首页> 外文期刊>Frontiers in Pharmacology >Targeting DNA Repair through Podophyllotoxin and Rutin Formulation in Hematopoietic Radioprotection: An in Silico, in Vitro, and in Vivo Study
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Targeting DNA Repair through Podophyllotoxin and Rutin Formulation in Hematopoietic Radioprotection: An in Silico, in Vitro, and in Vivo Study

机译:通过鬼臼毒素和芦丁制剂靶向DNA修复在造血放射防护中的作用: in silico,体外和体内研究

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Drug discovery field has tremendously progressed during last few decades, however, an effective radiation countermeasure agent for the safe administration to the victims of radiation exposure is still unavailable. This multi-model study is aimed at elucidating the mechanistic aspects of a novel podophyllotoxin and rutin combination (henceforth referred as G-003M) in the hematopoietic radioprotection and its involvement in the DNA damage and repair signaling pathways. Using in silico study, we identified the binding sites and structural components of G-003M and validated in vitro . We further studied various in vivo endpoints related to the DNA repair and cell death pathways in mice pre-administered with G-003M, irradiated and subsequently euthanized to collect blood and bone marrow cells. In silico study showed the binding of podophyllotoxin to β-tubulin and presence of a functional hydroxyl group in the rutin, suggested their involvement in G2/M arrest and the free radical scavenging respectively. This experimentation was further validated through i n vitro studies. In vivo mice studies confirmed that G-003M pre-administration attenuated DNA damage and enhanced repair after whole body exposure. We further noticed a decrease in the levels of γH2AX, p53BP1, and ATM kinase and an increase in the levels of DNA pk, Ku 80, Ligase IV, Mre 11, Rad 50 and NBS 1 in the blood and bone marrow cells of the G-003M pre-administered and irradiated mice. We noticed an overall increase in the pro-survival factors in the G-003M pre-treated and irradiated groups establishing the radioprotective efficacy of this formulation. The lead obtained from this study will certainly help in developing this formulation as a safe and effective radioprotector which could be used for humans against any planned or emergency exposure of radiation.
机译:在过去的几十年中,药物发现领域取得了长足的进步,但是,仍然没有一种有效的放射对策剂可以安全地管理受辐射照射的受害者。这项多模型研究旨在阐明在造血放射防护中新型鬼臼毒素和芦丁组合(以下简称G-003M)的机制及其在DNA损伤和修复信号通路中的作用。使用计算机研究,我们确定了G-003M的结合位点和结构成分,并在体外进行了验证。我们进一步研究了与预先给予G-003M,照射并随后安乐死以收集血液和骨髓细胞的小鼠中的DNA修复和细胞死亡途径有关的各种体内终点。在计算机研究中,鬼臼毒素与β-微管蛋白的结合以及芦丁中功能羟基的存在,表明它们分别参与了G2 / M阻滞和自由基清除。通过体外研究进一步验证了该实验。体内小鼠研究证实,在全身暴露后,G-003M的预给药可减轻DNA损伤并增强修复作用。我们还注意到G的血液和骨髓细胞中γH2AX,p53BP1和ATM激酶的水平降低,而DNA pk,Ku 80,Ligase IV,Mre 11,Rad 50和NBS 1的水平升高-003M预先给药和辐照的小鼠。我们注意到在G-003M预处理组和辐照组中,促存活因子的总体增加,确立了该制剂的辐射防护功效。从这项研究中获得的铅无疑将有助于开发这种制剂,使其成为一种安全有效的防辐射剂,可用于人体,防止任何计划的或紧急的辐射暴露。

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