J. Agric. Food Chem., 53 (17), 6896 -6902, 2005. 10.1021/jf0511300 S0021-8561(05)01130-1
Web Release Date: July 23, 2005

Copyright © 2005 American Chemical Society

Antioxidant Properties of Prepared Blueberry (Vaccinium myrtillus) Extracts

Ana Faria, Joana Oliveira, Patrícia Neves, Paula Gameiro, Celestino Santos-Buelga, Victor de Freitas, and Nuno Mateus*

Centro de Investigação em Química and Requimte, Departamento de Química, Faculdade de Ciências, Universidade do Porto, Rua do Campo Alegre 687, 4169-007 Porto, Portugal; and Unidad de Nutrición y Bromatología, Facultad de Farmacia, Universidad de Salamanca, Campus Miguel de Unamuno s/n, E-37007 Salamanca, Spain

Received for review May 17, 2005. Revised manuscript received June 20, 2005. Accepted June 20, 2005.

Abstract:

A blueberry extract (A) and two anthocyanin-derived extracts (B and C) were prepared. The contents of polyphenols, flavonoids, anthocyanins, and anthocyanin-derived pigments of the extracts were determined for the first time. The pigment profile of blueberry extract A corresponded to 15 anthocyanins, whereas extract B was mainly composed of anthocyanin-pyruvic acid adducts of the blueberry original anthocyanins and extract C was mainly composed of the respective vinylpyranoanthocyanin-catechins (portisins). The extracts' abilities to inhibit lipid peroxidation, induced by 2,2'-azobis(2-methyl-propanimidamide) dihydrochloride in a liposomal membrane system were examined. The antioxidant capacities of the extracts were evaluated through monitoring oxygen consumption and by measuring the formation of conjugated dienes. All of the extracts provided protection of membranes against peroxyl radicals by increasing the induction time of oxidation. This effect increased with the polyphenol content and with the structural complexity of the anthocyanin-derived pigments of the extracts. The pigments present in extract C seemed to induce a higher protection of the liposome membranes toward oxidation. In addition, the antiradical properties and the reducing power of the extracts were determined by using DPPH and FRAP methods, respectively. The results from these assays were in agreement with those obtained with the liposome membranes.

Keywords: Blueberry; anthocyanin; pyruvic acid; portisin; liposome; antioxidant


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