首页> 外文期刊>Rejuvenation research >Phenolic secoiridoids in extra virgin olive oil impede fibrogenic and oncogenic epithelial-to-mesenchymal transition: Extra virgin olive oil as a source of novel antiaging phytochemicals
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Phenolic secoiridoids in extra virgin olive oil impede fibrogenic and oncogenic epithelial-to-mesenchymal transition: Extra virgin olive oil as a source of novel antiaging phytochemicals

机译:特级初榨橄榄油中的酚类secoiridoids阻碍纤维化和致癌性上皮向间质转化:特级初榨橄榄油作为新型抗衰老植物化学物质的来源

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The epithelial-to-mesenchymal transition (EMT) genetic program is a molecular convergence point in the life-threatening progression of organ fibrosis and cancer toward organ failure and metastasis, respectively. Here, we employed the EMT process as a functional screen for testing crude natural extracts for accelerated drug development in fibrosis and cancer. Because extra virgin olive oil (EVOO) (i.e., the juice derived from the first cold pressing of the olives without any further refining process) naturally contains high levels of phenolic compounds associated with the health benefits derived from consuming an EVOO-rich Mediterranean diet, we have tested the ability of an EVOO-derived crude phenolic extract to regulate fibrogenic and oncogenic EMT in vitro. High-performance liquid chromatography (HPLC) coupled to time-of-flight (TOF) mass spectrometry assays revealed that the EVOO phenolic extract was mainly composed (~70%) of two members of the secoiridoid family of complex polyphenols, namely oleuropein aglycone-the bitter principle of olives-and its derivative decarboxymethyl oleuropein aglycone. EVOO secoiridoids efficiently prevented loss of proteins associated with polarized epithelial phenotype (i.e., E-cadherin) as well as de novo synthesis of proteins associated with mesenchymal migratory morphology of transitioning cells (i.e., vimentin). The ability of EVOO to impede transforming growth factor-β (TGF-β)-induced disintegration of E-cadherin-mediated cell-cell contacts apparently occurred as a consequence of the ability of EVOO phenolics to prevent the upregulation of SMAD4-a critical mediator of TGF-β signaling-and of the SMAD transcriptional cofactor SNAIL2 (Slug)-a well-recognized epithelial repressor. Indeed, EVOO phenolics efficiently prevented crucial TGF-β-induced EMT transcriptional events, including upregulation of SNAI2, TCF4, VIM (Vimentin), FN (fibronectin), and SERPINE1 genes. While awaiting a better mechanistic understanding of how EVOO phenolics molecularly shut down the EMT differentiation process, it seems reasonable to suggest that nontoxic Oleaceae secoiridoids certainly merit to be considered for aging studies and, perhaps, for ulterior design of more pharmacologically active second-generation anti-EMT molecules.
机译:上皮-间质转化(EMT)遗传程序是威胁器官纤维化和癌症分别向器官衰竭和转移的威胁生命的进程中的一个分子收敛点。在这里,我们将EMT工艺用作功能性筛选,以测试天然粗提物在纤维化和癌症中加速药物开发。由于特级初榨橄榄油(EVOO)(即在不经过任何进一步精制过程的情况下,从橄榄的第一次冷榨中获得的汁液)天然含有高水平的酚类化合物,与食用富含EVOO的地中海饮食带来的健康益处相关,我们已经测试了EVOO衍生的粗酚提取物在体外调节纤维生成和致癌EMT的能力。高效液相色谱(HPLC)与飞行时间(TOF)质谱分析联用显示,EVOO酚类提取物主要(约70%)由复杂多酚类secrididoid家族的两个成员(即橄榄苦苷苷元-橄榄的苦味原理及其衍生的脱羧甲基橄榄苦苷糖苷配基。 EVOO类蛇形素有效地防止了与极化上皮表型有关的蛋白质(即E-钙粘蛋白)的丢失以及与过渡细胞的间充质迁移形态有关的蛋白质(即波形蛋白)的从头合成。 EVOO阻止转化生长因子-β(TGF-β)诱导的E-钙粘蛋白介导的细胞间接触分解的能力显然是由于EVOO酚类化合物阻止SMAD4-a关键介体上调的能力的结果TGF-β信号转导和SMAD转录辅因子SNAIL2(Slug)的识别-一个公认的上皮阻遏物。确实,EVOO酚类药物有效地阻止了关键的TGF-β诱导的EMT转录事件,包括SNAI2,TCF4,VIM(波形蛋白),FN(纤连蛋白)和SERPINE1基因的上调。在等待对EVOO酚类化合物如何分子关闭EMT分化过程的更好的机理理解时,似乎合理的建议是肯定应考虑将无毒的油木科油苷类化合物用于衰老研究,也许还可以用于更药理活性的第二代抗药性的进一步设计。 -EMT分子。

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