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Structural Properties of Polyphenols Causing Cell Cycle Arrest at G1 Phase in HCT116 Human Colorectal Cancer Cell Lines

机译:HCT116人结肠直肠癌细胞系中G1期细胞周期阻滞的多酚结构特性

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Plant-derived polyphenols are being tested as chemopreventive agents; some polyphenols arrest the cell cycle at G1 phase, whereas others inhibit cell cycle proliferation at G2/M phase. Therefore, polyphenols have been proposed to inhibit cell cycle progression at different phases via distinct mechanisms. Indeed, our previous studies showed that small structural differences in polyphenols cause large differences in their biological activities; however, the details of the structural properties causing G1 cell cycle arrest remain unknown. In this study, we prepared 27 polyphenols, including eight different scaffolds, to gain insight into the structural conditions that arrest the cell cycle at G1 phase in a quantitative structure–activity relationship study. We used cell cycle profiles to determine the biophores responsible for G1 cell cycle arrest and believe that the biophores identified in this study will help design polyphenols that cause G1 cell cycle arrest.
机译:植物来源的多酚正在作为化学预防剂进行测试;一些多酚在G1期阻止细胞周期,而其他多酚则在G2 / M期抑制细胞周期增殖。因此,已经提出了多酚通过不同的机制抑制不同阶段的细胞周期进程。确实,我们以前的研究表明,多酚的微小结构差异会导致其生物活性产生较大差异;但是,导致G1细胞周期停滞的结构特性的细节仍然未知。在这项研究中,我们制备了27种多酚,包括8种不同的支架,以便在定量结构-活性关系研究中深入了解阻止G1期细胞周期的结构条件。我们使用细胞周期概况来确定导致G1细胞周期停滞的生物体,并相信在这项研究中确定的生物体将有助于设计导致G1细胞周期停滞的多酚。

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