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Profiling Flavonoid Cytotoxicity in Human Breast Cancer Cell Lines: Determination of Structure-Function Relationships

机译:在人类乳腺癌细胞系中分析类黄酮细胞毒性:结构-功能关系的确定。

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Flavonoids have been shown to be cytotoxic to cancer cells. However, the mechanism of cytotoxicity has not been clearly defined. It has previously been reported that HER2/ERBB2, the estrogen receptor, progesterone receptor, and p53 were required for flavonoid induced cytotoxicity in breast cancer cell lines. We have used a panel of breast cancer cell lines, known to contain as well as be deficient in these signaling pathways, to screen fourteen different flavonoids. Comparing the cytotoxicity for all flavonoids allows us to determine if a structure-functional relationship exists between cytotoxicity and flavonoid, and if a particular signaling pathway is required for cytotoxicity. We show that several flavonoids are cytotoxic to all cell lines including primary mammary epithelial cells tested. The cytotoxic flavonoids are also able to inhibit Mitochondrial Outer Membrane Permeability while at the same time stimulate ATP levels whereas the non-cytotoxic flavonoids are not able to do this. We also show that both cytotoxic and non-cytotoxic flavonoids can transverse the cell membrane to enter MDA-MB-231 cells at different levels. Finally, all flavonoids regardless of their cytotoxicity were able to induce some form of cell cycle artest. We conclude that for flavonoids to be strongly cytotoxic, they must possess the 2,3-double bond in the C-ring and we believe the cytotoxicity occurs through mitochondrial poisoning in both cancer and normal cells.
机译:黄酮类化合物已显示出对癌细胞具有细胞毒性。但是,细胞毒性的机制尚未明确。以前已经报道过,HER2 / ERBB2,雌激素受体,孕激素受体和p53是类黄酮诱导乳腺癌细胞系细胞毒性所必需的。我们已经使用了一组乳腺癌细胞系来筛选十四种不同的类黄酮,这些细胞系已知包含这些信号传导途径并且也缺乏这些信号传导途径。比较所有类黄酮的细胞毒性可让我们确定细胞毒性和类黄酮之间是否存在结构-功能关系,以及细胞毒性是否需要特定的信号传导途径。我们显示几种类黄酮对所有细胞系均具有细胞毒性,包括所测试的原代乳腺上皮细胞。细胞毒性类黄酮还能够抑制线粒体外膜通透性,同时刺激ATP水平,而非细胞毒性类黄酮则不能。我们还显示,细胞毒性和非细胞毒性类黄酮都可以横穿细胞膜,以不同水平进入MDA-MB-231细胞。最后,所有黄酮类化合物,无论其细胞毒性如何,均能够诱导某种形式的细胞周期阿替丁。我们得出的结论是,类黄酮具有很强的细胞毒性,它们必须在C环中具有2,3-双键,并且我们认为细胞毒性是通过线粒体中毒在癌症和正常细胞中发生的。

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