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5-Iodo-4-thio-2′-Deoxyuridine as a Sensitizer of X-ray Induced Cancer Cell Killing

机译:5-Iodo-4-ThiO-2'-脱氧尿苷作为X射线诱导的癌细胞杀伤的敏化剂

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摘要

Nucleosides, especially pyrimidines modified in the C5-position, can act as radiosensitizers via a mechanism that involves their enzymatic triphosphorylation, incorporation into DNA, and a subsequent dissociative electron attachment (DEA) process. In this paper, we report 5-iodo-4-thio-2′-deoxyuridine (ISdU) as a compound that can effectively lead to ionizing radiation (IR)-induced cellular death, which is proven by a clonogenic assay. The test revealed that the survival of cells, pre-treated with 10 or 100 µM solution of ISdU and exposed to 0.5 Gy of IR, was reduced from 78.4% (for non-treated culture) to 67.7% and to 59.8%, respectively. For a somewhat higher dose of 1 Gy, the surviving fraction was reduced from 68.2% to 54.9% and to 40.8% for incubation with 10 or 100 µM ISdU, respectively. The cytometric analysis of histone H2A.X phosphorylation showed that the radiosensitizing effect of ISdU was associated, at least in part, with the formation of double-strand breaks. Moreover, the cytotoxic test against the MCF-7 breast cancer cell line and human dermal fibroblasts (HDFa line) confirmed low cytotoxic activity of ISdU. Based on the results of steady state radiolysis of ISdU with a dose of 140 Gy and quantum chemical calculations explaining the origin of the MS detected radioproducts, the molecular mechanism of sensitization by ISdU was proposed. In conclusion, we found ISdU to be a potential radiosensitizer that could improve anticancer radiotherapy.
机译:核苷,尤其是嘧啶在C5位修饰,可以作为通过涉及其酶活三磷酸化,掺入DNA的机构,和随后的离解性电子附着(DEA)过程放射增敏剂。在本文中,我们报道了5-碘-4-硫代-2'-脱氧尿苷(ISdU)作为化合物,可以有效地导致电离辐射(IR)诱导的细胞死亡,这是由一个克隆形成实验证实。该试验显示,细胞的存活率,与ISdU的10或100μM溶液分别预处理并暴露于IR的0.5戈瑞,从78.4%减少(对于非处理培养物),以67.7%和59.8%。对于一个稍高的剂量为1戈瑞的,幸存的级分从68.2%降低到54.9%,并孵育40.8%具有10个或100μMISdU,分别。组蛋白磷酸化H2A.X的流式细胞术分析表明,ISdU的放射增敏效果相关联,至少部分地与双链断裂的形成。此外,针对MCF-7乳腺癌细胞系和人皮肤成纤维细胞(型hdfA线)细胞毒性试验证实ISdU的低细胞毒性活性。基于ISdU的稳态的辐140戈瑞剂量和说明MS的原点检测到radioproducts量子化学计算的结果,由ISdU致敏的分子机制中提出的。总之,我们发现ISdU是,可以提高抗癌放射治疗放射增敏剂的潜力。

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