PO.ET03.08 · 实验与分子治疗

阿扎胞苷预处理使RAS突变的继发性AML对pan-RAS抑制剂RMC-7977增敏

Pre-treatment with azacytidine sensitizes RAS mutated secondary AML to the pan-RAS inhibitor RMC-7977

海报缩略图:阿扎胞苷预处理使RAS突变的继发性AML对pan-RAS抑制剂RMC-7977增敏
编号 1876 展板 9 时间 4/20 09:00–12:00 区域 Section 19 主讲 Xinghan Zheng, Graduate Student
分会场 Targeting Drug Resistance 2: RAS Signaling
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作者与单位 Authors & Affiliations

Xinghan Zeng1, Yuju An1, Brandy Perkins1, Tessa Seale2, Erotokritos Georgantzinos1, Theodora Chatzilygeroudi1, Bogdan Paun1, Maximillian Stahl1, Mark J. Levis3, Styliani Karanika1, Alexander Ambinder1, Sandra Misale2, Theodoros Karantanos1

1Johns Hopkins University, Baltimore, MD,2Johns Hopkins University School of Medicine, Baltimore, MD,3Johns Hopkins Sidney Kimmel Cancer Center, Baltimore, MD

摘要 Abstract

中文摘要
由既往髓系肿瘤演变而来的急性髓系白血病(AML)患者(继发性AML,sAML)的预后仍然比原发性AML患者更差,其特征为难治性疾病发生率高以及初始应答后复发。大多数sAML患者接受去甲基化药物(如阿扎胞苷)与BCL-2抑制剂维奈克拉(venetoclax)的联合治疗。然而,RAS突变存在于约20-30%的这些患者中,可赋予对维奈克拉的耐药性,并与更短的总生存期相关。尽管RAS癌基因长期以来被认为"不可成药",KRAS突变特异性抑制剂近来已在实体瘤临床试验中显示出前景。值得注意的是,据报道RAS-Multi ON抑制剂RMC-7977可使AML细胞对FLT3和BCL-2抑制增敏。在本研究中,我们发现阿扎胞苷预处理可增强RAS突变sAML细胞对RMC-7977的敏感性。对BEAT AML 2.0数据集的分析显示,影响RAS信号的突变——尤其是KRAS、NRAS和PTPN11中的突变——在AML样本中位列与阿扎胞苷治疗耐药相关的顶级改变之中。这些发现提示,将阿扎胞苷与RAS抑制相结合可能代表一种针对RAS突变AML的有前景的治疗策略。为评估这一点,我们在SKM1细胞中比较了三种治疗方案:阿扎胞苷与RMC-7977同时给药、阿扎胞苷序贯RMC-7977,以及相反顺序。只有阿扎胞苷预处理后序贯RMC-7977产生了协同效应。该序贯方案在MDS/sAML细胞系MDS92、MDS-L和SKM1中同样对诱导凋亡产生协同效应。与此一致,用阿扎胞苷序贯RMC-7977处理原代RAS突变sAML样本,与单一药物相比显著减少了克隆形成生长,同时不损害健康造血细胞的克隆形成能力。最后,用阿扎胞苷(5 mg/kg,持续5天)对SKM1异种移植瘤进行预处理,显著改善了RMC-7977介导的白血病负荷控制。我们发现,在体外和体内模型中,阿扎胞苷处理均可使RAS突变sAML细胞对RMC-7977的RAS抑制增敏。正在进行的研究旨在阐明其潜在分子机制,包括甲基化改变在调控致癌信号依赖性中的潜在作用。总之,这些发现为将RAS抑制剂作为RAS突变AML联合治疗策略的一部分继续评估提供了充分依据。
查看英文原文 English abstract
Patients with acute myeloid leukemia (AML) arising from antecedent myeloid neoplasms (secondary AML, sAML) continue to have poorer outcomes than those with de novo AML, characterized by a high incidence of refractory disease and relapse after initial response. Most patients with sAML are treated with combinations of hypomethylating agents, such as azacytidine, together with venetoclax, a BCL-2 inhibitor. However, RAS mutations, present in approximately 20-30% of these patients, confer resistance to venetoclax and are associated with shorter overall survival. Although RAS oncogenes were long considered “undruggable,” KRAS mutant-specific inhibitors have recently shown promise in clinical trials for solid tumors. Notably, treatment with the RAS-Multi ON inhibitor RMC-7977 has been reported to sensitize AML cells to FLT3 and BCL-2 inhibition. In this study, we found that pretreatment with azacitidine enhances the sensitivity of RAS -mutated sAML cells to RMC-7977.Analysis of the BEAT AML 2.0 dataset revealed that mutations affecting RAS signaling-particularly in KRAS , NRAS , and PTPN11 -rank among the top alterations associated with resistance to azacytidine treatment in AML samples. These findings suggest that combining azacytidine with RAS inhibition may represent a promising therapeutic strategy for RAS -mutated AML. To evaluate this, we compared three treatment approaches in SKM1 cells: concurrent administration of azacytidine and RMC-7977, sequential treatment with azacytidine followed by RMC-7977, and the reverse sequence. Only pretreatment with azacytidine followed by RMC-7977 produced synergistic effects. This sequential regimen also produced synergistic effects on inducing apoptosis in the MDS/sAML cell lines MDS92, MDS-L, and SKM1. Consistently, treatment of primary RAS -mutated sAML samples with azacytidine followed by RMC-7977 significantly reduced clonogenic growth compared with either agent alone, without impairing the clonogenicity of healthy hematopoietic cells. Finally, pretreatment of SKM1 xenografts with azacytidine (5 mg/kg for 5 days) markedly improved RMC-7977-mediated control of leukemic burden.We found that azacytidine treatment sensitizes RAS -mutated sAML cells to RAS inhibition by RMC-7977 in both in vitro and in vivo models. Ongoing studies aim to elucidate the underlying molecular mechanisms, including the potential role of methylation changes in modulating oncogenic signaling dependencies. Together, these findings provide a strong rationale for continued evaluation of RAS inhibitors as part of combination treatment strategies for RAS -mutated AML.
利益披露 Disclosure
X. Zeng, None.. Y. An, None.. B. Perkins, None.. E. Georgantzinos, None.. T. Chatzilygeroudi, None.. B. Paun, None.. M. Stahl, None.. S. Karanika, None.. A. Ambinder, None.. T. Karantanos, None.

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