肿瘤细胞治疗研究
英文原题:Directed evolution of chlorotoxin enhances MMP-2 recognition and improves CAR-T-cell activity in glioblastoma models in vitro.
Directed evolution of chlorotoxin enhances MMP-2 recognition and improves CAR-T-cell activity in glioblastoma models in vitro.
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本研究表明,CTX 的定向进化可产生高亲和力、选择性的 MMP-2 配体,适用于下一代 CAR-T 细胞疗法。基于 CTXA8 的 CAR 具有增强的抗肿瘤疗效,支持其在克服实体瘤免疫治疗挑战方面的潜力。
富含半胱氨酸的微型蛋白来自有毒动物,因其结构紧凑、高稳定性和低免疫原性而成为有前景的治疗性支架。Chlorotoxin (CTX) 是一种源自蝎毒的微型蛋白,通过结合基质金属蛋白酶-2 (MMP-2) 选择性靶向胶质母细胞瘤,MMP-2 是一种在80%的胶质母细胞瘤中过表达的侵袭相关酶。CTX已被用于肿瘤成像、药物递送和免疫治疗,包括将其整合到嵌合抗原受体 (CAR) 构建体中。基于CTX的CAR在胶质母细胞瘤模型中显示出强效的MMP-2依赖性细胞毒性。我们假设通过噬菌体展示对CTX进行亲和力成熟可增强MMP-2结合并改善CAR-T 细胞性能。
基于 CTX 的噬菌体展示文库(130 万个变体)针对固定化的 MMP-2 进行筛选。先导变体 CTXA8 经重组表达,并针对一组脱靶蛋白测试其结合特异性。评估了其细胞摄取和定位,随后将其整合到 CAR 构建体中,采用单单元和串联两种形式(eCTXA8-CAR)。评估了 CTX-、CTXA8- 和 eCTXA8-CAR-T 细胞对胶质母细胞瘤细胞系和患者来源的原代肿瘤细胞的细胞毒性。
筛选鉴定出 CTXA8,与 CTX 相比,其 MMP-2 亲和力提高 4.4 倍,脱靶结合减少。荧光 CTXA8 在胶质母细胞瘤细胞中的摄取量比 CTX 高 2.4-3.5 倍。在测试的 CAR 构建体中,eCTXA8 诱导的 IFN 释放最高。eCTXA8-CAR-T 细胞在细胞毒性试验中始终优于 CTX-CAR 和未转导 T 细胞,尤其是在低效靶比时。
Cysteine-rich miniproteins from venomous animals are promising therapeutic scaffolds due to their compact structure, high stability, and low immunogenicity. Chlorotoxin (CTX), a miniprotein derived from scorpion venom, selectively targets glioblastoma by binding matrix metalloproteinase-2 (MMP-2), an invasion-associated enzyme overexpressed in 80% of glioblastomas. CTX has been utilized in tumor imaging, drug delivery, and immunotherapy, including its incorporation into chimeric antigen receptor (CAR) constructs. CTX-based CAR show potent MMP-2-dependent cytotoxicity in glioblastoma models. We hypothesized that affinity maturation of CTX via phage display could enhance MMP-2 binding and improve CAR T-cell performance.
A CTX-based phage display library ( 1.3 million variants) was screened against immobilized MMP-2. A lead variant, CTXA8, was recombinantly expressed and tested for binding specificity against a panel of off-target proteins. Its cellular uptake and localization were evaluated, followed by incorporation into CAR constructs in both single-unit and tandem formats (eCTXA8-CAR). The cytotoxicity of CTX-, CTXA8-, and eCTXA8-CAR T cells was assessed against glioblastoma cell lines and primary patient-derived tumor cells.
Screening identified CTXA8, which demonstrated a 4.4-fold increase in MMP-2 affinity and reduced off-target binding relative to CTX. Fluorescent CTXA8 showed 2.4-3.5-fold greater uptake in glioblastoma cells than CTX. Among the CAR constructs tested, eCTXA8 induced the highest IFN- release. eCTXA8-CAR T-cells consistently outperformed CTX-CAR and non-transduced T cells in cytotoxicity assays, especially at low effector-to-target ratios.
This study demonstrates that directed evolution of CTX can produce high-affinity, selective MMP-2 ligands suitable for next-generation CAR T-cell therapies. CTXA8-based CARs offer enhanced anti-tumor efficacy, supporting their potential in overcoming challenges in solid tumor immunotherapy.
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