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Extra Virgin Olive Oil's Main Components' Antioxidant Activity and in Silico Effect on AKT1
Saliha Boucheffa1, Naouel Kheyar-Kraouche2, Meriem Djermouni1
1Laboratory of Applied Biochemistry, Faculty of Natural and Life Sciences, University Ferhat Abbas Sétif, 19000, Sétif, Algeria.
Abstract:
The study compared the chemical composition of various olive oils from the northern Algerian province of Bejaia. The research focused on the antioxidant activities of the oil's main constituents and their ability to inhibit the AKT1 protein, which is implicated in the development of colorectal cancer. The findings revealed that all of the examined oils fell within the extra virgin olive oil (EVOO) category and exhibited a high oleic acid content, particularly for samples from wild olives. These oils include high amount of ligstroside and oleocanthal, two important phenolic compounds. Wild olive oils stand out from cultivated ones due to their higher bitterness index. In addition, these oils have the highest concentrations of α-tocopherols and the best oxidative stability. Olive oil extracts demonstrated their antioxidant properties by neutralizing DPPH and ABTS radicals and converting ferric ions (Fe3+) to ferrous ions (Fe2+) for FRAP assay. Molecular docking was applied to assess the interaction between the main compounds identified in the analyzed olive oils and the human AKT1 protein, which is involved in the genesis of colorectal cancer. The findings revealed that lutein, oleuropein aglycone, and ligstroside aglycone had the highest binding affinity for the AKT1 protein. The present study could provide the theoretical foundation for further research on the interaction between AKT1 protein and EVOO compounds.
Insights
This study reveals that Algerian extra virgin olive oils (EVOO) possess potent antioxidant properties and compounds that may inhibit AKT1 protein, potentially impacting colorectal cancer development.
Area of Science:
- Food Chemistry
- Nutraceuticals
- Oncology
Background:
- Colorectal cancer (CRC) is a significant health concern.
- The AKT1 protein is implicated in CRC development.
- Extra virgin olive oil (EVOO) contains bioactive compounds with potential health benefits.
Purpose of the Study:
- To analyze the chemical composition and antioxidant activity of Algerian EVOOs.
- To investigate the potential of EVOO constituents to inhibit the AKT1 protein.
- To explore the link between EVOO compounds and CRC prevention.
Main Methods:
- Chemical analysis of olive oil composition (oleic acid, phenolic compounds, tocopherols).
- In vitro antioxidant assays (DPPH, ABTS, FRAP).
- Molecular docking simulations to assess EVOO compound interaction with AKT1 protein.
Main Results:
- All analyzed oils were classified as EVOO with high oleic acid content, especially from wild olives.
- Wild olive oils showed higher bitterness, α-tocopherol concentrations, and oxidative stability.
- EVOO extracts exhibited significant antioxidant activity.
- Lutein, oleuropein aglycone, and ligstroside aglycone showed high binding affinity to AKT1 protein.
Conclusions:
- Algerian EVOOs, particularly from wild olives, are rich in beneficial compounds.
- Specific EVOO compounds demonstrate potential for inhibiting AKT1 protein.
- These findings support further research into EVOO as a preventative agent against CRC.
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