Universidad de Málaga, Andalucía Tech, Departamento de Biología Molecular y Bioquímica, Facultad de Ciencias, Málaga E-29071, Spain; IBIMA (Biomedical Research Institute of Málaga), Málaga E-29071, Spain; CIBER de Enfermedades Raras (CIBERER), Málaga E-29071, Spain.
Universidad de Jaén, Departamento de Química Inorgánica y Orgánica, Campus de Excelencia Internacional Agroalimentaria ceiA3, Jaén E- 23071, Spain.
Biomed Pharmacother. 2023 Sep;165:115234. doi: 10.1016/j.biopha.2023.115234. Epub 2023 Jul 31.
Phenolic compounds play a key role in the health benefits of Extra Virgin Olive Oil (EVOO). Among these molecules, the focus has been recently put on (-)-oleocanthal and (-)-oleacein, for which anti-cancer and angiogenesis-related findings have been reported. Here, we explored the modulatory action of (-)-oleocanthal and (-)-oleacein on angiogenesis, the process by which new vessels are created from pre-existent ones, which is directly linked to tumor progression and other pathological conditions. Two in vivo models strongly sustained by angiogenesis, and an in vitro model of endothelial cells to study different steps of angiogenesis, were used. In vivo evidence pointed to the anti-angiogenic effects of both compounds in vivo. In vitro, (-)-oleacein and (-)-oleocanthal inhibited the proliferation, invasion, and tube formation of endothelial cells, and (-)-oleacein significantly repressed migration and induced apoptosis in these cells. Mechanistically, the compounds modulated signaling pathways related to survival and proliferation, all at concentrations of physiological relevance for humans. We propose (-)-oleacein and (-)-oleocanthal as good candidates for angioprevention and for further studies as modulators of angiogenesis in clinical interventions, and as interesting functional claims for the food industry. Chemical compounds studied in this article: Oleocanthal (PubChem CID: 11652416); Oleacein (PubChem CID: 18684078).
酚类化合物在特级初榨橄榄油 (EVOO) 的健康益处中发挥着关键作用。在这些分子中,最近的焦点集中在 (-)- 橄榄苦苷和 (-)- 橄榄苦素上,因为已经报道了它们具有抗癌和血管生成相关的发现。在这里,我们探讨了 (-)- 橄榄苦苷和 (-)- 橄榄苦素对血管生成的调节作用,血管生成是指从预先存在的血管中形成新血管的过程,它与肿瘤进展和其他病理状况直接相关。我们使用了两种强烈依赖血管生成的体内模型和一种内皮细胞的体外模型来研究血管生成的不同步骤。体内证据表明这两种化合物在体内都具有抗血管生成作用。在体外,(-)- 橄榄苦素和 (-)- 橄榄苦苷抑制内皮细胞的增殖、侵袭和管腔形成,而 (-)- 橄榄苦素显著抑制这些细胞的迁移并诱导其凋亡。在机制上,这些化合物调节了与生存和增殖相关的信号通路,所有这些浓度都与人类的生理相关性有关。我们提出 (-)- 橄榄苦素和 (-)- 橄榄苦苷是血管预防的良好候选物,并可进一步作为临床干预中血管生成调节剂进行研究,同时也是食品工业中有趣的功能特性。本文研究的化学物质:橄榄苦苷 (PubChem CID: 11652416);橄榄苦素 (PubChem CID: 18684078)。