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工程化纳米囊泡作为 DC 疫苗增强 CAR-T 细胞抗实体瘤疗效

英文原题:Engineered nanovesicles as a DC vaccine to enhance the antitumor efficacy of CAR-T cells against solid tumors.

PubMed 2026/02/20(内容时间) J Nanobiotechnology Q1 · IF 15(JCR 2025)

研究概要

本研究建立了一种新的联合策略,利用靶向 CD205 的肿瘤细胞来源 NVs 作为 DC 疫苗,有效重编程免疫抑制性 TME。

中文摘要

背景:嵌合抗原受体(CAR)T细胞疗法虽在血液系统恶性肿瘤中取得成功,但对非小细胞肺癌(NSCLC)等实体瘤的疗效仍受限,原因包括免疫抑制性肿瘤微环境(TME)和T细胞浸润不足。树突状细胞(DC)疫苗有望重塑TME,但靶向抗原递送仍面临挑战。因此,本研究拟开发靶向DC的纳米囊泡(NV)疫苗,以增强CAR-T细胞对抗肺癌的抗肿瘤活性。 结果:我们工程化制备了靶向CD205的纳米囊泡(aCD205 NV),其来源于表达抗CD205单链可变片段的LLC细胞。体外评估这些NV靶向DC、诱导其成熟及启动T细胞应答的能力;体内则静脉注射NV并联合Poly(I:C)作为DC疫苗,以重塑TME。在皮下和原位小鼠LLC模型中评估其与靶向间皮素(MSLN)的CAR-T细胞联合效果(CAR-T+疫苗治疗)。研究发现,CAR-T+疫苗治疗显著增强CAR-T细胞及内源性T细胞向肿瘤浸润,显著提高细胞毒性分子(颗粒酶B和穿孔素)及促炎细胞因子(IFN-γ和TNF-α)水平,同时降低免疫抑制性细胞群(M2巨噬细胞、MDSC和调节性T细胞)及IL-10。协同重塑产生强效肿瘤抑制并显著延长总生存期,且未观察到短期毒性。 结论:本研究建立了一种新型联合策略,利用靶向CD205的肿瘤细胞来源NV作为DC疫苗,有效重塑免疫抑制性TME。CAR-T+疫苗治疗显著提高CAR-T细胞浸润及其对抗肺癌的疗效,为推进实体瘤免疫治疗提供了灵活且有前景的平台。

展开英文摘要原文

BACKGROUND: Despite the success of chimeric antigen receptor (CAR)-T cell therapy in hematological malignancies, its efficacy against solid tumors like non-small cell lung cancer (NSCLC) remains limited due to the immunosuppressive tumor microenvironment (TME) and insufficient T-cell infiltration. Dendritic cell (DC) vaccines offer potential to remodel the TME but face challenges with targeted antigen delivery. Therefore, we want to develop a DC-targeted nanovesicle (NV) vaccine to enhance the antitumor activity of CAR-T cells against lung cancer. RESULTS: We engineered CD205-targeted nanovesicles (aCD205 NVs) derived from LLC cells displaying anti-CD205 single-chain variable fragments. These NVs were evaluated for DC targeting, maturation induction, and T cell priming in vitro and were injected intravenously with Poly(I: C) as a DC vaccine to reprogram the TME in vivo. The combinatorial effect with mesothelin (MSLN)-targeted CAR-T cells (CAR-T + Vac therapy) was assessed in subcutaneous and orthotopic murine LLC models. We found that CAR-T + Vac therapy significantly enhanced tumor infiltration of CAR-T cells and endogenous T cells, substantially elevated cytotoxic molecules (Granzyme B and Perforin), and pro-inflammatory cytokines (IFN- and TNF- ), while reducing immunosuppressive cell populations (M2 macrophages, MDSCs, and Tregs) and IL-10. This synergistic remodeling resulted in potent tumor suppression and markedly prolonged overall survival, with no observable short-term toxicity. CONCLUSIONS: This study establishes a novel combinatorial strategy utilizing CD205-targeted, tumor cell-derived NVs as a DC vaccine to effectively reprogram the immunosuppressive TME. CAR-T + Vac therapy significantly enhances CAR-T cell infiltration and antitumor efficacy against lung cancer, providing a versatile and promising platform for advancing solid tumor immunotherapy.

论文信息

作者
Ju S、Zhu T、Chen S、Wu Y、Huang X
第一作者单位
Center for Infection and Immunity, Guangdong Engineering Research Center of Molecular Imaging, The Fifth Affiliated Hospital of Sun Yat-sen University, Zhuhai, 519000, Guangdong, China.China
通讯作者单位
Center for Infection and Immunity, Guangdong Engineering Research Center of Molecular Imaging, The Fifth Affiliated Hospital of Sun Yat-sen University, Zhuhai, 519000, Guangdong, China. huangxi6@mail.sysu.edu.cn.China
期刊
Journal of nanobiotechnology2026 Feb 20
原文标识
PubMed 41721372 · DOI 10.1186/s12951-026-04213-8