PO.IM01.10 · 免疫学
胰腺导管腺癌中PIKfyve与KRAS双重抑制的免疫学意义
Immune implications of dual PIKfyve and KRAS inhibition in pancreatic ductal adenocarcinoma
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:胰腺导管腺癌仍是最致命的癌症之一,总体5年生存率为13%。大多数PDAC病例由KRAS突变驱动,使其成为关键的治疗靶点。尽管已开发出许多KRAS抑制剂,并在临床前和临床环境中作为单药显示出前景,但耐药和适应性机制的出现凸显了对联合疗法的需求。我们近期证明,同时靶向KRAS-MAPK和脂质激酶PIKfyve可破坏PDAC中的脂质稳态并产生强效抗肿瘤效应,在同基因原位小鼠模型中治愈了大多数小鼠。有趣的是,PIKfyve和KRAS-MAPK抑制可各自独立地增加MHC I类分子的表面表达并提升抗PD-1疗法的有效性。因此,基于这些发现,我们假设PIKfyve和KRAS-MAPK信号的双重抑制可调节PDAC的免疫格局。
方法与结果:使用同基因原位PDAC模型,小鼠接受19天的PIKfyve抑制剂ESK981与RAS抑制剂RMC-6236的联合治疗。那些在终点达到完全治愈的小鼠停止治疗2个月,观察到所有小鼠的肿瘤均重新生长,凸显了对额外治疗的需求。值得注意的是,单独的PIKfyve或KRAS-MAPK抑制增加了免疫信号标志物MHC I类分子和PD-L1的表达,提示加入抗PD-1疗法可进一步增强疗效。
为研究PIKfyve和RAS抑制对PDAC肿瘤微环境的影响,我们对经ESK981和RMC-6236治疗5天后收获的肿瘤进行了单细胞RNA测序。联合疗法导致免疫细胞比例增加,尤其是T细胞和B细胞,同时与免疫逃逸相关的上皮细胞和成纤维细胞比例减少。这些结果提示PIKfyve和RAS抑制改变了免疫功能,并使微环境为免疫治疗做好准备。
总之,我们的初步发现表明,PIKfyve和KRAS-MAPK的联合抑制既发挥直接抗肿瘤效应,又增强PDAC中的免疫应答。我们的目标是通过利用其免疫增强效应,尤其是加入免疫检查点阻断,来在此策略基础上进一步发展。
查看英文原文 English abstract
Background Pancreatic Ductal Adenocarcinoma remains one of the deadliest cancers, with an overall 5 year survival rate of 13 percent. The majority of PDAC cases are driven by mutations in KRAS, making it a critical therapeutic target. Although many KRAS inhibitors have been developed and show promise in preclinical and clinical settings as single agents, the emergence of resistance and adaptive mechanisms has highlighted the need for combinatorial therapies. We recently demonstrated that the concurrent targeting of KRAS-MAPK and the lipid kinase PIKfyve disrupts lipid homeostasis in PDAC and has potent antitumor effects, curing the majority of mice in a syngeneic orthotopic mouse model. Interestingly, PIKfyve and KRAS-MAPK inhibition independently increase MHC Class 1 surface expression and enhance effectiveness of anti-PD-1 therapy. Thus, building on these findings, we hypothesized that dual inhibition of PIKfyve and KRAS-MAPK signaling modulates the immune landscape of PDAC.
Methods & Results Using a syngeneic orthotopic PDAC model, mice underwent 19 days of treatment with PIKfyve inhibitor ESK981 in combination with RAS inhibitor RMC-6236. Those that achieved a complete cure at the end-point were left untreated for 2 months, and it was observed that tumors grew back for all mice, highlighting the need for additional therapy. Notably, PIKfve or KRAS-MAPK inhibition alone increased expression of immune signaling markers MHC Class I and PD-L1, suggesting that the addition of anti-PD-1 therapy could further enhance efficacy.
To investigate the effect of PIKfyve and RAS inhibition on the PDAC tumor microenvironment, we performed single-cell RNA sequencing on tumors harvested after 5 days of treatment with ESK981 and RMC-6236. The combination therapy resulted in an increased proportion of immune cells, particularly T and B cells, along with a decreased proportion of epithelial cells and fibroblasts, which are associated with immune evasion. These suggest that PIKfyve and RAS inhibition alter immune function and prime the microenvironment for immune therapy.
Together, our preliminary findings suggest that the combined inhibition of PIKfyve and KRAS-MAPK exerts both direct antitumor effects and enhances the immune response in PDAC. Our goal is to build upon this strategy by leveraging its immune-enhancing effects, particularly with the addition of immune checkpoint blockade.
利益披露 Disclosure
J. P. Wisniewski, None..
C. Cheng, None..
R. Pakkan, None..
S. Peters, None..
G. Cruz, None..
Y. Qiao, None..
C. A. Lyssiotis, None.
A. M. Chinnaiyan,
Esanik Therapeutics Other, A.M.C. is a co-founder and serves on the scientific advisory board of Esanik Therapeutics, which owns proprietary rights to the clinical development of ESK981. Esanik Therapeutics did not fund or approve the conducting of this study.