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纳米抗体工程化 CLL-1 CAR-T 细胞:优化肿瘤特异性细胞毒性并降低肿瘤外毒性

英文原题:Nanobody-Engineered CLL-1 CAR T Cells: Optimizing Tumor-Specific Cytotoxicity and Minimizing Off-Tumor Toxicity.

查看英文原题

Nanobody-Engineered CLL-1 CAR T Cells: Optimizing Tumor-Specific Cytotoxicity and Minimizing Off-Tumor Toxicity.

PubMed 2026/03/01(内容时间) Cancer Res Commun Q2 · IF 4(JCR 2025)

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中文摘要

急性髓系白血病(AML)是一种侵袭性血液系统恶性肿瘤,其特征为未分化髓系祖细胞迅速扩增,导致造血受损和患者预后不佳。尽管采用单链可变片段的嵌合抗原受体(CAR)T细胞疗法已革新免疫治疗,但由于正常造血干细胞和祖细胞也表达共同抗原,造成靶向肿瘤同时损伤肿瘤外组织的毒性,AML中的临床应用仍受限。为应对这一挑战,我们开发了基于纳米抗体、靶向C型凝集素样分子1(CLL-1)的CAR-T 细胞平台。CLL-1是髓系限制性表面抗原,在健康造血干细胞上表达极低,但在AML原始细胞和白血病干细胞上持续富集。利用源自羊驼的单结构域重链可变区抗体所具有的高特异性、溶解性和较低免疫原性,我们构建了CLL-1及CD33纳米抗体CAR,并系统比较其功能活性。功能验证包括:采用IncuCyte成像实时监测mKate2标记AML细胞的细胞毒性;通过连续肿瘤再刺激实验评估持续杀伤能力;以及在高白血病负荷条件下采用NOD/SCID/IL2R缺失异种移植模型评估体内疗效。CLL-1和CD33 CAR-T 细胞均表现出快速且持久的细胞毒性,在低效应细胞与靶细胞比(0.33:1)下也有显著杀伤效率。与CD33 CAR-T 细胞不同,靶向CLL-1的CAR可避免损伤正常造血祖细胞,并保留其集落形成能力。重要的是,CLL-1 CAR-T 细胞保持了良好的记忆表型,增殖和存活能力稳定;细胞因子释放实验则证实其免疫活化有效且具有抗原特异性。体内实验中,CLL-1 CAR-T 细胞治疗使AML异种移植瘤显著且持久消退,同时功能性CAR-T 细胞持续存在。综上,这些发现确立了靶向CLL-1的纳米抗体CAR-T 细胞作为一种精准工程化免疫疗法,具有强效抗白血病活性、较低脱靶毒性和更强转化潜力。该平台为克服当前AML CAR-T 细胞开发障碍、改善患者结局提供了有前景的治疗途径。 意义:基于纳米抗体的CLL-1 CAR-T 细胞疗法兼具强效抗肿瘤活性和造血功能保护,凸显该CLL-1 CAR-T 平台有望成为治疗AML的新一代、更安全且临床表现更优的策略。

展开英文摘要原文

UNLABELLED: Acute myeloid leukemia (AML) is an aggressive hematologic malignancy characterized by the rapid expansion of undifferentiated myeloid progenitors, leading to impaired hematopoiesis and poor patient prognosis. Although chimeric antigen receptor (CAR) T-cell therapy using single-chain variable fragments has revolutionized immunotherapy, clinical application in AML remains limited by on-target, off-tumor toxicities, largely due to shared antigen expression on normal hematopoietic stem and progenitor cells. To address this challenge, we developed a nanobody-based CAR T-cell platform directed against C-type lectin-like molecule-1 (CLL-1), a myeloid-restricted surface antigen minimally expressed on healthy hematopoietic stem cells but consistently enriched on AML blasts and leukemic stem cells.

Leveraging the high specificity, solubility, and reduced immunogenicity of llama-derived single-domain variable heavy-chain antibodies, we engineered both CLL-1 and CD33 nanobody CAR constructs and systematically compared their functional activity. Functional validation included real-time cytotoxicity monitoring using IncuCyte imaging of mKate2-labeled AML cells, serial tumor rechallenge assays to assess sustained killing, and NOD/SCID/IL2R null xenograft models to evaluate in vivo efficacy under conditions of high leukemic burden.

CLL-1 and CD33 CAR T cells demonstrated rapid and durable cytotoxicity, with significant killing efficiency at low effector-to-target ratios (0. 33:1). Unlike CD33 CAR T cells, CLL-1-directed CARs spared normal hematopoietic progenitors, preserving colony-forming capacity.

Importantly, CLL-1 CAR T cells retained a favorable memory phenotype with stable proliferation and viability, whereas cytokine release assays confirmed effective yet antigen-specific immune activation. In vivo, treatment with CLL-1 CAR T cells resulted in profound and sustained tumor regression in AML xenografts, accompanied by the persistence of functional CAR T cells.

Together, these findings establish CLL-1-targeted nanobody-based CAR T cells as a precision-engineered immunotherapy with potent antileukemic activity, reduced off-target toxicity, and enhanced translational potential. This platform provides a promising therapeutic avenue to overcome current barriers in AML CAR T-cell development and improve patient outcomes.

SIGNIFICANCE: Nanobody-based CLL-1 CAR T-cell therapy balances potent antitumor activity with hematopoietic preservation, highlighting the potential of our CLL-1 CAR T-cell platform as a next-generation, safer, and clinically superior strategy for effective AML treatment.

论文信息

作者
Tripathi C、Zolov S、Nguyen J、Luh F、Natarajan V、Yen Y
单位
Sino-American Cancer Foundation (SACF), Covina, California.
文献类型
非美国政府资助研究
期刊
Cancer research communications2026 Mar 1
原文标识
PubMed 41721623 · DOI 10.1158/2767-9764.CRC-25-0521