Ono Misaki, Ejima Kaoru, Higuchi Takako, Takeshima Mikako, Wakimoto Rei, Nakano Shuji
a Graduate School of Health and Nutritional Sciences, Nakamura Gakuen University , Fukuoka , Fukuoka , Japan.
Nutr Cancer. 2017 Nov-Dec;69(8):1300-1307. doi: 10.1080/01635581.2017.1367945. Epub 2017 Nov 2.
Anticancer activities of soy isoflavones, such as genistein and equol, a bioactive metabolite of daidzein, have been extensively studied because of possible involvement in the prevention of breast cancer. However, their interactions still remain unclear. We investigated here whether cytotoxic activity of genistein was enhanced by equol, using estrogen receptor positive MCF-7, HER2-positive SK-BR-3, and triple-negative MDA-MB-468 cell lines. Although cytotoxicity of genistein did not significantly differ between three subtypes of breast cancer cells, cytotoxic activities of genistein were significantly enhanced in combination with 50 μM equol in MCF-7 cells, but not in SK-BR-3 and MDA-MB-468 cells. In fluorescence activated cell sorting (FACS) analyses, MCF-7 cells were arrested at the G2/M by genistein but at G1/S by equol. Combination treatment arrested cells at G2/M but abolished equol-induced G1 block, indicating an antagonistic activity of genistein against equol in cell-cycle progression. Although apoptosis was not so evident with genistein alone, the combination made a drastic induction of apoptosis, accompanied by the increase of Bax/Bcl-xL expression ratio, without affecting the activities of Akt and mTOR. Taken together, these data suggest that enhancement of genistein activity by equol would be mainly mediated by augmented induction of apoptosis rather than arrest or delay of the cell cycle.
大豆异黄酮如染料木黄酮以及大豆苷元的生物活性代谢产物雌马酚的抗癌活性,因其可能参与乳腺癌预防而得到广泛研究。然而,它们之间的相互作用仍不清楚。我们在此使用雌激素受体阳性的MCF-7细胞系、HER2阳性的SK-BR-3细胞系和三阴性MDA-MB-468细胞系,研究雌马酚是否能增强染料木黄酮的细胞毒性活性。尽管染料木黄酮在三种亚型乳腺癌细胞中的细胞毒性没有显著差异,但在MCF-7细胞中,染料木黄酮与50μM雌马酚联合使用时,其细胞毒性活性显著增强,而在SK-BR-3和MDA-MB-468细胞中则没有增强。在荧光激活细胞分选(FACS)分析中,MCF-7细胞被染料木黄酮阻滞在G2/M期,但被雌马酚阻滞在G1/S期。联合处理使细胞阻滞在G2/M期,但消除了雌马酚诱导的G1期阻滞,这表明在细胞周期进程中染料木黄酮对雌马酚具有拮抗活性。虽然单独使用染料木黄酮时凋亡并不明显,但联合使用则显著诱导了凋亡,同时伴随着Bax/Bcl-xL表达比值的增加,且不影响Akt和mTOR的活性。综上所述,这些数据表明,雌马酚增强染料木黄酮活性主要是通过增强凋亡诱导,而非细胞周期的阻滞或延迟来介导的。