PO.ET09.07 · 实验与分子治疗

新型PCNA抑制剂AOH1996在胰腺导管腺癌中与KRAS靶向疗法协同作用

Novel PCNA inhibitor AOH1996 synergizes with KRAS-targeted therapies in pancreatic ductal adenocarcinoma

海报缩略图:新型PCNA抑制剂AOH1996在胰腺导管腺癌中与KRAS靶向疗法协同作用
编号 4580 展板 23 时间 4/21 09:00–12:00 区域 Section 17 主讲 Husain Khan, PhD
分会场 Novel Antitumor Agents 2
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作者与单位 Authors & Affiliations

Sahar F. Bannoura1, Husain Y. Khan1, Md Hafiz Uddin1, Amro Aboukameel1, Yin Wan1, Bin Bao1, Adeeb Aboukameel1, Rafic Beydoun2, Pouya Haratipour3, Long Gu3, Muhammad Wasif Saif1, Robert J. Hickey3, Linda H. Malkas3, Yang Shi1, Mohammed Najeeb Al Hallak1, Ramzi M. Mohammad1, Boris C. Pasche1, Asfar S. Azmi1

1Barbara Ann Karmanos Cancer Institute, Wayne State University School of Medicine, Detroit, MI,2Department of Pathology, Barbara Ann Karmanos Cancer Institute, Wayne State University School of Medicine, Detroit, MI,3Beckman Research Institute of The City of Hope, Duarte, CA

摘要 Abstract

中文摘要
背景:胰腺导管腺癌(PDAC)是一种高度致命的恶性肿瘤,主要由致癌性KRAS突变驱动。增殖细胞核抗原(PCNA)是一种环状钳形蛋白,环绕DNA并调控复制、修复以及转录-复制冲突的解决;这些过程在PDAC中被过度激活。AOH1996是一种同类首创的选择性PCNA抑制剂,目前处于I期临床试验中。PCNA与KRAS具有预测的合成致死相互作用,提示其与新兴KRAS抑制剂具有联合潜力。本研究评估了AOH1996单药及其与KRAS靶向药物联用在PDAC模型中的作用。 方法:在本研究中,我们在KRAS突变型PDAC的临床前模型中研究了AOH1996的应用。我们通过MTT、集落形成和球体测定确定细胞活力和生长抑制。通过流式细胞术分析凋亡和细胞周期。进行RNA-seq、RT-qPCR和蛋白质印迹以进行机制评估。使用SynergyFinder进行药物联合协同建模。在用AOH1996、KRAS抑制剂(MRTX1133、sotorasib和RMC-6236)或联合方案处理的PDAC异种移植模型中评估了体内疗效。对残留肿瘤进行了pERK和pAKT信号变化分析。 结果:AOH1996在多种PDAC细胞系和3D球体中表现出强效、剂量依赖性的细胞毒性(IC50:0.5-1.5 μM)。RNA-seq揭示了广泛的转录改变,MAPK、PI3K-Akt和Hippo信号通路富集。在KRAS G12C和G12D模型中,AOH1996与KRAS抑制剂(包括MRTX1133、sotorasib、adagrasib和RMC-6236)表现出强协同作用。联合治疗导致显著的G1期和G2/M期阻滞、Annexin V阳性凋亡增加,以及pERK和pAKT的双重抑制。在患者来源的类肿瘤中,与单药相比,AOH1996加RMC-6236显著降低了细胞活力。在体内,AOH1996与MRTX1133或sotorasib联用产生了稳健的肿瘤消退,且无明显体重减轻,支持其耐受性。 结论:AOH1996是一种有前景的PDAC治疗候选药物,在体外、离体和体内模型中表现出强效的单药活性以及与临床相关KRAS抑制剂的强协同作用。该联合方案诱导深度的凋亡和细胞周期效应,并破坏关键的KRAS效应通路。这些结果支持进一步开展基于AOH1996的联合方案的转化开发,用于治疗KRAS突变型PDAC患者。
查看英文原文 English abstract
Background: Pancreatic ductal adenocarcinoma (PDAC) is a highly lethal malignancy driven predominantly by oncogenic KRAS mutations. Proliferating cell nuclear antigen (PCNA) is a ring-shaped clamp protein that encircles DNA and regulates replication, repair, and resolution of transcription-replication conflicts; processes hyperactivated in PDAC. AOH1996 is a first-in-class, selective PCNA inhibitor currently in Phase I clinical trials. PCNA has predicted synthetic lethal interactions with KRAS, suggesting combination potential with emerging KRAS inhibitors. This study evaluated AOH1996 alone and in combination with KRAS-targeted agents in PDAC models. Methods: In this study, we investigated the use of AOH1996 in preclinical models of KRAS-mutant PDAC. We determined cell viability and growth inhibition by MTT, colony formation and spheroid assays. Apoptosis and the cell cycle were analyzed by flow cytometry. RNA-seq, RT-qPCR and western blot were performed for mechanistic evaluations. Drug combination synergy modeling was performed using SynergyFinder. In vivo efficacy was assessed in PDAC xenograft models treated with AOH1996, KRAS inhibitors (MRTX1133, sotorasib, and RMC-6236), or combinations. Residual tumors were analyzed for pERK and pAKT signaling changes. Results: AOH1996 showed potent, dose-dependent cytotoxicity in multiple PDAC cell lines and 3D spheroids (IC₅₀: 0.5-1.5 μM). RNA-seq revealed broad transcriptional alterations, with enrichment of MAPK, PI3K-Akt and Hippo signaling pathways. Across KRAS G12C and G12D models, AOH1996 exhibited strong synergy with KRAS inhibitors, including MRTX1133, sotorasib, adagrasib, and RMC-6236. Combination therapy caused marked G1 and G2/M phase arrest, increased Annexin V-positive apoptosis, and dual suppression of pERK and pAKT. In patient-derived tumoroids, AOH1996 plus RMC-6236 significantly reduced viability compared to single agents. In vivo, AOH1996 combined with MRTX1133 or with sotorasib produced robust tumor regressions with no significant weight loss, supporting tolerability. Conclusions: AOH1996 is a promising therapeutic candidate for PDAC, demonstrating potent single-agent activity and strong synergy with clinically relevant KRAS inhibitors across in vitro, ex vivo, and in vivo models. The combination induces profound apoptotic and cell-cycle effects and disrupts key KRAS effector pathways. These results support further translational development of AOH1996-based combination regimens for patients with KRAS-mutant PDAC.
利益披露 Disclosure
S. F. Bannoura, None.. H. Y. Khan, None.. M. H. Uddin, None.. A. Aboukameel, None.. Y. Wan, None.. B. Bao, None.. A. Aboukameel, None.. R. Beydoun, None.. M. Saif, None. R. J. Hickey, RLL, LLC g., Board of Directors, non-salaried role). L. H. Malkas, RLL, LLC g., Board of Directors, non-salaried role), Other Business Ownership. Y. Shi, None.. M. Al Hallak, None.. R. M. Mohammad, None. B. C. Pasche, TheraBionic Inc and TheraBionic GmbH Stock. A. S. Azmi, Purple Biotec, FanWave Therapeutics, Colorado Chromatography, RLL and Blackstone Therapeutics ).

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