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Effect of domestic cooking methods on the total antioxidant capacity of vegetables

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Pages 12-22 | Published online: 13 Aug 2009

References

  • Agudo A, Cabrera L, Amiano P, Ardanaz E, Barricarte A, Berenguer T, Chirlaque MD, Dorronsoro M, Jakszyn P, Larrañaga N, et al. Fruit and vegetable intakes, dietary antioxidant nutrients, and total mortality in Spanish adults: Findings from the Spanish cohort of the European Prospective Investigation into Cancer and Nutrition (EPIC-Spain). Am J Clin Nutr 2007; 85: 1634–1642
  • AOAC. 2005. Official methods of analysis of the Association of Official Analytical Chemists. 18th ed. AOAC International. Gaithersburg, Maryland, USA. Available online at: www.eoma.aoac.org ( accessed 25th September, 2007).
  • Benzie IFF, Strain JJ. Ferric reducing antioxidant power assay: Direct measure of total antioxidant activity of biological fluids and modified version for simultaneous measurement of total antioxidant power and ascorbic acid concentration. Methods Enzymol 1999; 299: 15–27
  • Bernhardt S, Schlich E. Impact of different cooking methods on food quality: Retention of lipophilic vitamins in fresh and frozen vegetables. J Food Eng 2006; 77: 327–333
  • Böhm V, Puspitasari-Nienaber NL, Ferruzzi MG, Schwartz SJ. Trolox equivalent antioxidant capacity of different geometrical isomers of alpha-carotene, beta-carotene, lycopene, and zeaxanthin. J Agric Food Chem 2002; 50: 221–226
  • Brighenti F, Valtueña S, Pellegrini N, Ardigò D, Del Rio D, Salvatore S, Piatti P, Serafini M, Zavaroni I. Total antioxidant capacity of the diet is inversely and independently related to plasma concentration of high-sensitivity c-reactive protein in adult Italian subjects. Br J Nutr 2005; 93: 619–625
  • Califano AN, Calvelo A. Thermal conductivity of potato between 50 and 100°C. J Food Sci 1991; 56: 586–587
  • Dewanto V, Wu X, Adom KK, Liu RH. Thermal processing enhances the nutritional value of tomatoes by increasing total antioxidant activity. J Agric Food Chem 2002; 50: 3010–3014
  • Fillion L, Henry CJK. Nutrient losses and gains during frying: A review. Int J Food Sci Nutr 1998; 49: 157–168
  • Ghiselli A, Serafini M, Maiani G, Azzini E, Ferro-Luzzi A. A fluorescence-based method for measuring total plasma antioxidant capability. Free Radic Biol Med 1995; 18: 29–36
  • Halvorsen BL, Holte K, Myhrstad MC, Barikmo I, Hvattum E, Remberg SF, Wold AB, Haffner K, Baugerød H, Andersen LF, et al. A systematic screening of total antioxidants in dietary plants. J Nutr 2002; 132: 461–471
  • Hunter KJ, Fletcher JM. The antioxidant activity and composition of fresh, frozen, jarred and canned vegetables. Innov Food Sci Emerg Technol 2002; 3: 399–406
  • Ismail A, Marjan ZM, Foong CW. Total antioxidant activity and phenolic content of selected vegetables. Food Chem 2004; 87: 581–586
  • Jiratanan T, Liu RH. Antioxidant activity of processed table beets (Beta vulgaris var, conditiva) and green beans (Phaseolus vulgaris L.). J Agric Food Chem 2004; 52: 2659–2670
  • Kalt W. Effects of production and processing factors on major fruit and vegetable antioxidants. J Food Sci 2005; 70: R11–R19
  • Makris DP, Rossiter JT. Domestic processing of onion bulbs (Allium cepa) and asparagus spears (Asparagus officinalis): effect on flavonol content and antioxidant status. J Agric Food Chem 2001; 49: 3216–3222
  • Masrizal MA, Giraud DW, Driskell JA. Retention of vitamin C, iron, and β-carotene in vegetables prepared using different cooking methods. J Food Qual 1997; 20: 403–418
  • Miglio C, Chiavaro E, Visconti A, Fogliano V, Pellegrini N. Effects of different cooking methods on nutritional and physicochemical characteristics of selected vegetables. J Agric Food Chem 2008; 56: 139–147
  • Nicoli MC, Anese M, Parpinel M. Influence of processing on the antioxidant properties of fruit and vegetables. Trends Food Sci Tech 1999; 10: 94–100
  • Pala V, Sieri S, Palli D, Salvini S, Berrino F, Bellegotti M, Frasca G, Tumino R, Sacerdote C, Fiorini L, et al. Diet in the Italian EPIC cohorts: Presentation of data and methodological issues. Tumori 2003; 89: 594–607
  • Pellegrini N, Serafini M, Colombi B, Del Rio D, Salvatore S, Bianchi M, Brighenti F. Total antioxidant capacity of plant foods, beverages and oils consumed in Italy assessed by three different in vitro assays. J Nutr 2003a; 133: 2812–2819
  • Pellegrini N, Del Rio D, Colombi B, Bianchi M, Brighenti F. Application of the 2,2′-azobis(3-ethylenebenzothiazoline-6-sulfonic acid) radical cation assay to a flow injection system for the evaluation of antioxidant activity of some pure compounds and beverages. J Agric Food Chem 2003b; 51: 260–264
  • Pellegrini N, Serafini M, Salvatore S, Del Rio D, Bianchi M, Brighenti F. Total antioxidant capacity of spices, dried fruits, nuts, pulses, cereals and sweets consumed in Italy assessed by three different in vitro assays. Mol Nutr Food Res 2006; 50: 1030–1038
  • Racchi M, Daglia M, Lanni C, Papetti A, Govoni S, Gazzani G. Antiradical activity of water soluble components in common diet vegetables. J Agric Food Chem 2002; 50: 1272–1277
  • Rimm EB, Ascherio A, Giovannucci E, Spiegelman D, Stampfer MJ, Willett WC. Vegetable, fruit, and cereal fiber intake and risk of coronary heart disease among men. JAMA 1996; 275: 447–451
  • Salvini S. A food composition database for epidemiological studies in Italy. Cancer Lett 1997; 114: 299–300
  • Schütz K, Kammerer D, Carle R, Schieber A. Identification and quantification of caffeoylquinic acids and flavonoids from artichoke (Cynara scolymus L.) heads, juice, and pomace by HPLC-DAD-ESI/MSn. J Agric Food Chem 2004; 52: 4090–4096
  • Serafini M, Bellocco R, Wolk A, Ekstrom AM. Total antioxidant potential of fruit and vegetables and risk of gastric cancer. Gastroenterology 2002; 123: 985–991
  • Soupas L, Huikko L, Lampi A-M, Piironen V. Pan-frying may induce phytosterol oxidation. Food Chem 2007; 101: 286–297
  • Thane C, Reddy S. Processing of fruit and vegetables: effect on carotenoids. Nutr Food Sci 1997; 2: 58–65
  • Turkmen N, Sari F, Velioglu YS. The effect of cooking methods on total phenolics and antioxidant activity of selected green vegetables. Food Chem 2005; 93: 713–718
  • Turrini A, Saba A, Perrone D, Cialda E, D'Amicis A. Food consumption patterns in Italy: The INN-CA Study 1994–1996. Eur J Clin Nutr 2001; 55: 571–588
  • Williams MT, Hord NG. The role of dietary factors in cancer prevention: Beyond fruits and vegetables. Nutr Clin Pract 2005; 20: 451–459
  • Wu X, Beecher GR, Holden JM, Haytowitz DB, Gebhardt SE, Prior RL. Lipophilic and hydrophilic antioxidant capacities of common foods in the United States. J Agric Food Chem 2004; 52: 4026–4037
  • Zhang D, Hamauzu Y. Phenolics, ascorbic acid, carotenoids and antioxidant activity of broccoli and their changes during conventional and microwave cooking. Food Chem 2004; 88: 503–509

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