4.7 Article

Application of Differential Colorimetry To Evaluate Anthocyanin-Flavonol-Flavanol Ternary Copigmentation Interactions in Model Solutions

Journal

JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY
Volume 63, Issue 35, Pages 7645-7653

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.jafc.5b00181

Keywords

ternary copigmentation; malvidin-3-glucoside; (+)-catechin; quercetin-3-beta-D-glucoside; differential colorimetly

Funding

  1. Spanish MICINN [AGL2011-30254-C02-01, AGL2011-30254-C02-02]
  2. Consejeria de Economia, Innovacion, Ciencia y Empleo, Junta de Andalucia, Spain [P11-AGR-7843]
  3. VPPI-Universidad de Sevilla

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The combined effect of anthocyanin-flavanol-flavonol ternary interactions on the colorimetric and chemical stability of malvidin-3-glucoside has been studied. Model solutions with fixed malvidin-3-glucoside/(+)-catechin ratio (MC) and variable quercetin-3-beta-D-glucoside concentration (MC+Q) and solutions with fixed malvidin-3-glucoside/quercetin-3-beta-D-glucoside ratio (MQ) and variable (+)-catechin concentration (MQ+C) were tested at levels closer to those existing in wines. Color variations during storage were evaluated by differential colorimetry. Changes in the anthocyanin concentration were monitored by HPLC-DAD. CIELAB color-difference formulas were demonstrated to be of practical interest to assess the stronger and more stable interaction of quercetin-3-beta-D-glucoside with MC binary mixture than (+)-catechin with MQ mixture. The results imply that MC+Q ternary solutions kept their intensity and bluish tonalities for a longer time in comparison to MQ+C solutions. The stability of malvidin-3-glucoside improves when the concentration of quercetin-3-beta-D-glucoside increases in MC+Q mixtures, whereas the addition of (+)-catechin in MQ+C mixtures resulted in an opposite effect.

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