Journal of Agricultural and Food Chemistry · 2007 · 345 citations · 38 references
Antioxidant activity measurement has traditionally focused on soluble components, but functional groups bound to insoluble matter may act via surface reactions. The study tested the hypothesis that insoluble food components possess antioxidant activity by examining foods, ingredients, and Maillard reaction products. Insoluble residues were isolated by sequential water and methanol washes followed by lyophilization, and their antioxidant activity was quantified using ABTS and DPPH radical assays. All tested insoluble fractions exhibited antioxidant activity; alkali hydrolysis removed up to 90 % of cereal‑based activity, confirming a major role for fiber‑bound compounds, while insoluble MRPs were largely unaffected by processing but severe treatments raised the insoluble/soluble ratio; the contribution of insoluble matter was modest in fruits and vegetables but significant in cereal‑based foods, exceeding 50 % in fiber‑rich ingredients.
The measurement of antioxidant activity was limited to soluble components to date. Functional groups, which are bound to insoluble matters, may exert antioxidant activity by a surface reaction phenomenon. This hypothesis was tested on the insoluble matters of foods, food ingredients, and Maillard reaction products (MRPs). Insoluble matters were prepared by consecutive washes with water and methanol followed by a lyophilization of the insoluble residue. The measurement was performed by a new procedure using 2,2′-azinobis(3-ethylbenzothiazoline-6-sulfonic acid) (ABTS) and 2,2-diphenyl-1-picrylhydrazil (DPPH) colored radicals. These insoluble matters always showed antioxidant activity. Alkali hydrolysis reduced up to 90% the antioxidant activity of cereal-based insoluble matters, thus confirming that fiber-bound compounds have a major role in their antioxidant activity. The antioxidant activity of the insoluble MRPs was not significantly affected by processing conditions, but severe treatments increased the ratio between insoluble and soluble matters. The contribution of insoluble matter to total antioxidant activity was limited for fruits and vegetables, but it was relevant for cereal-based foods and increased over 50% for dietary-fiber-rich ingredients.
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Use of a free radical method to evaluate antioxidant activity
Wendy Brand-Williams, Marie‐Elisabeth Cuvelier, Claudette Berset · LWT · 1995 · 24.6K citations · Full text
Iris F. F. Benzie, JJ Strain · Methods in enzymology on CD-ROM/Methods in enzymology · 1999 · 3.8K citations
Food Chemistry, Ascorbic Acid Concentration, Nutrient Bioavailability +11