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April 4, 2026Molecules0 citationsOpen Access

Influence of Ultrasound-Assisted and Supercritical CO2 Extraction on Phytochemical Profiles with Antimicrobial and Antioxidant Functionality from Olive Leaves and Olive Pomace

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YGYesuneh GizawMBMaría José BenitoMRMaría de los Ángeles Rivas

Key Points

  • This study aims to evaluate how different extraction methods affect the phytochemical profile and biological activity of bioactive compounds in olive leaves and pomace.
  • Evaluated olive leaves from three cultivars and olive pomace.
  • Compared ultrasound-assisted extraction (UAE) with supercritical CO2 extraction (SFE).
  • Analyzed impacts on phytochemical composition and bioactivity.
  • Utilized multivariate analysis to differentiate between matrices and extraction methods.
  • UAE favored the recovery of phenolic compounds linked to antioxidant activity, especially in leaf extracts.
  • SFE produced extracts enriched in flavonoids and lipophilic compounds, particularly from olive pomace.
  • UAE extracts demonstrated higher antioxidant activity compared to SFE extracts.
  • SFE extracts showed stronger antimicrobial effects against specific bacteria.

Abstract

This study evaluated olive leaves from three cultivars (Hojiblanca, Picual, and Arbequina) and olive pomace as complementary sources of bioactive compounds, comparing ultrasound-assisted extraction using organic solvents (UAE) with supercritical CO2 extraction (SFE). The aim was to determine how the plant matrix and extraction method influence phytochemical composition and functional properties, including antioxidant and antimicrobial activity. The results showed that both factors strongly affected extract composition and bioactivity. UAE favored the recovery of phenolic compounds associated with antioxidant activity, particularly in leaf extracts, while SFE promoted a distinct compositional profile enriched in flavonoids and lipophilic constituents, especially in olive pomace. Multivariate analysis confirmed a clear differentiation between matrices and extraction methods. Leaf extracts from Picual and Arbequina were mainly associated with phenolic compounds linked to antioxidant activity, including luteolin, ethyl vanillin, tyrosol, and isorhamnetin-3-O-glucoside. In contrast, olive pomace extracts were more strongly associated with flavonoids and lipophilic metabolites, such as triterpenes (oleanolic, maslinic, and ursolic acids) and lipid derivatives (oleic acid and lauric isopropanolamide). These compositional differences were reflected in biological activity: UAE extracts showed higher antioxidant activity, whereas SFE extracts, enriched in lipophilic and triterpenic compounds, exhibited stronger antimicrobial effects against Pseudomonas savastanoi and Hanseniaspora sp. Overall, these findings demonstrate that extraction-driven selectivity enables the production of olive-derived extracts with targeted functionalities, with UAE favoring antioxidant-oriented extracts and SFE promoting extracts enriched in lipophilic compounds with antimicrobial potential, particularly from olive pomace.

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Cite This Study

Gizaw et al. (2026) studied this question.

synapsesocial.com/papers/69d0af1c659487ece0fa5019https://doi.org/10.3390/molecules31071186
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