1 Biosciences Institute, São Paulo State University (UNESP) , Rio Claro, São Paulo, Brazil .
J Med Food. 2014 Feb;17(2):218-25. doi: 10.1089/jmf.2013.0067. Epub 2013 Dec 10.
Several studies have demonstrated that a balanced diet can contribute to better human health. For this reason, soy-based food and pure isoflavones (pills) are one of the most consumed. The association of this consumption and lower risks of chronic diseases and cancer is well established for the Asian population and has been attracting the attention of people worldwide, especially women at menopause who seek to alleviate the symptoms associated with the lack of estrogen. Despite positive epidemiological data, concerns still exist because of conflicting results found in scientific literature with relation to the role of isoflavones in breast and hormone-related cancers. The aim of our study was to investigate the cytotoxicity, induction of apoptosis, and changes in apoptosis-related genes of maximal physiological serum levels of the isoflavone genistein (Gen) in MCF-7 tumoral cells and in HB4a non-tumoral cells. In addition, induction of cell cycle arrest was also investigated. Only supraphysiological levels of Gen (50 and 100 μM) were cytotoxic to these cell lines. Concentrations of 10 and 25 μM did not induce apoptosis and significant changes in expression of the studied genes. Positive results were found only in cell cycle analysis: G0/G1 delay of MCF-7 cells in both concentrations of Gen and at 25 μM in HB4a cells. It is the first study investigating effects of Gen in the HB4a cell line. Thus, despite the lack of apoptosis induction (generally found with high concentrations), Gen at physiologically relevant serum levels still exerts chemopreventive effects through the modulation of cell cycle.
多项研究表明,均衡的饮食有助于改善人类健康。因此,大豆食品和纯异黄酮(药丸)是最受欢迎的食品之一。这种消费与亚洲人群慢性病和癌症风险降低的关联已得到充分证实,并且引起了全世界人们的关注,尤其是绝经后试图缓解因雌激素缺乏而引起的症状的女性。尽管有积极的流行病学数据,但由于科学文献中关于异黄酮在乳腺癌和激素相关癌症中的作用的结果相互矛盾,人们仍然存在担忧。我们的研究旨在研究大豆异黄酮染料木黄酮(Gen)在 MCF-7 肿瘤细胞和 HB4a 非肿瘤细胞中的最大生理血清水平的细胞毒性、诱导细胞凋亡和凋亡相关基因变化,以及诱导细胞周期停滞的作用。只有超生理水平的 Gen(50 和 100μM)对这些细胞系具有细胞毒性。浓度为 10 和 25μM 不会诱导细胞凋亡和研究基因表达的显著变化。仅在细胞周期分析中发现了阳性结果:MCF-7 细胞中 G0/G1 期延迟,两种浓度的 Gen 和 HB4a 细胞中 25μM 的 Gen。这是首次研究 Gen 对 HB4a 细胞系的影响。因此,尽管没有诱导细胞凋亡(通常在高浓度下发现),但 Gen 在生理相关的血清水平仍通过调节细胞周期发挥化学预防作用。