研究概要
这些发现共同表明,DSP502 通过阻断 PVR 和 PD-L1 通路具有双重 ICI 活性,并对 NSCLC 等癌症具有潜在治疗获益。
中文摘要
对大多数癌症患者而言,PD-1免疫检查点抑制(ICI)无效。然而,联合治疗可提高应答率,其中TIGIT检查点尤其值得关注,因为其表达于肿瘤浸润的耗竭T细胞和NK细胞上。TIGIT的主要配体PVR在许多癌症中过表达,且TIGIT和PVR均与预后不良相关。为利用这一靶点,我们开发了新型治疗药物双信号蛋白502(DSP502)。DSP502由TIGIT和PD-1胞外结构域构成,二者分别与含knob-into-hole突变的人IgG1 Fc融合。DSP502可结合癌细胞表达的PVR和PD-L1,同时阻断PVR/TIGIT及PD-L1/PD-1通路。此外,人IgG1结构域还可招募FcR阳性效应细胞,进一步重激活抗癌免疫。DSP502治疗可增强NK细胞活化,并提高外周血单个核细胞及非小细胞肺癌(NSCLC)和转移性结直肠癌患者TIL(肿瘤浸润淋巴细胞)对同时表达PD-L1和PVR癌细胞的抗癌细胞毒性。转录组分析证实NSCLC可能是其潜在靶癌种,并显示高比例耗竭CD8⁺ T细胞共表达TIGIT和PD-1(PDCD1)。值得注意的是,DSP502不仅阻断检查点信号,还保留了T细胞和NK细胞表面共刺激配体DNAM-1的表达。最后,DSP502通过增强抗肿瘤免疫,抑制卵巢癌和肺癌异种移植模型中的肿瘤生长。综上,这些发现表明,DSP502通过阻断PVR和PD-L1通路产生双重ICI活性,有望用于NSCLC等癌症治疗。
展开英文摘要原文
PD-1 immune checkpoint inhibition (ICI) is ineffective in most patients with cancer. However, combination therapy can improve response rates, with the checkpoint TIGIT being a particularly interesting candidate as it is expressed on tumor-infiltrating exhausted T and NK cells. TIGIT's primary ligand, PVR, is overexpressed in many cancers, and both TIGIT and PVR correlate with poor prognosis. To therapeutically exploit this, we developed a novel therapeutic termed dual signaling protein 502 (DSP502). DSP502 is composed of the extracellular domains of TIGIT and PD-1, each fused to human IgG1 Fc containing knob-in-hole mutations. DSP502 was designed to simultaneously block PVR/TIGIT and PD-L1/PD-1 by binding to cancer cell-expressed PVR and PD-L1. Moreover, the human IgG1 domain can recruit FcR-positive effector cells to further reactivate anticancer immunity. Treatment with DSP502 potentiated NK cell activation and boosted the anticancer cytotoxicity of peripheral blood mononuclear cells and tumor-infiltrating lymphocytes from patients with non-small cell lung cancer (NSCLC) and metastatic colorectal cancer toward cancer cells expressing both PD-L1 and PVR. Transcriptomic analysis confirmed NSCLC as a potential target, showing co-expression of TIGIT and PD-1 (PDCD1) on a high percentage of exhausted CD8+ T cells. Notably, treatment with DSP502 not only blocked checkpoint signaling but also preserved surface expression of the co-stimulatory PVR ligand, DNAM-1, on T and NK cells. Finally, DSP502 inhibited tumor growth by potentiating antitumor immunity in xenograft ovarian and lung cancer models. Collectively, these findings demonstrate that DSP502, by blocking PVR and PD-L1 pathways, has dual ICI activity and holds potential therapeutic benefits for cancers such as NSCLC.
论文信息
- 作者
- Melo Gallegos VA、Greenwald S、Tamir A、Jacob LJ、González Corrales M、Tsveyer L、Aronin A、Pecker I
- 单位
- Department of Hematology, University Medical Center Groningen, University of Groningen, Groningen, the Netherlands.Netherlands
- 期刊
- Molecular cancer therapeutics2026 Aug 4