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sodininkystė ir daržininkystė 31(3–4)

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8. Bartašiūtė A., Westerink B. H. C., Verpoorte E., Niederlander H. A. G. 2007.Improving the in vivo predictability of an on-line HPLC stable free radical decolorationassay for antioxidant activity in methanol-buffer medium. Free Radic.Biol. Med., 42: 413–423.9. Beekwilder J., Jonker H., Meesters P., Hall R. D., van der Meer I. M., de Vos C.H. R. 2005. Antioxidants in raspberry: on-line analysis links antioxidant activityto a diversity of individual metabolites. J. Agric. Food Chem., 53: 3 <strong>31</strong>3–3 320.10. Benzie I. F., Strain J. J. 1999. Ferric reducing/antioxidant power assay: d<strong>ir</strong>ectmeasure of total antioxidant activity of biological fluids and modified version forsimultaneous measurement of total antioxidant power and ascorbic acid concentration.Methods Enzymol., 299: 15–27.11. Benzie I. F., Strain J. J. 1996. The ferric reducing ability of plasma (FRAP) as ameasure of „antioxidant power“: the FRAP assay. Anal. Biochem., 239: 70–76.12. Bouaziz M., Grayer R. J., Simmonds M. S. J., Damak M., Sayadi S. 2005.Identification and antioxidant potential of flavonoids and low molecular weightphenols in olive cultivar chemlali growing in Tunisia. J. Agric. Food Chem., 53:236–241.13. Brand-Williams W., Cuvelier M. E., Berset C. 1995. Use of a free radicalmethod to evaluate antioxidant activity. Lebensm. Wiss. Technol., 28: 25–30.14. Calliste C. A., Trouillas P., Allais D. P., Simon A., Duroux J. L. 2001. Free radicalscavenging activities measured by electron spin resonance spectroscopy andB16 cell antiproliferative behaviors of seven plants. J. Agric. Food Chem., 49:3 321–3 327.15. Cano A., Alcaraz O., Acosta M., Arnao M. B. 2002. On-line antioxidant activitydetermination: comparison of hydrophilic and lipophilic antioxidant activityusing the ABTS *+ assay. Redox Rep., 7: 103–109.16. Cano A., Hernandez-Ruiz J., Garcia-Canovas F., Acosta M., Arnao M. B. 1998.An end-point method for estimation of the total antioxidant activity in plant material.Phytochem. Anal., 9: 196–202.17. Celik S. E., Ozyurek M., Guclu K., Apak R. 2010. Determination of antioxidantsby a novel on-line HPLC-cupric reducing antioxidant capacity (CUPRAC) assaywith post-column detection. Analytica Chimica Acta, 674: 79–88.18. Chen J., Lindmark-Mansson H., Gorton L., Akesson B. 2003. Antioxidant capacityof bovine milk as assayed by spectrophotometric and amperometric methods.Int. Da<strong>ir</strong>y J., 13: 927–935.19. Dapkevičius A., van Beek T. A., Lelyveld G. P., van Veldhuizen A., de Groot A.,Linssen J. P. H., Venskutonis P. R. 2002. Isolation and structure elucidation ofradical scavengers from Thymus vulgaris leaves. J. Nat. Prod., 65: 892–896.20. Dapkevičius A., van Beek T. A., Niederlander H. A. G. 2001. Evaluation andcomparison of two improved techniques for the on-line detection of antioxidantsin liquid chromatography eluates. J. Chromatogr. A, 912: 73–82.21. De Beer D., Joubert E., Gelderblom W. C. A., Manley M. 2003. Antioxidantactivity of South African red and white cultivar wines: free radical scavenging.J. Agric. Food Chem., 51: 902–909.29

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