PO.IM01.12 · 免疫学
Wnt/beta-catenin与c-MET共激活诱导对免疫检查点治疗有反应的炎性肝细胞癌
Co-activation of Wnt/beta-catenin and c-MET induced inflamed hepatocellular carcinoma responsive to immune checkpoint therapy
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
肝细胞癌(HCC)是肝癌的主要类型,常在晚期和不可切除阶段才被发现,使其成为成人中最致命的癌症之一。不可切除晚期HCC的一线治疗为免疫检查点治疗(ICT),但仅在20-30%的患者中显示完全缓解。由于beta-catenin基因(CTNNB1)功能获得性突变导致的Wnt/beta-catenin通路突变性激活,是驱动肝癌发生的主要致癌事件,约占HCC的三分之一。然而,致癌形式的beta-catenin常与c-MET、K-RAS和AKT等其他癌基因协同促进肿瘤的发生和进展。例如,HCC中激活的beta-catenin可诱导c-MYC表达,从而促进HCC细胞和肿瘤相关巨噬细胞(TAM)的代谢适应。多项临床和临床前研究表明,携带CTNNB1突变的HCC肿瘤往往炎症程度较低,免疫细胞浸润有限,使肿瘤呈"免疫冷"状态并对ICT耐药。另一方面,Wnt/beta-catenin的突变性激活也发生在"免疫热"的HCC肿瘤中,这提示肿瘤免疫微环境(TIME)受到其他致癌事件的共同调控。尽管通过流体动力共转染ΔN90-beta-cat(组成型活性beta-catenin)和c-MYC生成的小鼠HCC肿瘤呈"免疫冷"状态,但与beta-catenin激活协同导致"免疫热"肿瘤的事件尚不清楚。在本研究中,我们采用流体动力尾静脉注射(HTVI)表达ΔN90-beta-cat和c-MET的质粒,以研究它们对HCC发生、进展和TIME的影响。我们的ΔN90-beta-cat和c-MET肿瘤模型的免疫分析显示,PD-1+细胞毒性T细胞和Th1细胞的浸润增加,二者对抗肿瘤反应均至关重要。尽管T细胞存在于肿瘤微环境中,但PD-1的上调表明T细胞处于耗竭状态,从而允许HCC进展。因此,我们假设检查点阻断可重新激活耗竭的T细胞,从而带来更好的抗肿瘤反应。相应地,与接受同型对照抗体治疗的小鼠相比,接受抗PD1抗体治疗的HTVI生成的荷HCC的FVB/NJ雄性小鼠显示出显著的肿瘤消退/稳定,表现为在整个治疗过程中血浆甲胎蛋白(AFP,HCC的生物标志物)水平较低以及终末肿瘤体积较小。此外,抗PD1治疗肿瘤的免疫分析显示,与同型对照组相比,总的和驻留的细胞毒性T细胞群显著升高。因此,由ΔN90-beta-cat和c-MET联合形成的HCC肿瘤呈"免疫热"状态并对ICT有反应。这些发现进一步表明,c-MET和beta-catenin的共激活可作为纳入ICT治疗的HCC患者的生物标志物。
查看英文原文 English abstract
Hepatocellular carcinoma (HCC), the major form of liver cancer, is often detected at advanced and unresectable stages, making it one of the deadliest cancers in adults. The front-line treatment for unresectable advanced HCC involves immune checkpoint therapy (ICT), which shows complete response only in 20-30% of patients. Mutational activation of Wnt/beta-catenin pathway due to gain-of-function mutations in beta-catenin gene ( CTNNB1 ) is a major oncogenic event driving hepatocarcinogenesis accounting for about a third of HCC. However, oncogenic forms of beta-catenin often cooperate with other oncogenes like c-MET, K-RAS, and AKT for tumor development and progression. For instance, activated beta-catenin in HCC can induce the expression of c-MYC, which facilitates metabolic adaptation of HCC cells and tumor associated macrophages (TAMs). Several clinical and preclinical studies have shown that HCC tumors with CTNNB1 mutation are often less inflamed with limited immune cell infiltration making the tumors “immune-cold” and resistant to ICT. On the other hand, mutational activation of the Wnt/beta-catenin also occurs in “immune-hot” HCC tumors suggesting that the tumor immune microenvironment (TIME) is co-regulated by other oncogenic events. Although, murine HCC tumors generated by hydrodynamic co-transfection of ΔN90-beta-cat (a constitutively active beta-catenin) and c-MYC are “immune-cold”, the events that cooperate with beta-catenin activation leading to “immune-hot” tumors are unknown. In this study, we used hydrodynamic tail vein injection (HTVI) of plasmids expressing ΔN90-beta-cat and c-MET to investigate their effect on HCC development, progression, and TIME. Immune-profiling of our ΔN90-beta-cat and c-MET tumor model showed increased infiltration of PD-1+ cytotoxic T cells and Th1 cells, both of which are crucial for anti-tumor response. Although T cells were present in the tumor microenvironment, the upregulation of PD-1 indicates an exhausted state of T cells, permitting HCC progression. Therefore, we hypothesized that checkpoint blockade reactivates the exhausted T cells leading to better anti-tumor response. Accordingly, HTVI generated HCC bearing FVB/NJ male mice treated with anti-PD1 antibody showed significant tumor regression/stabilization compared to those treated with isotype control antibody, as indicated by lower levels of plasma alpha-fetoprotein (AFP), a biomarker of HCC, along the treatment course as well as the terminal tumor size. Additionally, immune profiling of the anti-PD1 treated tumors show significantly elevated population of total and resident cytotoxic T cells compared to the isotype control group. Therefore, HCC tumors formed by combination of ΔN90-beta-cat and c-MET are “immune-hot” and respond to ICT. These findings further indicate that, co-activation of c-MET and beta-catenin could serve as biomarkers for HCC patient inclusion in ICT.
利益披露 Disclosure
A. S. Bernal, None..
S. Khadka, None..
M. McLaughlin, None..
A. Tiwari, None..
B. Barre, None..
F. Cigarroa, None..
L. Sun, None.