Antioxidant Properties of Kilned and Roasted Malts
Антиоксидантные свойства сушёных и обжаренных солодов
2005-09-01
SCID: 54.1/gma9wvkf
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Maillard reaction productsantioxidant activitykilned maltphenolic compoundsroasted malt
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Abstract (AI)
Compounds possessing antioxidant activity play a crucial role in delaying or preventing lipid oxidation in foods and beverages during processing and storage. Such reactions lead to loss of product quality, especially as a consequence of off-flavor formation. The aim of this study was to determine the antioxidant activity of kilned (standard) and roasted (speciality) malts in relation to phenolic compounds, sugars, amino acids, and color [assessed as European Brewing Convention units (degrees EBC) and absorbance at 420 nm]. The concentrations of sugars and amino acids decreased with the intensity of the applied heat treatment, and this was attributed to the extent of the Maillard reaction, as well as sugar caramelization, in the highly roasted malts. Proline, followed by glutamine, was the most abundant free amino/imino acid in the malt samples, except those that were highly roasted, and maltose was the most abundant sugar in all malts. Levels of total phenolic compounds decreased with heat treatment. Catechin and ferulic acid were the most abundant phenolic compounds in the majority of the malts, and amounts were highest in the kilned samples. In highly roasted malts, degradation products of ferulic acid were identified. Antioxidant activity increased with the intensity of heating, in parallel with color formation, and was significantly higher for roasted malts compared to kilned malts. In kilned malts, phenolic compounds were the main identified contributors to antioxidant activity, with Maillard reaction products also playing a role. In roasted malts, Maillard reaction products were responsible for the majority of the antioxidant activity.
Key Findings
1
Antioxidant activity increased with heating intensity and color formation, being significantly higher in roasted than kilned malts.
2
Increasing heat intensity reduced sugar and amino acid concentrations in malt, attributed to Maillard reactions and sugar caramelization.
3
Phenolic compounds primarily contributed to antioxidant activity in kilned malts, whereas Maillard reaction products dominated antioxidant activity in roasted malts.
4
Proline was the most abundant free amino/imino acid in most samples, while maltose was the predominant sugar across all malts.
5
Total phenolic compounds, especially catechin and ferulic acid, were highest in kilned malts and decreased with roasting; ferulic acid degradation products appeared in highly roasted malts.
Research Object
Kilned and roasted malts subjected to varying heat-treatment intensities
Research Subject
Antioxidant activity and its chemical contributors, including phenolic compounds and Maillard reaction products, in relation to heat treatment and color formation
Publication Details
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2005-09-01
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