.
  • Määttä-Riihinen KR, Kamal-Eldin A, Mattila PH, González-Paramás AM, Törrönen AR. Distribution and content of phenolic compounds in eighteen scandinavian berry species. J Agric Food Chem. 2004a; 52:4477–4486.
  • Määttä-Riihinen KR, Kamal-Eldin A, Törrönen AR. Identification and quantification of phenolic compounds in berries of Fragaria and Rubus species (Family Rosaceae). J Agric Food Chem. 2004b; 52:6178–6187.
  • Määttä-Riihinen KR, Kähkönen MP, Törrönen AR, Heinonen MI. 2005. Catechins and proanthocyanidins in berries of Vaccinium species and their antioxidant activity. J Agric Food Chem. 53:8485–8491.
  • Meyer AS, Heinonen M, Frankel EN. 1998. Antioxidant interactions of catechin, cyanidin, caffeic acid, quercetin, and ellagic acid on human LDL oxidation. Food Chem. 61:71–75.
  • Naruszewicz M, Laniewska I, Millo B, Dluzniewski M. 2007. Combination therapy of statin with flavonoids rich extract from chokeberry fruits enhanced reduction in cardiovascular risk markers in patients after myocardial infraction (MI). Atherosclerosis. 194:e179–e184.
  • Philpott M, Gould KS, Lim C, Ferguson LR. 2004. In Situ and in vitro antioxidant activity of sweetpotato anthocyanins. J Agric Food Chem. 52:1511–1513.
  • Pignatelli P, Ghiselli A, Buchetti B, Carnevale R, Natella F, Germanó G, Fimognari F, Di Santo S, Lenti L, Violi F. 2006. Polyphenols synergistically inhibit oxidative stress in subjects goven red and white wine. Atherosclerosis. 188:77–83.
  • Pinelo M, Manzocco L, Nunez MJ, Nicoli MC. 2004. Interaction among phenols in food fortification: Negative synergism on antioxidant capacity. J Agric Food Chem. 52:1177–1180.
  • Škerget M, Kotnik P, Hadolin M, Rižner Hraš A, Simonič M, Knez Ž. 2005. Phenols, proanthocyanidins, flavones and flavonols in some plant material and their antioxidant activities. Food Chem. 89:191–198.
  • Slimestad R, Torskangerpoll K, Nateland HS, Johannessen T, Giske NH. 2005. Flavonoids from black chokeberries, Aronia melanocarpa. J Food Comp Anal. 18:61–68.
  • Sun J, Cao X, Bai W, Liao X, Hu X. 2010. Comparative analyses of copigmentation of cyanidin 3-glucoside and cyanidin 3-sophoroside from red raspberry fruits. Food Chem. 120:1131–1137.
  • Van den Berg R, Haenen GRMM, van den Berg H, Bast A. 1999. Applicability of an improved Trolox equivalent antioxidant capacity (TEAC) assay for evaluation of antioxidant capacity measurements of mixtures. Food Chem. 66:511–517.
  • Wu X, Gu L, Prior RL, McKay S. 2004. Characterization of anthocyanins and proanthocyanidins in some cultivars of Ribes, Aronia, and Sambucus and their antioxidant capacity. J Agric Food Chem. 52:7846–7856.
  • Young IS, Woodside JV. 2001. Antioxidants in health and disease. J Clin Pathol. 54:176–186.
  • Zheng W, Wang SY. 2003. Oxygen radical absorbing capacity of phenolics in blueberries, cranberries, chokeberries, and lingonberries. J Agric Food Chem. 51:502–509.

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