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The presumed MTH1-inhibitor TH588 sensitizes colorectal carcinoma cells to ionizing radiation in hypoxia

机译:假定的MTH1抑制剂TH588使结直肠癌细胞敏感到缺氧中的电离辐射

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The nudix family member enzyme MutT homologue-1 (MTH1) hydrolyses the oxidized nucleotides 8-oxo-dGTP and 2-hydroxy-dATP and thus prevents the incorporation of damaged nucleotides into nuclear and mitochondrial DNA. Therefore MTH1 was proposed to protect cancer cells from oxidative DNA lesions and subsequent cell death. We investigated whether the bona fide MTH1 inhibitor TH588 affects responses of cultured colorectal tumor cells to ionizing radiation (IR) in normoxia and in moderate or severe hypoxia. TH588 was tested in cell viability and survival assays (tetrazolium dye (MTT), propidium iodide staining, caspase-3 activity, and colony formation assays (CFA)) in colorectal carcinoma cells (HCT116 and SW480) in combination with IR in normoxia and in hypoxia. Additionally, MTH1 was targeted by lentiviral shRNA expression. Human umbilical vein endothelial cells (HUVEC) were assessed in MTT assays. In all cell lines tested, TH588 dose-dependently impaired cell survival. In CFAs, TH588 and IR effects on carcinoma cells were additive in normoxia and in hypoxia. Using 3 different shRNAs, the lentiviral approach was detrimental to SW480, but not to HCT116. TH588 has cytotoxic effects on transformed and untransformed cells and synergizes with IR in normoxia and in hypoxia. TH588 toxicity is not fully explained by MTH1 inhibition as HCT116 were unaffected by lentiviral suppression of MTH1 expression. TH588 should be explored further because it has radiosensitizing effects in hypoxia.
机译:Nudix家族成员酶Mutt同源物-1(MTH1)水解氧化核苷酸8-氧代-DGTP和2-羟基 - DATP,并因此防止将受损的核苷酸掺入核和线粒体DNA。因此,提出了MTH1以保护来自氧化DNA病变和随后的细胞死亡的癌细胞。我们调查了BOA FIDE MTH1抑制剂TH588是否影响培养的结肠直肠肿瘤细胞对常氧中的辐射(IR)的反应和中度或严重缺氧。在细胞活力和存活测定中测试(四唑胺染料(MTT),碘化丙啶染色,Caspase-3活性和核心形成测定(CFA)中的核心形成测定(CFA),与IR在常氧和IN中联合缺氧。另外,MTH1被慢病毒ShRNA表达靶向。在MTT测定中评估人脐静脉内皮细胞(HUVEC)。在所有测试的细胞系中,TH588剂量依赖性受损的细胞存活。在CFAS中,TH588和IR对癌细胞的影响是常氧和缺氧中的添加剂。使用3种不同的SHRNA,慢病毒方法对SW480有害,但不为HCT116。 TH588对转化和未转化的细胞具有细胞毒性作用,并在常氧和缺氧中与IR促进IR。由于HCT116不受MTH1表达的慢病毒抑制,MTH1抑制不完全解释TH588毒性。应进一步探索TH588,因为它具有缺氧的辐射抗射效应。

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