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靶向 Claudin 18.2 的 VHH 基 CAR-T 细胞在胰腺癌模型中显示高疗效

英文原题:VHH-based CAR-T cells targeting Claudin 18.2 show high efficacy in pancreatic cancer models.

PubMed 2026/01/02(内容时间) Front Immunol Q1 · IF 7(JCR 2025)

研究概要

本研究建立了一套开发 CLDN18.2 特异性 VHH 的有效框架,并证明其可成功整合到 CAR-T 细胞治疗中。

中文摘要

背景:胰腺导管腺癌(PDAC)仍是致死率最高的癌症之一,5年生存率低于10%,主要原因是诊断时已属晚期,以及手术、化疗和放疗等常规治疗效果有限。Claudin 18.2(CLDN18.2)已成为PDAC的有前景靶点。尽管靶向CLDN18.2的单链可变片段(scFv)型CAR-T细胞显示出治疗潜力,但仅含可变重链结构域(VHH)的工程化CAR-T细胞疗效更佳,凸显VHH构建体靶向该抗原的优势。然而,抗CLDN18.2 VHH-CAR-T细胞的治疗效果仍有待充分阐明,因为既往研究尚未全面表征其体内表现及相较scFv构建体的机制优势。 方法:为表征抗CLDN18.2 VHH的治疗潜力,研究者采用噬菌体展示技术筛选VHH文库,获得3个阳性克隆。随后在CAR-T细胞模型中依据结合亲和力和多轮细胞毒作用对候选克隆进行评估和排序。为降低免疫原性,对领先VHH进行人源化。利用该人源化结构域制备的VHH-CAR-T细胞先通过体外实验评估细胞因子分泌和靶细胞裂解,随后在相关异种移植模型中开展体内抗肿瘤疗效研究。 结果:研究者从噬菌体文库中筛得高亲和力抗CLDN18.2 VHH,并成功制备以HM2这一人源化VHH为抗原结合结构域的工程化CAR-T细胞。值得注意的是,HM2-CAR-T细胞在体外对表达CLDN18.2的肿瘤细胞表现出强效且持久的细胞因子分泌和细胞毒活性。更重要的是,这些VHH型CAR-T细胞在体内取得显著抗肿瘤疗效,凸显VHH-CAR构建体作为新一代治疗平台的转化潜力;与传统scFv设计相比,其性能更优且免疫原性更低。 结论:本研究建立了开发CLDN18.2特异性VHH的有效框架,并证明其可成功整合至CAR-T细胞疗法中。人源化HM2-CAR-T细胞不仅保持较高抗原特异性,还在临床前模型中表现出强效应功能和显著抗肿瘤活性。这些发现支持VHH型CAR-T细胞作为新一代免疫疗法用于CLDN18.2表达恶性肿瘤的临床前景,尤其是治疗有效选择仍有限的PDAC。

展开英文摘要原文

BACKGROUND: Pancreatic ductal adenocarcinoma (PDAC) remains one of the deadliest cancers, with a 5-year survival rate below 10%, largely due to late-stage diagnosis and the limited effectiveness of conventional therapies such as surgery, chemotherapy, and radiation. Claudin 18.2 (CLDN18.2)has emerged as a promising target for PDAC. While single-chain variable fragment (scFv)-based CAR-T cells targeting CLDN18.2 have demonstrated therapeutic potential, CAR-T cells engineered with variable heavy-chain-only domains (VHH) exhibit superior efficacy, highlighting the advantages of VHH-based constructs in targeting this antigen. However, the therapeutic efficacy of anti-CLDN18.2 VHH-CAR-T cells remains to be fully elucidated, as previous studies have not comprehensively characterized in vivo performance or mechanistic advantages over scFv-based counterparts. METHODS: To characterize the therapeutic potential of anti-CLDN18.2 VHHs, we employed phage display technology to screen a VHH library, resulting in the identification of three positive clones. These candidates were further evaluated and ranked based on binding affinity and multi-round cytotoxicity in Chimeric antigen receptor T (CAR-T) cell models. To reduce immunogenicity, the lead VHH was humanized. VHH-CAR-T cells incorporating this humanized domain were assessed through in vitro assays measuring cytokine secretion and target cell lysis, followed by in vivo studies to evaluate antitumor efficacy in relevant xenograft models. RESULTS: High-affinity anti-CLDN18.2 VHHs from phage libraries and engineered CAR-T cells using HM2, a humanized VHH, as the antigen-binding domain were successfully identified. Notably, HM2-CAR-T cells demonstrated potent and sustained cytokine secretion and cytotoxic activity against CLDN18.2-expressing tumor cells in vitro . More importantly, these VHH-based CAR-T cells achieved significant antitumor efficacy in vivo , underscoring the translational potential of VHH-CAR constructs as a next-generation therapeutic platform with enhanced performance and reduced immunogenicity compared to conventional scFv-based designs. CONCLUSION: This study establishes an effective framework for developing CLDN18.2-specific VHHs and demonstrates their successful integration into CAR-T cell therapy. The humanized HM2-CAR-T cells not only maintain high antigen specificity but also exhibit strong effector functions and pronounced antitumor activity in preclinical models. These findings support the clinical promise of VHH-based CAR-T cells as a next-generation immunotherapy for CLDN18.2-expressing malignancies, particularly PDAC, where effective treatment options remain limited.

论文信息

作者
Xing Y、Shi G、Li Z、Liu X、Nie L、Zhang Y、Song Y、Sun S
第一作者单位
Key Laboratory of Clinical Research on Respiratory and Digestive Diseases, Baoding Hospital of Beijing Children's Hospital Affiliated to Capital Medical University, Baoding, Hebei, China.China
通讯作者单位
Research and Development Department, Celest Therapeutics (Shanghai) Co., Ltd, Shanghai, China.China
期刊
Frontiers in immunology2025
原文标识
PubMed 41550919 · DOI 10.3389/fimmu.2025.1638585