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靶向 DNA 双链断裂信号转导和修复:癌症治疗的最新进展。

Targeting DNA double-strand break signalling and repair: recent advances in cancer therapy.

机构信息

Institute of Molecular Cancer Research, University of Zurich, Switzerland.

出版信息

Swiss Med Wkly. 2013 Jul 29;143:w13837. doi: 10.4414/smw.2013.13837. eCollection 2013.

Abstract

Genomic instability, a hallmark of almost all human cancers, drives both carcinogenesis and resistance to therapeutic interventions. Pivotal to the ability of a cell to maintain genome integrity are mechanisms that signal and repair deoxyribonucleic acid (DNA) double-strand breaks (DSBs), one of the most deleterious lesions induced by ionising radiation and various DNA-damaging chemicals. On the other hand, many current therapeutic regimens that effectively kill cancer cells are based on the induction of excessive DSBs. However, these drugs often lack selectivity for tumour cells, which results in severe side effects for the patients, thus compromising their therapeutic potential. Therefore, the development of novel tumour-specific treatment strategies is required. Unlike normal cells, however, cancer cells are often characterised by abnormalities in the DNA damage response including defects in cell cycle checkpoints and/or DNA repair, rendering them particularly sensitive to the induction of DSBs. Therefore, new anticancer agents designed to exploit these vulnerabilities are becoming promising drugs for enhancing the specificity and efficacy of future cancer therapies. Here, we summarise the latest preclinical and clinical developments in cancer therapy based on the current knowledge of DSB signalling and repair, with a special focus on the combination of small molecule inhibitors with synthetic lethality approaches.

摘要

基因组不稳定性是几乎所有人类癌症的标志,它既促进了癌症的发生,也促进了对治疗干预的耐药性。对于细胞维持基因组完整性的能力至关重要的是信号转导和修复脱氧核糖核酸(DNA)双链断裂(DSB)的机制,DSB 是电离辐射和各种 DNA 损伤化学物质诱导的最具危害性的损伤之一。另一方面,许多有效杀死癌细胞的当前治疗方案都是基于诱导过度 DSB 的产生。然而,这些药物往往缺乏对肿瘤细胞的选择性,这会给患者带来严重的副作用,从而影响其治疗潜力。因此,需要开发新的肿瘤特异性治疗策略。然而,与正常细胞不同,癌细胞通常具有 DNA 损伤反应异常,包括细胞周期检查点和/或 DNA 修复缺陷,这使它们对 DSB 的诱导特别敏感。因此,新的抗癌药物旨在利用这些脆弱性,成为提高未来癌症治疗特异性和疗效的有前途的药物。在这里,我们根据目前对 DSB 信号转导和修复的了解,总结了基于癌症治疗的最新临床前和临床进展,特别关注小分子抑制剂与合成致死性方法的结合。

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