Influence of Harvest Time and Malaxation Conditions on the Concentration of Individual Phenols in Extra Virgin Olive Oil Related to Its Healthy Properties

Molecules. 2020 May 24;25(10):2449. doi: 10.3390/molecules25102449.

Abstract

The phenolic fraction of the extra virgin olive oil (EVOO) has been studied over the past two decades because of its important health protective properties. Numerous studies have been performed in order to clarify the most crucial factors that affect the concentration of the EVOO's phenolic fraction and many contradictory results have been reported. Having as target to maximize the phenolic content of EVOO and its healthy properties we investigated the impact of harvest time, malaxation temperature, and malaxation duration on the concentration of individual phenols in extra virgin olive oil. Olive oil was prepared in a lab-scale olive mill from different varieties in Greece. The extraction process for cultivar (cv) Koroneiki samples was performed at five different harvest periods from the same trees with three different malaxation temperatures and five different malaxation duration times (N = 75). Similar types of experiments were also performed for other varieties: cv Athenolia (N = 20), cv Olympia (N = 3), cv Kalamata (N = 3), and cv Throubolia Aegean (N=3) in order to compare the changes in the phenolic profile during malaxation. The quantitative analysis of the olive oil samples with NMR showed that the total phenolic content has a negative correlation with the ripening degree and the malaxation time. The NMR data we collected helped us to quantitate not only the total phenolic content but also the concentration of the major phenolic compounds such as oleocanthal, oleacein, oleokoronal, and oleomissional. We noticed different trends for the concentration of these phenols during malaxation process and for different malaxation temperatures. The different trends of the concentration of the individual phenols during malaxation and the completely different behavior of each variety revealed possible biosynthetic formation steps for oleocanthal and oleacein and may explain the discrepancies reported from previous studies.

Keywords: harvest; malaxation; oleocanthal; olive oil; phenols; quantitative nuclear magnetic resonance.

MeSH terms

  • Aldehydes / chemistry
  • Aldehydes / isolation & purification
  • Cyclopentane Monoterpenes / chemistry
  • Cyclopentane Monoterpenes / isolation & purification
  • Greece
  • Olea / chemistry*
  • Olea / growth & development
  • Olive Oil / chemistry*
  • Phenols / chemistry*
  • Phenols / isolation & purification
  • Plant Oils / chemistry*
  • Temperature

Substances

  • Aldehydes
  • Cyclopentane Monoterpenes
  • Olive Oil
  • Phenols
  • Plant Oils
  • oleacein
  • oleocanthal