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工程化改造 CAR-T 细胞分泌 VEGF 中和 scFv 增强对实体瘤的抗肿瘤活性

英文原题:Engineering CAR T cells to secrete VEGF-neutralizing scFvs enhances antitumor activity against solid tumors.

PubMed 2026/03/04(内容时间) Sci Transl Med Q1 · IF 15.6(JCR 2025)

研究概要

我们的结果为 CAR-VEGF T 细胞作为以 VEGF 升高为特征的实体瘤的安全且强效疗法的临床转化提供了依据。

中文摘要

嵌合抗原受体 (CAR) T 细胞疗法对实体瘤显示出有限疗效,而实体瘤通常位于高度免疫抑制的肿瘤微环境 (TMEs) 中。TMEs 中血管内皮生长因子 A (VEGF) 可能高度丰富,而 VEGF 会促进免疫抑制和异常的肿瘤血管系统。在此,我们发现,经工程化改造以分泌抗 VEGF 单链可变片段的 CAR T 细胞 (CAR-VEGF T 细胞) 在多种卵巢癌和胶质瘤体内模型中取得了更优的抗肿瘤疗效,优于联合或不联合抗 VEGF 抗体治疗的常规 CAR T 细胞。显微镜检查、流式细胞术和转录组分析显示,用抗 VEGF 单链可变片段武装 CAR T 细胞可增强其激活和线粒体适应性,并丰富荷瘤脑内内源性免疫细胞中的免疫刺激性特征。此外,CAR-VEGF T 细胞规避了与靶向 CAR T 细胞治疗相关的多种有害效应,包括抑制性髓系细胞浸润、血管异常加剧和缺氧。总之,我们的结果为将 CAR-VEGF T 细胞作为以 VEGF 升高为特征的实体瘤的安全且有效疗法进行临床转化提供了依据。

展开英文摘要原文

Chimeric antigen receptor (CAR) T cell therapy has shown limited efficacy against solid tumors, which often reside in highly immunosuppressive tumor microenvironments (TMEs). TMEs can be highly abundant in vascular endothelial growth factor A (VEGF), which contributes to immunosuppression and abnormal tumor vasculature. Here, we found that CAR T cells engineered to secrete an anti-VEGF single-chain variable fragment (CAR- VEGF T cells) achieved superior antitumor efficacy against multiple in vivo models of ovarian cancer and glioma, outperforming conventional CAR T cells with and without combination anti-VEGF antibody therapy. Microscopy, flow cytometry, and transcriptomic analyses revealed that armoring the CAR T cells with anti-VEGF single-chain variable fragments enhanced their activation and mitochondrial fitness and enriched immune-stimulatory signatures among endogenous immune cells in the tumor-bearing brain. Moreover, CAR- VEGF T cells circumvented multiple detrimental effects associated with on-target CAR T cell therapy, including infiltration of suppressive myeloid cells, exaggerated vasculature abnormalities, and hypoxia. Together, our results provide rationale for the clinical translation of CAR- VEGF T cells as a safe and potent therapy for solid tumors characterized by elevated VEGF.

论文信息

作者
Gao TA、Shih RM、Clubb JD、Hung SH、Singh T、James-Allan LB、DiBernardo G、Shafer A
单位
Department of Chemical and Biomolecular Engineering, University of California, Los Angeles, Los Angeles, CA 90095, USA.United States
期刊
Science translational medicine2026 Mar 4
原文标识
PubMed 41779870 · DOI 10.1126/scitranslmed.adw9286