PO.CL05.03 · 临床研究
抑制HER3使转移性结直肠癌和胰腺癌对免疫治疗敏感
HER3 inhibition sensitizes metastatic colorectal and pancreatic cancer to immunotherapy
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
引言:转移性结直肠癌(mCRC)和胰腺癌(mPC)的5年生存率分别为14%和3%,超过70%的患者会在肝脏发生远处转移。免疫检查点抑制剂(ICIs)在部分实体瘤和MSI CRC中表现出显著疗效,但在MSS mCRC/mPC中治疗获益有限。本项目旨在确定克服mCRC/mPC ICIs耐药的潜在新型联合策略。我们此前发现,肝内皮细胞通过NRG1和LRG1配体激活癌细胞中的HER3信号,经由不同的AKT/RSK通路促进转移性生长。本研究探讨抑制HER3通路是否能增强mCRC/mPC(尤其是MSS肿瘤)的免疫治疗疗效。
方法:首先通过LC-MS和ELISA测定CRC/PC细胞和肿瘤中关键代谢物的代谢变化,然后在HER3激活和/或抑制的背景下,通过体外实验(包括Seahorse FX和TMRE)进一步评估。使用小鼠/患者肿瘤组织,通过Western blotting和IHC染色评估HER3及下游代谢酶的磷酸化激活。我们通过肝内注射小鼠CRC和PC细胞(MSI或MSS)建立同基因原位CRC/PC肝转移,并通过IHC染色和流式细胞术评估T细胞浸润和活化。更重要的是,通过用HER3抑制剂sapitinib和/或抗PD-1抗体治疗这些模型来评估治疗疗效。
结果:LC-MS分析显示,与原发肿瘤相比,mCRC/mPC表现出显著升高的糖酵解代谢物,而HER3抑制逆转了这一代谢重编程。HER3激活增强了磷酸果糖激酶2(PFK2)-S483磷酸化并增加了CRC/PC细胞中的乳酸分泌。在小鼠CRC/PC肝转移中,HER3敲除肿瘤显示乳酸减少,从而降低了CD8+ T细胞的耗竭(以TOX表达降低判定),并增加了细胞毒性CD8+ T细胞(以Granzyme B水平升高判定)。最重要的是,HER3抑制与抗PD-1联合显著延长了CRC/PC肝转移(MSI和MSS均是)的生存,并实现了约40%的完全缓解率,明显优于单药治疗。
结论:我们确认了一条新型HER3-PFK2-乳酸代谢轴,它促进CRC/PC肝转移中的免疫抑制。靶向该通路使CRC/PC肝转移对检查点阻断敏感,为将免疫治疗获益扩展至目前对ICIs有应答的有限患者群体之外提供了一种有前景的策略。
查看英文原文 English abstract
INTRODUCTION: Metastatic colorectal cancer (mCRC) and pancreatic cancer (mPC) demonstrate 5-year survival rates of 14% and 3%, respectively, with over 70% patients developing distant metastases in the liver. Immune checkpoint inhibitors (ICIs) exhibit significant efficacy in some solid tumors and MSI CRC but have limited therapeutic benefit in MSS mCRC/mPC. This project aims to identify potential novel combination strategies to overcome ICIs resistance in mCRC/mPC. We previously discovered that liver endothelial cells activate HER3 signaling in cancer cells through NRG1 and LRG1 ligands, promoting metastatic growth via distinct AKT/RSK pathways. This study investigates whether inhibiting HER3 pathway can enhance immunotherapy efficacy in mCRC/mPC, especially MSS tumors.
METHODS: Metabolic changes in CRC/PC cells and tumors were first determined by LC-MS and ELISA for key metabolites, and then further assessed by in vitro assays, including Seahorse FX and TMRE, in the context of HER3 activation and/or inhibition. Phosphorylation activation of HER3 and downstream metabolic enzymes were evaluated by Western blotting and IHC staining using murine/patient tumor tissues. We developed syngeneic, orthotopic CRC/PC liver metastases by hepatic injection of murine CRC and PC cells (MSI or MSS), and assessed T cell infiltration and activation by IHC staining and flow cytometry. More importantly, therapeutic efficacy was assessed by treating these models with HER3 inhibitor sapitinib and/or anti-PD-1 antibodies.
RESULTS: LC-MS analysis revealed that mCRC/mPC exhibited significantly elevated glycolytic metabolites compared to primary tumors, with HER3 inhibition reversing this metabolic reprogramming. HER3 activation enhanced phosphofructokinase 2 (PFK2)-S483 phosphorylation and increased lactate secretion in CRC/PC cells. In murine CRC/PC liver metastases, HER3 KO tumors showed decreased lactate, which reduced exhaustion of CD8 + T cells, determined by decreased expression of TOX, and increased cytotoxic CD8 + T cells, determined by increased Granzyme B levels. Most importantly, the combination of HER3 inhibition with anti-PD-1 significantly extended survival in CRC/PC liver metastases (both MSI and MSS), and achieved ~40% complete response rate, which is markedly superior to monotherapies.
CONCLUSIONS: We identify a novel HER3-PFK2-lactate metabolic axis that promotes immunosuppression in CRC/PC liver metastases. Targeting this pathway sensitizes CRC/PC liver metastases to checkpoint blockade, offering a promising strategy to extend immunotherapy benefits beyond the limited patient population currently responsive to ICIs.
利益披露 Disclosure
C. Wei, None..
M. G. Rathore, None..
E. Bryson, None..
K. Curry, None..
J. Baek, None..
J. M. Winter, None..
R. Wang, None.