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亲和力成熟的 CD72 靶向纳米抗体 CAR-T 细胞增强低抗原 B 细胞恶性肿瘤的清除

英文原题:Affinity-matured CD72-targeting Nanobody CAR T-cells Enhance Elimination of Antigen-Low B-cell Malignancies.

查看英文原题

Affinity-matured CD72-targeting Nanobody CAR T-cells Enhance Elimination of Antigen-Low B-cell Malignancies.

PubMed 2025/05/15(内容时间) bioRxiv

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研究概要

这些发现共同支持将亲和力成熟的 CD72 纳米 CAR 作为治疗 CD19 难治性 B 细胞肿瘤的潜在免疫治疗产品。

中文摘要

嵌合抗原受体(CAR)T细胞疗法对多种血液系统恶性肿瘤疗效显著。然而,对于大多数CAR-T 靶点,肿瘤细胞表面抗原密度较低会显著降低治疗效能。本研究探讨CD72相关情况。我们近期发现CD72是难治性B细胞癌的有前景靶点,但临床前模型显示CD72抗原密度低可导致治疗耐药。

通过机构审查委员会批准的方案获取原代样本。亲和力成熟和人源化纳米抗体克隆此前已由Temple等人报道。通过慢病毒转导制备CAR-T 细胞。采用荧光素酶标记细胞系开展体外细胞毒性实验。体内研究使用植入NOD-scid-gamma(NSG)小鼠的细胞系或患者来源异种移植瘤。

我们首先证实多种原发性B细胞非霍奇金淋巴瘤中均广泛表达CD72。进一步发现,在B细胞急性淋巴细胞白血病(B-ALL)模型和原发肿瘤样本中,对CD19靶向疗法耐药后,细胞表面CD72表达大多得以保留,而CD22表达显著降低。将靶向CD72的纳米抗体进行亲和力成熟后整合进CAR-T 细胞,可在体外更有效地清除CD72低表达的同基因模型肿瘤。这些结果提示,纳米抗体CAR-T(nanoCAR)的结合分子亲和力、抗原表达与疗效之间,可能存在此前仅在单链可变片段(scFv)CAR-T 中证实过的类似关系。然而,令人意外的是,体外疗效的显著提升仅转化为有限的体内生存获益。作为增强CAR-T 功能的平行策略,我们发现小分子布里奥他汀也可显著增加B细胞恶性肿瘤模型的CD72表面抗原密度。结构建模和生化分析确定了可增强先导亲和力成熟纳米抗体识别CD72的关键残基。

这些发现支持将亲和力成熟的CD72 nanoCAR作为治疗CD19耐药B细胞癌的潜在免疫疗法产品。研究结果还提示,尤其对于B-ALL,CD72可能比CD22更适合作为二线免疫治疗靶点。

展开英文摘要原文

Chimeric antigen receptor (CAR) T-cell therapies are highly efficacious for several different hematologic cancers. However, for most CAR T targets it is observed that low surface antigen density on tumors can significantly reduce therapeutic efficacy. Here, we explore this dynamic in the context of CD72, a surface antigen we recently found as a promising target for refractory B-cell cancers, but for which CD72 low antigen density can lead to therapeutic resistance in preclinical models.

Primary samples were accessed via institutional review board-approved protocols. Affinity-matured and humanized nanobody clones were previously described in Temple et al. 1 CAR T-cells were generated via lentiviral transduction. In vitro cytotoxicity assays were performed using luciferase-labeled cell lines. In vivo studies were performed using cell line- or patient-derived xenografts implanted in NOD scid gamma (NSG) mice.

We first confirmed ubiquitous CD72 expression across a range of primary B-cell non-Hodgkin lymphomas. We further found that after resistance to CD19-directed therapies, across both B-cell acute lymphoblastic leukemia (B-ALL) models and primary tumor samples, surface CD72 expression was largely preserved while CD22 expression was significantly diminished. Affinity maturation of a nanobody targeting CD72, when incorporated into chimeric antigen receptor (CAR) T-cells, led to more effective elimination in vitro of isogenic models of CD72 low-expressing tumors. These results suggested that nanobody-based CAR T-cells (nanoCARs) may exhibit a similar relationship between binder affinity, antigen expression, and efficacy as previously demonstrated only for scFv-based CAR T-cells. Surprisingly, however, this significantly improved in vitro efficacy only translated to modest in vivo survival benefit. As a parallel strategy to enhance CAR T function, we found that the small molecule bryostatin could also significantly increase CD72 surface antigen density on B-cell malignancy models. Structural modeling and biochemical analysis identified critical residues improving CD72 antigen recognition of our lead affinity-matured nanobody.

Together, these findings support affinity-matured CD72 nanoCARs as a potential immunotherapy product for CD19-refractory B-cell cancers. Our results also suggest that for B-ALL in particular, CD72 may be a preferable second-line immunotherapy target over CD22.

论文信息

作者
Izgutdina A、Rashid T、Temple WC、Patiño-Escobar B、Walunj S、Geng H、Takamatsu H、Gil-Alós D
单位
Department of Laboratory Medicine, University of California, San Francisco, San Francisco, CA.United States
文献类型
预印本
期刊
bioRxiv : the preprint server for biology2025 May 15
原文标识
PubMed 40463123 · DOI 10.1101/2025.05.09.653155

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