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DNA damage repair pathways in cancer stem cells

机译:癌症干细胞中的DNA损伤修复途径

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The discovery of tumor-initiating cells endowed with stem-like features has added a further level of complexity to the pathobiology of neoplastic diseases. In the attempt of dissecting the functional properties of this uncommon cellular subpopulation, investigators are taking full advantage of a body of knowledge about adult stem cells, as the "cancer stem cell model" implies that tissue-resident stem cells are the target of the oncogenic process. It is emerging that a plethora of molecular mechanisms protect cancer stem cells (CSC) against chemotherapy- and radiotherapy-induced death stimuli. The ability of CSCs to survive stressful conditions is correlated, among others, with a multifaceted protection of genome integrity by a prompt activation of the DNA damage sensor and repair machinery. Nevertheless, many molecular-targeted agents directed against DNA repair effectors are in late preclinical or clinical development while the identification of predictive biomarkers of response coupled with the validation of robust assays for assessing biomarkers is paving the way for biology-driven clinical trials.
机译:具有干样特征的肿瘤起始细胞的发现为肿瘤性疾病的病理生物学进一步增加了复杂性。为了剖析这种罕见的细胞亚群的功能特性,研究人员正在充分利用有关成体干细胞的知识,因为“癌症干细胞模型”暗示组织驻留干细胞是致癌的目标。处理。越来越多的分子机制保护癌症干细胞(CSC)免受化学疗法和放射疗法引起的死亡刺激。通过迅速激活DNA损伤传感器和修复机制,CSC在压力条件下的生存能力与基因组完整性的多方面保护相关。尽管如此,许多针对DNA修复效应子的分子靶向药物仍处于临床前或临床后期,而识别预测的反应性生物标志物以及验证生物标志物的可靠方法的验证为生物学驱动的临床试验铺平了道路。

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