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合成致死性抗癌疗法的发展

Development of synthetic lethality anticancer therapeutics.

作者信息

Fang Bingliang

机构信息

Department of Thoracic and Cardiovascular Surgery, Unit 1489, The University of Texas MD Anderson Cancer Center , 1515 Holcombe Boulevard, Houston, Texas 77030, United States.

出版信息

J Med Chem. 2014 Oct 9;57(19):7859-73. doi: 10.1021/jm500415t. Epub 2014 Jun 13.

Abstract

The concept of synthetic lethality (the creation of a lethal phenotype from the combined effects of mutations in two or more genes) has recently been exploited in various efforts to develop new genotype-selective anticancer therapeutics. These efforts include screening for novel anticancer agents, identifying novel therapeutic targets, characterizing mechanisms of resistance to targeted therapy, and improving efficacies through the rational design of combination therapy. This review discusses recent developments in synthetic lethality anticancer therapeutics, including poly ADP-ribose polymerase inhibitors for BRCA1- and BRCA2-mutant cancers, checkpoint inhibitors for p53 mutant cancers, and small molecule agents targeting RAS gene mutant cancers. Because cancers are caused by mutations in multiple genes and abnormalities in multiple signaling pathways, synthetic lethality for a specific tumor suppressor gene or oncogene is likely cell context-dependent. Delineation of the mechanisms underlying synthetic lethality and identification of treatment response biomarkers will be critical for the success of synthetic lethality anticancer therapy.

摘要

合成致死性(即两个或更多基因的突变共同作用产生致死表型)这一概念最近已被应用于开发新型基因型选择性抗癌疗法的各项工作中。这些工作包括筛选新型抗癌药物、确定新型治疗靶点、阐明对靶向治疗的耐药机制以及通过合理设计联合疗法提高疗效。本综述讨论了合成致死性抗癌疗法的最新进展,包括用于治疗携带BRCA1和BRCA2突变癌症的聚ADP核糖聚合酶抑制剂、用于治疗p53突变癌症的检查点抑制剂以及靶向RAS基因突变癌症的小分子药物。由于癌症是由多个基因的突变和多个信号通路的异常引起的,特定肿瘤抑制基因或癌基因的合成致死性可能依赖于细胞环境。阐明合成致死性的潜在机制并确定治疗反应生物标志物对于合成致死性抗癌治疗的成功至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd18/4205018/70aff1e52870/jm-2014-00415t_0002.jpg

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