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首页> 外文期刊>Daru Journal of pharmaceutical sciences. >Genistein abrogates G2 arrest induced by curcumin in p53 deficient T47D cells
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Genistein abrogates G2 arrest induced by curcumin in p53 deficient T47D cells

机译:金雀异黄素消除了姜黄素在p53缺陷T47D细胞中诱导的G2阻滞

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Background The high cost and low level of cancer survival urge the finding of new drugs having better mechanisms. There is a high trend of patients to be “back to nature” and use natural products as an alternative way to cure cancer. The fact is that some of available anticancer drugs are originated from plants, such as taxane, vincristine, vinblastine, pacitaxel. Curcumin (diferuloylmethane), a dietary pigment present in Curcuma longa rizhome is reported to induce cell cycle arrest in some cell lines. Other study reported that genistein isolated from Glycine max seed inhibited phosphorylation of cdk1, gene involved during G2/M transition and thus could function as G2 checkpoint abrogator. The inhibition of cdk1 phosphorylation is one of alternative strategy which could selectively kill cancer cells and potentially be combined with DNA damaging agent such as curcumin. Methods T47D cell line was treated with different concentrations of curcumin and genistein, alone or in combination; added together or with interval time. Flow Cytometry and MTT assay were used to evaluate cell cycle distribution and viability, respectively. The presence of apoptotic cells was determined using acridine orange-ethidium bromide staining. Results In this study curcumin induced G2 arrest on p53 deficient T47D cells at the concentration of 10?μM. Increasing concentration up to 30?μM increased the number of cell death. Whilst genistein alone at low concentration (≤10?μM) induced cell proliferation, addition of genistein (20?μM) 16?h after curcumin resulted in more cell death (89%), 34% higher than that administered at the same time (56%). The combination treatment resulted in apoptotic cell death. Combining curcumin with high dose of genistein (50?μM) induced necrotic cells. Conclusions Genistein increased the death of curcumin treated T47D cells. Appropriate timing of administration and concentration of genistein determine the outcome of treatment and this method could potentially be developed as an alternative strategy for treatment of p53 defective cancer cells.
机译:背景技术癌症生存的高成本和低水平促使人们寻找具有更好机理的新药。患者趋于“回归自然”并使用天然产物作为治疗癌症的替代方法的趋势很高。事实是,一些可用的抗癌药都来自植物,例如紫杉烷,长春新碱,长春碱,紫杉醇。据报道姜黄素(二氟甲酰甲烷),一种存在于姜黄中的饮食色素,可诱导某些细胞系的细胞周期停滞。其他研究报道,从大豆最大种子中分离出的染料木黄酮抑制了cdk1的磷酸化,该基因在G2 / M过渡过程中涉及,因此可以充当G2检查点的废除者。抑制cdk1磷酸化是另一种可选择性杀死癌细胞并可能与DNA破坏剂(如姜黄素)组合的策略之一。方法单独或联合用不同浓度的姜黄素和染料木黄酮处理T47D细胞系;加在一起或与间隔时间加在一起。流式细胞术和MTT测定分别用于评估细胞周期分布和生存力。使用a啶橙-溴化乙锭染色确定凋亡细胞的存在。结果在这项研究中,姜黄素以10?μM的浓度诱导了p53缺陷T47D细胞的G2阻滞。将浓度增加到30?μM会增加细胞死亡的数量。尽管低浓度(≤10µM)的染料木黄酮单独诱导细胞增殖,姜黄素后16?h加入染料木黄酮(20?μM)导致更多的细胞死亡(89%),比同时给药高34%( 56%)。联合治疗导致凋亡细胞死亡。将姜黄素与高剂量的染料木黄酮(50?μM)结合诱导坏死细胞。结论Genistein可增加姜黄素处理的T47D细胞的死亡。适当的给药时间和染料木黄酮的浓度决定了治疗的结果,该方法有可能发展为治疗p53缺陷癌细胞的替代策略。

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