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Quantitative analysis of the effects of iododeoxyuridine and ionising radiation treatment on the cell cycle dynamics of DNA mismatch repair deficient human colorectal cancer cells

机译:碘脱氧尿苷和电离辐射处理对DNA错配修复缺陷人结肠直肠癌细胞的细胞周期动力学影响的定量分析

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DNA mismatch repair (MMR) is involved in processing DNA damage following treatment with ionising radiation (IR) and various classes of chemotherapy drugs including iododeoxyuridine (IUdR), a known radiosensitiser. In this study, the authors have developed asynchronous probabilistic cell cycle models to assess the isolated effects of IUdR and IR and the combined effects of IUdR + IR treatments on MMR damage processing. The authors used both synchronous and asynchronous MMR-proficient/MMR-deficient cell populations and followed treated cells for up to two cell cycle times. They have observed and quantified differential cell cycle responses to MMR damage processing following IR and IUdR + IR treatments, principally in the duration of both G1 and G2/M cell cycle phases. The models presented in this work form the foundation for the development of an approach to maximise the therapeutic index for IR and IUdR + IR treatments in MMR-deficient (damage tolerant) cancers.
机译:DNA错配修复(MMR)参与处理电离辐射(IR)和各种化学疗法药物(包括碘代脱氧尿苷(IUdR),一种已知的放射增敏剂)后的DNA损伤。在这项研究中,作者开发了异步概率细胞周期模型,以评估IUdR和IR的孤立作用以及IUdR + IR治疗对MMR损伤处理的综合作用。作者使用同步和异步MMR精通/ MMR缺陷的细胞群,并跟踪经过处理的细胞长达两个细胞周期时间。他们观察到并量化了IR和IUdR + IR处理后对MMR损伤过程的不同细胞周期反应,主要是在G1和G2 / M细胞周期阶段的持续时间中。这项工作中介绍的模型为开发一种方法的基础,该方法可在MMR缺陷(耐受损伤)的癌症中最大化IR和IUdR + IR治疗的治疗指数。

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