Menendez Javier A, Vazquez-Martin Alejandro, Garcia-Villalba Rocio, Carrasco-Pancorbo Alegria, Oliveras-Ferraros Cristina, Fernandez-Gutierrez Alberto, Segura-Carretero Antonio
Catalan Institute of Oncology (ICO)-Health Services Division of Catalonia, Catalonia, Spain.
BMC Cancer. 2008 Dec 18;8:377. doi: 10.1186/1471-2407-8-377.
The effects of the olive oil-rich Mediterranean diet on breast cancer risk might be underestimated when HER2 (ERBB2) oncogene-positive and HER2-negative breast carcinomas are considered together. We here investigated the anti-HER2 effects of phenolic fractions directly extracted from Extra Virgin Olive Oil (EVOO) in cultured human breast cancer cell lines.
Solid phase extraction followed by semi-preparative high-performance liquid chromatography (HPLC) was used to isolate phenolic fractions from commercial EVOO. Analytical capillary electrophoresis coupled to mass spectrometry was performed to check for the composition and to confirm the identity of the isolated fractions. EVOO polyphenolic fractions were tested on their tumoricidal ability against HER2-negative and HER2-positive breast cancer in vitro models using MTT, crystal violet staining, and Cell Death ELISA assays. The effects of EVOO polyphenolic fractions on the expression and activation status of HER2 oncoprotein were evaluated using HER2-specific ELISAs and immunoblotting procedures, respectively.
Among the fractions mainly containing the single phenols hydroxytyrosol and tyrosol, the polyphenol acid elenolic acid, the lignans (+)-pinoresinol and 1-(+)-acetoxypinoresinol, and the secoiridoids deacetoxy oleuropein aglycone, ligstroside aglycone, and oleuropein aglycone, all the major EVOO polyphenols (i.e. secoiridoids and lignans) were found to induce strong tumoricidal effects within a micromolar range by selectively triggering high levels of apoptotic cell death in HER2-overexpressors. Small interfering RNA-induced depletion of HER2 protein and lapatinib-induced blockade of HER2 tyrosine kinase activity both significantly prevented EVOO polyphenols-induced cytotoxicity. EVOO polyphenols drastically depleted HER2 protein and reduced HER2 tyrosine autophosphorylation in a dose- and time-dependent manner. EVOO polyphenols-induced HER2 downregulation occurred regardless the molecular mechanism contributing to HER2 overexpression (i.e. naturally by gene amplification and ectopically driven by a viral promoter). Pre-treatment with the proteasome inhibitor MG132 prevented EVOO polyphenols-induced HER2 depletion.
The ability of EVOO-derived polyphenols to inhibit HER2 activity by promoting the proteasomal degradation of the HER2 protein itself, together with the fact that humans have safely been ingesting secoiridoids and lignans as long as they have been consuming olives and OO, support the notion that the stereochemistry of these phytochemicals might provide an excellent and safe platform for the design of new HER2-targeting agents.
当将人表皮生长因子受体2(ERBB2)致癌基因阳性和阴性的乳腺癌一起考虑时,富含橄榄油的地中海饮食对乳腺癌风险的影响可能被低估。我们在此研究了从特级初榨橄榄油(EVOO)中直接提取的酚类组分对培养的人乳腺癌细胞系的抗HER2作用。
采用固相萃取继以半制备高效液相色谱(HPLC)从市售EVOO中分离酚类组分。进行分析毛细管电泳与质谱联用,以检查其组成并确认分离组分的身份。使用MTT、结晶紫染色和细胞死亡ELISA测定法,在体外模型中测试EVOO多酚组分对HER2阴性和HER2阳性乳腺癌的杀瘤能力。分别使用HER2特异性ELISA和免疫印迹程序评估EVOO多酚组分对HER2癌蛋白表达和激活状态的影响。
在主要含有单酚羟基酪醇和酪醇、多酚酸橄榄苦烯酸、木脂素(+)-松脂醇和1-(+)-乙酰氧基松脂醇以及裂环环烯醚萜类去乙酰氧基橄榄苦苷苷元、裂环马钱子苷苷元和橄榄苦苷苷元的组分中,发现所有主要的EVOO多酚(即裂环环烯醚萜类和木脂素)通过在HER2过表达细胞中选择性触发高水平的凋亡性细胞死亡,在微摩尔范围内诱导强烈的杀瘤作用。小干扰RNA诱导的HER2蛋白耗竭和拉帕替尼诱导的HER2酪氨酸激酶活性阻断均显著预防了EVOO多酚诱导的细胞毒性。EVOO多酚以剂量和时间依赖性方式大幅消耗HER2蛋白并降低HER2酪氨酸自身磷酸化。无论导致HER2过表达的分子机制如何(即自然地通过基因扩增和由病毒启动子异位驱动),EVOO多酚均诱导HER2下调。用蛋白酶体抑制剂MG132预处理可预防EVOO多酚诱导的HER2耗竭。
EVOO衍生的多酚通过促进HER2蛋白本身的蛋白酶体降解来抑制HER2活性的能力,以及人类自食用橄榄和橄榄油以来一直安全摄入裂环环烯醚萜类和木脂素这一事实,支持了这些植物化学物质的立体化学可能为设计新的HER2靶向药物提供一个优良且安全的平台这一观点。