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首页> 外文期刊>Journal of radiation research >Design and evaluation of a novel flavonoid-based radioprotective agent utilizing monoglucosyl rutin
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Design and evaluation of a novel flavonoid-based radioprotective agent utilizing monoglucosyl rutin

机译:利用单葡糖基芦丁的新型基于类黄酮的辐射防护剂的设计和评价

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In this study, three novel flavonoid composite materials, created by combining an aglycone [quercetin (QUE), hesperetin (HES) or naringenin (NAR)] with monoglucosyl rutin (MGR), were designed to test for improved radioprotectivity compared with that provided by administration of MGR alone. Aglycone in the MGR-composite state was highly soluble in water, compared with aglycone alone dissolved in dimethyl sulfoxide or distilled water. The antioxidant activity of the three flavonoid composites was as high as that of MGR only. Next, the cytotoxicity test after 30 min treatment of an MGR composite showed a clear reduction in cell viability and suggested that a rapid introduction of aglycone into cells had taken place. In addition, QUE/MGR and HES/MGR composites strongly scavenged intracellular reactive oxygen species (ROS) induced by X-ray irradiation as well as MGR alone did. However, in the colony-formation assay using irradiated Chinese hamster ovary (CHO) cells, the HES/MGR composite showed a stronger radioprotective effect than MGR alone did, but the QUE/MGR composite showed no additional protective effect compared with the control. Furthermore, it was revealed that QUE and QUE/MGR composite treatment had the effect of reducing the glutathione (GSH) content in cells, and that QUE showed a stronger inhibition of PARP activity compared that of HES and NAR. Our data demonstrated that when designing a flavonoid composite as a radioprotective agent, it was necessary to select an appropriate aglycone, considering not only its antioxidant ability but also its inhibitory effect on cell recovery or DNA repair after radiation injury.
机译:在这项研究中,通过将糖苷配基[槲皮素(QUE),橙皮素(HES)或柚皮素(NAR)]与单葡糖基芦丁(MGR)结合制成的三种新型类黄酮复合材料被设计用来测试与仅管理MGR。与仅溶于二甲亚砜或蒸馏水中的糖苷配基相比,MGR复合状态的糖苷配基在水中的溶解度高。三种类黄酮复合材料的抗氧化活性仅与MGR一样高。接下来,MGR复合材料处理30分钟后的细胞毒性测试表明细胞活力明显降低,这表明糖苷配基已迅速引入细胞。此外,QUE / MGR和HES / MGR复合材料可强烈清除X射线辐照以及单独的MGR诱导的细胞内活性氧(ROS)。但是,在使用辐射的中国仓鼠卵巢(CHO)细胞的菌落形成试验中,HES / MGR复合材料显示出比单独的MGR更强的放射防护作用,但是QUE / MGR复合材料与对照相比没有附加的保护作用。此外,揭示了QUE和QUE / MGR复合处理具有降低细胞中谷胱甘肽(GSH)含量的作用,并且与HES和NAR相比,QUE对PARP活性的抑制作用更强。我们的数据表明,当设计类黄酮复合物作为放射防护剂时,不仅要考虑其抗氧化能力,还要考虑其对放射损伤后细胞恢复或DNA修复的抑制作用,因此必须选择合适的糖苷配基。

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