聚ADP核糖聚合酶
前列腺癌
同源重组
PARP抑制剂
癌症研究
雄激素受体
医学
DNA修复
同源染色体
DNA损伤
奥拉帕尼
聚合酶
前列腺
癌症
药理学
临床试验
细胞周期
细胞
联合疗法
受体
DNA
作者
Nicole A. Traphagen,Esmé Wheeler,Rong Li,Tara Akhshi,Ramya Ravindranathan,Christian Alfieri,Feng Lu,Buraq Ahmed,Alok K. Tewari,Steven P. Balk,Peter S. Nelson,Eva Corey,Henry Long,Alan D. D’Andrea,Xintao Qiu,Myles Brown
标识
DOI:10.1073/pnas.2515790122
摘要
Recent clinical trials have explored the combination of androgen receptor (AR) pathway inhibitors and poly (adenosine diphosphate-ribose) polymerase (PARP) inhibitors as a potential treatment for castration-resistant prostate cancer. This combination treatment is based on the premise that AR directly regulates expression of DNA repair genes, leading to synergy between PARP and AR inhibition. Despite some promising preclinical evidence, this combination therapy has shown limited efficacy in patients with homologous recombination (HR)-proficient tumors. To investigate this discrepancy between preclinical and clinical results, we profiled the effects of PARP inhibition in prostate cancer models in the presence or absence of AR inhibition. Surprisingly, AR inhibition impaired response to PARP inhibitors in castration-sensitive cells and had no effect on response in castration-resistant cells. AR inhibition also did not regulate DNA repair in either the castration-resistant or castration-sensitive setting. Instead, we find that cell cycle progression is required for response to PARP inhibition in homologous recombination-proficient prostate cancer.
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