PARP1抑制剂耐药机制及其对癌症治疗的意义。

NAR Cancer Pub Date : 2022-12-01 DOI:10.1093/narcan/zcac042
Lindsey M Jackson, George-Lucian Moldovan
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引用次数: 7

摘要

PARP1和BRCA联合缺失导致的合成致死率的发现彻底改变了DNA修复缺陷癌症的治疗。随着PARP抑制剂的开发,显示BRCA1或BRCA2种系或体细胞突变的患者获得了一种新的治疗策略。然而,很大一部分患者对PARP抑制剂没有反应。此外,许多有反应的人最终会产生抗药性。因此,对抗PARP抑制剂的新生和获得性耐药仍然是实现患者持久反应的障碍。本文综述了PARP抑制剂耐药的一些关键机制,包括同源重组的恢复、复制叉的稳定和单链DNA间隙积累的抑制,以及克服PARP抑制剂耐药的新方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Mechanisms of PARP1 inhibitor resistance and their implications for cancer treatment.

The discovery of synthetic lethality as a result of the combined loss of PARP1 and BRCA has revolutionized the treatment of DNA repair-deficient cancers. With the development of PARP inhibitors, patients displaying germline or somatic mutations in BRCA1 or BRCA2 were presented with a novel therapeutic strategy. However, a large subset of patients do not respond to PARP inhibitors. Furthermore, many of those who do respond eventually acquire resistance. As such, combating de novo and acquired resistance to PARP inhibitors remains an obstacle in achieving durable responses in patients. In this review, we touch on some of the key mechanisms of PARP inhibitor resistance, including restoration of homologous recombination, replication fork stabilization and suppression of single-stranded DNA gap accumulation, as well as address novel approaches for overcoming PARP inhibitor resistance.

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