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Anticancer Effects of Secoiridoids-A Scoping Review of the Molecular Mechanisms behind the Chemopreventive Effects of the Olive Tree Components Oleocanthal, Oleacein, and Oleuropein. | LitMetric

AI Article Synopsis

  • - The paper discusses the significant cultural and health-related roles of olive oil in Europe, particularly its well-known health benefits and potential anti-cancer properties due to compounds like oleocanthal, oleacein, and oleuropein.
  • - A systematic review of 4037 articles identified 88 that focused on the mechanisms of these key bioactive compounds in preventing cancer, highlighting their ability to inhibit cell growth, induce cell death, and disrupt tumor development.
  • - The findings suggest that the consumption of olive oil is linked to a lower risk of cancer, and the research may open new avenues for combining olive-derived compounds with existing cancer treatments to create innovative nutrition-focused anti-cancer strategies.

Article Abstract

The olive tree () and olive oil hold significant cultural and historical importance in Europe. The health benefits associated with olive oil consumption have been well documented. This paper explores the mechanisms of the anti-cancer effects of olive oil and olive leaf, focusing on their key bioactive compounds, namely oleocanthal, oleacein, and oleuropein. The chemopreventive potential of oleocanthal, oleacein, and oleuropein is comprehensively examined through this systematic review. We conducted a systematic literature search to identify eligible articles from Scopus, PubMed, and Web of Science databases published up to 10 October 2023. Among 4037 identified articles, there were 88 eligible articles describing mechanisms of chemopreventive effects of oleocanthal, oleacein, and oleuropein. These compounds have the ability to inhibit cell proliferation, induce cell death (apoptosis, autophagy, and necrosis), inhibit angiogenesis, suppress tumor metastasis, and modulate cancer-associated signalling pathways. Additionally, oleocanthal and oleuropein were also reported to disrupt redox hemostasis. This review provides insights into the chemopreventive mechanisms of -derived secoiridoids, shedding light on their role in chemoprevention. The bioactivities summarized in the paper support the epidemiological evidence demonstrating a negative correlation between olive oil consumption and cancer risk. Furthermore, the mapped and summarized secondary signalling pathways may provide information to elucidate new synergies with other chemopreventive agents to complement chemotherapies and develop novel nutrition-based anti-cancer approaches.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11357637PMC
http://dx.doi.org/10.3390/nu16162755DOI Listing

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