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Antioxidant properties and potential mechanisms of hydrolyzed proteins and peptides from cereals

Heliyon · 2019 · Vol. 5(4) · pp. e01538–e01538
Ramak EsfandiMallory E. WaltersApollinaire Tsopmo

Abstract

Cereals like wheat, rice, corn, barley, rye, oat, and millet are staple foods in many regions around the world and contribute to more than half of human energy requirements. Scientific publications contain evidence showing that apart from energy, the regular consumption of whole grains is useful for the prevention of many chronic diseases associated with oxidative stress. Biological activities have mostly been attributed to the presence of glucans and polyphenols. In recent years however, food proteins have been investigated as sources of peptides that can exert biological functions, promote health and prevent oxidative stress. This review focuses on the role of hydrolyzed proteins and peptides with antioxidant properties in various models and their mechanisms which include hydrogen or electron transfer, metal chelating, and regulation of enzymes involved in the oxidation-reduction process.

Protein Hydrolysis and Bioactive PeptidesBiochemical effects in animalsAdvanced Glycation End Products researchAntioxidantOxidative stressPolyphenolOxidative phosphorylationFood scienceBiochemistryChemistryHydrolysisHuman healthBiotechnology
Citations
248
FWCI
10.11
field-weighted impact
References
130
Percentile
99%
vs. same field & year
Citations per year
References
Biochemistry of oxidative stress
Biochemical Society Transactions · 2007 · 1,513 citations
Chemistry of Deep‐Fat Frying Oils
Journal of Food Science · 2007 · 1,203 citations
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