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首页> 外文期刊>Nutrition and Cancer: An International Journal >Novel genistein derivatives induce cell death and cell cycle arrest through different mechanisms
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Novel genistein derivatives induce cell death and cell cycle arrest through different mechanisms

机译:新的Genistein衍生物通过不同的机制诱导细胞死亡和细胞周期捕获

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摘要

Genistein is a natural compound belonging to isoflavone family of secondary plant metabolites, characterized by pleiotropic biological activity. Here we present the results of a study on new analogs and polysaccharide complexes of genistein as potent antiproliferative and cell death-inducing agents. Most potent were 2 analogs (i.e., IFG-027 and IFG-043) and 2 complexes (i.e., SPG-G and XG-G), which had higher or similar antiproliferative activity in comparison to genistein. However, these 2 analogs decreased the number of cells in G2/M phase in contrast to genistein and SPG-G complex. Genistein analogs, IFG-027 and IFG-043, and also SPG-G complex decreased mitochondrial membrane potential and induced the externalization of phosphatidylserine to the extracellular membrane site, which indicates the induction of apoptosis. Interestingly, genistein and its analogs induced caspase 3-activation supporting apoptotic mechanism of cell death but SPG-G supported caspase 3-independent apoptosis. XG-G complex probably did not induce cell death through the apoptotic pathway, as we did not find the externalization of phosphatidylserine and activation of caspase-3. After the treatment of HL-60 cells with genistein, SPG-G and XG-G formation of acidic vesicular organelle (AVO) was detected. In contrast, in the cells that were treated with genistein analogs IFG-027 and IFG-043, AVO formation was not observed.
机译:Genistein是属于异黄酮家族的次生植物代谢物的天然化合物,其特征在于抗脂肪生物活性。在这里,我们介绍了Genistein的新类似物和多糖复合物的研究结果作为有效的抗增殖和细胞死亡诱导剂。大多数有效是2种类似物(即IFG-027和IFG-043)和2个配合物(即SPG-G和XG-G),其与Genistein相比具有更高或类似的抗增殖活性。然而,与Genistein和SPG-G复合物相比,这两种类似物降低了G2 / M相中的细胞数。 Genistein类似物,IFG-027和IFG-043,以及SPG-G复合物的线粒体膜电位降低,并诱导磷脂酰丝氨酸的外化到细胞外膜部位,这表明凋亡诱导。有趣的是,Genistein及其类似物诱导的Caspase 3-活化支持凋亡机制的细胞死亡,但SPG-G支持的Caspase 3无关的凋亡。 XG-G复合物可能没有通过凋亡途径诱导细胞死亡,因为我们没有发现磷脂酰丝氨酸的外化和Caspase-3的活化。检测到HL-60细胞的HL-60细胞后,检测到酸性脉冲细胞器(AVO)的SPG-G和XG-G形成。相反,在用Genistein类似物IFG-027和IFG-043处理的细胞中,未观察到AVO形成。

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    Ludwik Hirszfeld Institute of Immunology and Experimental Therapy Polish Academy of Science;

    Ludwik Hirszfeld Institute of Immunology and Experimental Therapy Polish Academy of Science;

    Ludwik Hirszfeld Institute of Immunology and Experimental Therapy Polish Academy of Science;

    Ludwik Hirszfeld Institute of Immunology and Experimental Therapy Polish Academy of Science;

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  • 正文语种 eng
  • 中图分类 肿瘤学;
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