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Determinants and predictive factors of tumour radiosensitivity

机译:肿瘤放射敏感性的决定因素和预测因素

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Many predictive factors of tumor radiosensitivity have been described. Number of clonogenic cells, proliferation rate, hypoxia and intrinsic radiosensitivity are usually considered as the main parameters of tumor control. Intrinsic radiosensitivity is correlated in a first approach to the ability of the cell to detect and repair DNA damages, and so integrity of the different pathways involved in this function: PARP-1, XRCC1, ATM, p53, MRN complex or BRCA1... Genetic polymorphisms of some of these genes, found in normal lymphocytes, have been correlated to late toxicity of normal tissues. But, in tumors, because of the difficulty to obtain samplings and heterogeneity, accurate molecular analysis is not possible in many cases, and no valuable test of radiosensitivity exist at this moment. For example, TP53 gene has been evaluated in many studies and results regarding its potential as a predictive factor of tumor sensitivity are conflicting. Surviving fraction at 2Gy (SF2) allowed a global evaluation of sensitivity, but the obtention of this parameter often takes a long time and failed in 20 to 40%. Evaluation of double-strand break repair capacity by immunochemistry quantification of phosphorylated forms of ATM, H2AX or MRE11 is an interesting topic. However, discovery of tumor stem cells in a number of epithelial tumors could revolutionize the understanding of radiosensitivity. Combination of genomic and functional techniques are probably essential to better predict this parameter.
机译:已经描述了肿瘤放射敏感性的许多预测因素。克隆细胞的数量,增殖速度,缺氧和固有放射敏感性通常被认为是控制肿瘤的主要参数。内在放射敏感性与细胞检测和修复DNA损伤的能力的第一种方法相关,因此与此功能涉及的不同途径的完整性有关:PARP-1,XRCC1,ATM,p53,MRN复合物或BRCA1 ...在正常淋巴细胞中发现的某些基因的遗传多态性与正常组织的后期毒性有关。但是,在肿瘤中,由于难以获得样本和异质性,因此在许多情况下无法进行准确的分子分析,并且目前还没有有价值的放射敏感性测试。例如,已经在许多研究中评估了TP53基因,关于其作为肿瘤敏感性预测因子的潜力的结果相互矛盾。 2Gy(SF2)的存活分数允许对敏感性进行整体评估,但是获得该参数通常需要花费很长时间,并且失败率高达20%至40%。通过免疫化学定量ATM,H2AX或MRE11的磷酸化形式来评估双链断裂修复能力是一个有趣的话题。然而,在许多上皮肿瘤中发现肿瘤干细胞可能会彻底改变对放射敏感性的理解。基因组学和功能技术的结合对于更好地预测该参数可能是必不可少的。

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