Electrochemical determination with a long-length carbon nanotube electrode of quercetin glucosides in onion, apple peel, and tartary buckwheat

Food Chem. 2019 Dec 1:300:125189. doi: 10.1016/j.foodchem.2019.125189. Epub 2019 Jul 16.

Abstract

Since the intake of quercetin glucosides has healthy benefits, the analysis of quercetin glucosides in food is useful. The electrochemical determination of individual quercetin glucosides (quercetin-3-glucoside (Q3G), quercetin-4'-glucoside (Q4'G), and quercetin-3,4'-diglucoside (Q34'G)) in food is carried out. For the detection of quercetin glucosides, a long-length carbon nanotube electrode offers attractive properties such as well-defined current peaks, high sensitivity, and high reproducibility. Cyclic voltammetry (CV) demonstrates distinct and specific peak currents: the oxidation peaks at +0.37, +0.45, and +0.78 V are assigned to the catechol group in the B-ring of Q3G, the 3-hydroxy group in the C-ring of Q4'G, and the resorcinol group in the A-ring of both Q4'G and Q34'G, respectively. Currents, which are determined by CV, of individual quercetin glucosides at the peak potential are proportional to the concentrations of onion, apple peel, and tartary buckwheat, which show good agreement with those obtained by high-performance liquid chromatography.

Keywords: Carbon nanotube; Cyclic voltammetry; Diphenol; Quercetin glucoside; Redox reaction.

MeSH terms

  • Electrochemical Techniques / instrumentation*
  • Electrochemical Techniques / methods
  • Electrodes*
  • Fagopyrum / chemistry
  • Food Analysis / instrumentation
  • Food Analysis / methods*
  • Glucosides / analysis*
  • Malus / chemistry
  • Nanotubes, Carbon
  • Onions / chemistry
  • Oxidation-Reduction
  • Quercetin / analogs & derivatives
  • Quercetin / analysis*
  • Quercetin / chemistry
  • Reproducibility of Results
  • Sensitivity and Specificity

Substances

  • Glucosides
  • Nanotubes, Carbon
  • quercetin-3,4'-O-diglucoside
  • isoquercitrin
  • Quercetin
  • spiraeoside