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肿瘤内在干扰素信号驱动胰腺癌对肿瘤 mucin1 靶向 CAR T 细胞治疗的耐药

英文原题:Tumor-intrinsic interferon signaling drives pancreatic cancer resistance to tumor mucin1-targeted CAR T cell therapy.

查看英文原题

Tumor-intrinsic interferon signaling drives pancreatic cancer resistance to tumor mucin1-targeted CAR T cell therapy.

PubMed 2025/08/08(内容时间) Front Immunol Q1 · IF 7(JCR 2025)

研究概要

肿瘤相关 MUC1(tMUC1)在超过 80% 的人胰腺导管腺癌(PDA)中过表达且存在异常糖基化。

中文摘要

胰腺癌(PC)仍是最具挑战性的癌症之一,预后最差。超过 80% 人类胰腺导管腺癌(PDA)中,肿瘤相关 MUC1(tMUC1)过表达且糖基化异常。CAR-T 是新兴癌症免疫治疗策略;研究者近期成功构建 tMUC1 特异性人和小鼠 CAR-T,并在体内外证实其单药治疗 PDA 的效果。本研究观察到,不同人 PDA 细胞系对 tMUC1 靶向 CAR-T 细胞溶解的敏感性不一。值得注意的是,与较敏感的 MiaPaCa-2 细胞相比,高度耐受的 HPAFII 细胞在 CAR-T 攻击后释放更多 IFN 调节的 ICAM-1、CXCL10 和 CXCL11。使用 JAK1/2 抑制剂 ruxolitinib 阻断 IFN 信号,可显著降低 ICAM-1 和 CXCL10 上调。Western blot 显示,CAR-T 治疗后 PDA 细胞 I 型和 II 型 IFN 信号均升高。JAK 抑制剂有效抑制该信号应答,对 I 型 IFN 通路影响更明显。重要的是,阻断 IFN 或短暂敲低 IFN 受体,均显著提高 PDA 细胞对 CAR-T 介导细胞溶解的敏感性。进一步机制研究显示,CAR-T 与 PDA 细胞作用后部分失去细胞毒潜能。CAR-T 治疗可通过肿瘤细胞自身 IFN 信号上调 PDA 细胞 PD-L1;阻断 PD-L1 可增强 HPAFII 对 CAR-T 的应答。同样,中和 CXCL10 可增强 CAR-T 对 HPAFII 的杀伤,提示 CXCL10 参与 CAR-T 细胞溶解耐药。RNA 测序显示,PDA 患者中多种 IFN 通路基因高表达与预后不良相关。综上,肿瘤内在 IFN 信号可能驱动 PDA 细胞抵抗 tMUC1 靶向 T 细胞免疫治疗的免疫逃逸,因此可作为提高 PDA CAR-T 疗效的潜在治疗靶点。

展开英文摘要原文

Pancreatic cancer (PC) remains one of the most challenging cancers and has the worst prognosis. Tumor-associated MUC1 (tMUC1) is overexpressed and aberrantly glycosylated in over 80% of human pancreatic ductal adenocarcinoma (PDA). Chimeric antigen receptor (CAR) engineered T cells are an emerging cancer immunotherapy strategy and recently, we successfully engineered tMUC1-specific human and mouse CAR T cells and demonstrated their effectiveness as monotherapy against PDA in vitro and in vivo . In this study, we observed varying sensitivity among human PDA cell lines in response to tMUC1-targeted CAR T cell cytolysis. Notably, highly resistant HPAFII cells released greater amounts of interferon (IFN)-regulated ICAM-1, CXCL10, and CXCL11 compared to the more sensitive MiaPaCa-2 cells following CAR T cell challenge. Blocking IFN signaling using Ruxolitinib, a JAK1/2 inhibitor (JAKi), significantly reduced the upregulation of ICAM-1 and CXCL10. Western blot analysis revealed that both type I and type II IFN signaling pathways were elevated in PDA cells upon CAR T cell treatment. JAKi effectively suppressed this signaling response, with a more pronounced impact on the type I IFN pathway. Importantly, both IFN blockade and transient knockdown of IFN receptors significantly enhanced the sensitivity of PDA cells to CAR T cell-mediated cytolysis in vitro . Further mechanistic study revealed that CAR T cells partially lose their cytolytic potential after engaging with PDA cells. Treatment with CAR T cells triggered the up-regulation of immune checkpoint PD-L1 expression on PDA cells via tumor cell' own IFN signaling. Thus, blocking PD-L1 in HPAFII enhanced its response to CAR T cells. Similarly, neutralizing CXCL10 enhanced CAR T cell killing of HPAFII cells suggested CXCL10's involvement in resistance to CAR T cell cytolysis. RNA-seq data indicated higher expression of multiple genes along the IFN signaling pathway which were associated with poor prognosis in PDA patients. Taken together, tumor intrinsic IFN signaling may drive immune evasion in PDA cells against tMUC1-targeted T cell-mediated immunotherapy. This identifies tumor IFN signaling as a potential therapeutic target to improve CAR T cell efficacy in PDA treatment.

论文信息

作者
Zhou R、Mayberry R、Firmin T、Sanders A、Brouwer C、Maher J、Mukherjee P
单位
Department of Biological Sciences, University of North Carolina at Charlotte, Charlotte, NC, United States.United States
期刊
Frontiers in immunology2025
原文标识
PubMed 40861475 · DOI 10.3389/fimmu.2025.1618415