PO.ET03.03 · 实验与分子治疗
靶向氧化磷酸化的lixumistat可克服卵巢癌中的PARP抑制剂耐药
Targeting oxidative phosphorylation with lixumistat overcomes PARP inhibitor resistance in ovarian cancer
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
卵巢癌仍是全球妇科癌症相关死亡的首要原因。尽管poly(ADP-ribose) polymerase (PARP)抑制剂在BRCA1/2突变型卵巢癌中显示出显著疗效,但近半数患者最终会产生耐药。在本研究中,我们探讨了新型氧化磷酸化(OXPHOS)抑制剂lixumistat能否在临床前BRCA1/2突变型卵巢癌模型中克服PARP抑制剂耐药。长期olaparib暴露构建了olaparib耐药的BRCA突变卵巢癌细胞系及患者来源的肿瘤异种移植(PDTX)模型。对lixumistat单药或与olaparib联合进行了体外和体内评估。olaparib耐药细胞表现出升高的OXPHOS活性,将lixumistat与olaparib联合在olaparib敏感和耐药的细胞系及PDTX模型中均产生了协同抗肿瘤效应。从olaparib单药治疗转换为联合治疗,在部分耐药和获得性耐药的PDTX模型中显著抑制了肿瘤生长。这些结果提示,早期引入lixumistat可增强疗效并延缓PARP抑制剂耐药。从机制上看,lixumistat抑制了OXPHOS-NAD⁺-poly(ADP)-ribosylation (PARylation)轴,从而降低NAD⁺可用性和PARylation,以恢复PARP抑制剂敏感性。值得注意的是,外源性NAD⁺补充可逆转这些效应。此外,lixumistat下调SNAIL-磷酸化RB通路,损害细胞周期进程并进一步增强PARP抑制剂疗效。总之,这些发现确定了一种与OXPHOS相关的PARP抑制剂耐药新机制,并确立lixumistat作为一种在PARP抑制剂初治和耐药卵巢癌中增强PARP抑制剂疗效的有前景的联合策略。
查看英文原文 English abstract
Ovarian cancer remains the leading cause of gynecologic cancer-related mortality worldwide. Although poly(ADP-ribose) polymerase (PARP) inhibitors show remarkable efficacy in BRCA1/2-mutated ovarian cancer, nearly half of patients eventually develop resistance. In this study, we investigated whether lixumistat, a novel oxidative phosphorylation (OXPHOS) inhibitor, could overcome PARP inhibitor resistance in preclinical BRCA1/2-mutated ovarian cancer models. Long-term olaparib exposure generated olaparib-resistant BRCA-mutated ovarian cancer cell lines and patient-derived tumor xenograft (PDTX) models. Lixumistat, alone or combined with olaparib, was evaluated in vitro and in vivo. Olaparib-resistant cells exhibited elevated OXPHOS activity, and combining lixumistat with olaparib produced synergistic antitumor effects in both olaparib-sensitive and -resistant cell lines and PDTX models. Switching from olaparib monotherapy to combination therapy markedly suppressed tumor growth in partially resistant and acquired-resistant PDTX models. These results suggest that early integration of lixumistat could enhance efficacy and delay PARP inhibitor resistance. Mechanistically, lixumistat inhibited the OXPHOS-NAD⁺-poly(ADP)-ribosylation (PARylation) axis, thereby reducing NAD⁺ availability and PARylation to restore PARP inhibitor sensitivity. Notably, exogenous NAD⁺ supplementation reversed these effects. Additionally, lixumistat downregulated the SNAIL-phosphorylated RB pathway, impairing cell-cycle progression and further enhancing PARP inhibitor efficacy. Together, these findings identify a novel OXPHOS-associated mechanism underlying PARP inhibitor resistance and
establish lixumistat as a promising combinatorial strategy to potentiate PARP inhibitors in both PARP inhibitor-naïve and -resistant ovarian cancer.
利益披露 Disclosure
S. Hong,
Immunomet Therapeutics Inc. ), There is no conflict of interest..
M. Kang, None..
N. Katuwal, None..
M. Ghosh, None..
S. Park, None..
K. Ju Hyeon, None..
S. Kim, None.
Y. Moon,
Immunomet Therapeutics Inc. ), There is no conflict of interest.