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Original

Multifunctional in vitro antioxidant evaluation of strawberry (Fragaria virginiana Dutch.)

Pages 629-636 | Published online: 06 Jul 2009

References

  • Ayala-Zavala JF, Wang SY, Wang CY, González-Aguilar GA. Effect of storage temperatures on antioxidant capacity and aroma compounds in strawberry fruit. Lebensm Wiss Technol 2004; 37: 687–695
  • Benzie IFF, Strain JJ. The ferric reducing ability of plasma (FRAP) as a measure of ‘antioxidant power’. The FRAP assay. Anal Biochem 1996; 239: 70–76
  • Bermúdez-Soto MJ, Tomás-Barberán FA. Evaluation of commercial red fruit juice concentrates as ingredients for antioxidant functional juices. Eur Food Res Technol 2004; 219: 133–141
  • Cao GH, Russell RM, Lischner N, Prior RL. Serum antioxidant capacity is increased by consumption of strawberries, spinach, red wine or vitamin C in elderly women. J Nutr 1998; 28: 2383–2390
  • Cordenunsi BR, Genovese MI, Do Nascimento JRO, Hassimotto NMA, Dos Santos RJ, Lajolo FM. Effects of temperature on the chemical composition and antioxidant activity of three strawberry cultivars. Food Chem 2005; 91: 113–121
  • De Ancos B, González EM, Cano MP. Ellagic acid, vitamin C, and total phenolic contents and radical scavenging capacity affected by freezing and frozen storage in raspberry fruit. J Agric Food Chem 2000; 48: 4565–4570
  • Esterbauer H, Striegl G, Puhl H, Rotheneder M. Continuous monitoring of in vitro oxidation of human low-density lipoprotein. Free Radic Res Commun 1989; 6: 67–65
  • Frankel EN, Meyer AS. The problems of using one-dimensional methods to evaluate multifunctional food and biological antioxidants. J Sci Food Agric 2000; 80: 1925–1941
  • Gil MI, Holcroft DM, Kader AA. Changes in strawberry anthocyanins and other polyphenols in response to carbon dioxide treatments. J Agric Food Chem 1997; 45: 1662–1667
  • Heinonen M, Meyer AS, Frankel EN. Antioxidant activity of berry phenolics on human low-density lipoproteins. J Agric Food Chem 1998; 46: 4107–4112
  • Jacob RA. The integrated antioxidant system. Nutr Res 1995; 15: 755–766
  • Jiménez-Escrig A. Polyphenols and carotenoid protection in biological systems through the modulation of antioxidant enzymes. Curr Enzyme Inhibition 2006; 2: 231–248
  • Jiménez-Escrig A, Rincón AM, Pulido R., Saura-Calixto F. Guava fruit (Psidium guajava L.) as a new source of antioxidant dietary fiber. J Agric Food Chem 2001; 49: 5489–5493
  • Leong LP, Shui G. An investigation of antioxidant capacity of fruits in Singapore markets. Food Chem 2002; 76: 69–75
  • Miller HE, Rigelhof F, Marquart L, Prakash A, Kanter M. Whole-grain products and antioxidants. Cereal Food World 2000; 45: 59–63
  • Montreau FR. Sur le dosage des composés phénoliques totaux dans les vins par la méthode Folin–Ciocalteu [The content of total phenolic compounds in wines by the Folin–Ciocalteu method]. Connais Vigne Vin 1972; 24: 397–404
  • Netzel M, Strass G, Kaul C, Bitsch I, Dietrich H, Bitsch R. In vivo antioxidative capacity of a composite berry juice. Food Res Int 2002; 35: 213–216
  • Olson JA. Benefits and liabilities of vitamin A and carotenoids. J Nutr 1996; 126: 1208S–1212S
  • Ou BX, Huang DJ, Hampsch-Woodill M., Flanagan JA, Deemer EK. Analysis of antioxidant activities of common vegetables employing oxygen radical absorbance capacity (ORAC) and ferric reducing antioxidant power (FRAP) assays: a comparative study. J Agric Food Chem 2002; 50: 3122–3128
  • Pulido R, Bravo L, Saura-Calixto F. Antioxidant activity of dietary polyphenols as determined by a modified ferric reducing/antioxidant power assay. J Agric Food Chem 2000; 48: 3396–3402
  • Sánchez-Moreno C. Methods used to evaluate the free radical scavenging activity in foods and biological systems. Food Sci Technol Int 2002; 8: 121–137
  • Sánchez-Moreno C, Jiménez-Escrig A, Saura-Calixto F. Study of low-density lipoprotein oxidizability indexes to measure the antioxidant activity of dietary polyphenols. Nutr Res 2000; 20: 941–954
  • Sánchez-Moreno C, Larrauri JA, Saura-Calixto F. A procedure to measure the antiradical efficiency of polyphenols. J Sci Food Agric 1998; 76: 270–276
  • Tani N. Development of selective low-density lipoprotein (LDL) apheresis system: Immobilized polyanion as LDL-specific adsorption for LDL apheresis system. Artif Organs 1996; 20: 922–929
  • Wang H, Cao G, Prior RL. Total antioxidant capacity of fruits. J Agric Food Chem 1996; 44: 701–705
  • Wang SY, Lin H-S. Antioxidant activity in fruits and leaves of blackberry, raspberry, and strawberry varies with cultivar and development stage. J Agric Food Chem 2000; 48: 140–146

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