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首页> 外文期刊>Journal of cellular biochemistry. >Lei, J.a , Zhou, C.a , Hu, H.b , Hu, L.b , Zhao, M.c , Yang, Y.a , Chuai, Y.a , Ni, J.a , Cai, J.a Mangiferin aglycone attenuates radiation-induced damage on human intestinal epithelial cells
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Lei, J.a , Zhou, C.a , Hu, H.b , Hu, L.b , Zhao, M.c , Yang, Y.a , Chuai, Y.a , Ni, J.a , Cai, J.a Mangiferin aglycone attenuates radiation-induced damage on human intestinal epithelial cells

机译:雷,J.a,周,C.a,胡,H.b,胡,L.b,赵,M.c,杨,Y.a,Chu,Y.a,倪,J.a,蔡,J.a芒果苷配基糖苷减弱了辐射诱导的对人肠上皮细胞的损害

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摘要

Recent studies suggest that mangiferin aglycone (norathyriol) has great potential as a novel radioprotector without any known toxic side effects. In this study, we assessed the protective effects of mangiferin aglycone against radiation-induced injuries on normal human intestinal epithelial cells (HIECs), while using mangiferin as a reference compound. The in vitro experiments showed that pretreatment of either mangiferin aglycone or mangiferin could inhibit cytotoxic effects of ionizing irradiation (IR) on HIECs. Cellular changes were estimated by measuring cell viability, clonogenic surviving rate, and apoptotic rate. Compared to mangiferin, we found mangiferin aglycone had greater radioprotective effects of mangiferin aglycone on HIECs. It has been demonstrated that the cytotoxicity of ionizing radiation relates to its capacity to induce DNA damage. In view of this, we monitored DNA double-strand breaks (DSBs) using γH2AX foci formation to test whether mangiferin aglycone and mangiferin could modulate genotoxic effects of radiation. It shows that mangiferin aglycone could eliminate 46.8% of the total DSBs of the cells exposed to 2Gy IR, which is significantly better than mangiferin. Complementing earlier results from our group, it appears possible to conclude that mangiferin aglycone presents potential useful effects on IR-induced damage and may be a better radioprotective agent than mangiferin therapeutically. J. Cell. Biochem. 113: 2633-2642, 2012.
机译:最近的研究表明,芒果苷元(norathyriol)作为一种新型的辐射防护剂具有巨大的潜力,并且没有任何已知的毒副作用。在这项研究中,我们使用芒果苷作为参考化合物,评估了芒果苷元苷元对辐射损伤对正常人肠上皮细胞(HIECs)的保护作用。体外实验表明,芒果苷元或芒果苷的预处理均可抑制电离辐射(IR)对HIEC的细胞毒性作用。通过测量细胞活力,克隆形成存活率和凋亡率来估计细胞变化。与芒果苷相比,我们发现芒果苷元具有更高的辐射抑制作用。已证明电离辐射的细胞毒性与其诱导DNA损伤的能力有关。有鉴于此,我们使用γH2AX灶的形成来监测DNA双链断裂(DSB),以测试芒果苷元和芒果苷是否可以调节辐射的遗传毒性。结果表明,芒果苷元可以消除2Gy IR细胞的总DSB的46.8%,明显优于芒果苷。与我们小组的早期结果相辅相成,似乎有可能得出结论,芒果苷配基糖苷对IR诱导的损伤具有潜在的有用作用,并且可能比芒果苷在治疗上更好。 J.细胞。生化。 113:2633-2642,2012。

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