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首页> 外文期刊>Bioactive Materials >High-affinity mutant Interleukin-13 targeted CAR T cells enhance delivery of clickable biodegradable fluorescent nanoparticles to glioblastoma
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High-affinity mutant Interleukin-13 targeted CAR T cells enhance delivery of clickable biodegradable fluorescent nanoparticles to glioblastoma

机译:高亲和力突变体白细胞介素-13靶向轿厢T细胞增强可点击可生物降解的荧光纳米粒子递送至胶质母细胞瘤

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Glioblastoma (GBM), the deadliest form of brain cancer, presents long-standing problems due to its localization. Chimeric antigen receptor (CAR) T cell immunotherapy has emerged as a powerful strategy to treat cancer. IL-13-receptor-α2 (IL13Rα2), present in over 75% of GBMs, has been recognized as an attractive candidate for anti-glioblastoma therapy. Here, we propose a novel multidisciplinary approach to target brain tumors using a combination of fluorescent, therapeutic nanoparticles and CAR T cells modified with a targeted-quadruple-mutant of IL13 (TQM-13) shown to have high binding affinity to IL13Rα2-expressing glioblastoma cells with low off-target toxicity. Azide-alkyne cycloaddition conjugation of nanoparticles to the surface of T cells allowed a facile, selective, and high-yielding clicking of the nanoparticles. Nanoparticles clicked onto T cells were retained for at least 8 days showing that the linkage is stable and promising a suitable time window for in vivo delivery. T cells clicked with doxorubicin-loaded nanoparticles showed a higher cytotoxic effect in vitro compared to bare T cells. In vitro and in vivo T cells expressing TQM-13 served as delivery shuttles for nanoparticles and significantly increased the number of nanoparticles reaching brain tumors compared to nanoparticles alone. This work represents a new platform to allow the delivery of therapeutic nanoparticles and T cells to solid tumors.
机译:胶质母细胞瘤(GBM),最致命的脑癌形式,由于其本土化,呈现长期存在的问题。嵌合抗原受体(汽车)T细胞免疫疗法已成为治疗癌症的强烈策略。 IL-13-受体-α2(IL13Rα2)存在于超过75%的GBMS中,已被认为是一种有吸引力的抗胶质母细胞瘤治疗的候选者。在这里,我们提出了一种新的多学科方法,使用用IL13(TQM-13)的靶标 - 四重突变体改性的荧光,治疗性纳米颗粒和汽车T细胞的组合来靶向脑肿瘤的脑肿瘤(TQM-13)具有高结合亲和力的IL13Rα2的胶质母细胞瘤偏离靶向毒性低的细胞。将纳米颗粒与T细胞表面缀合的叠氮化物 - 炔烃环加成缀合允许纳米颗粒的容易,选择性和高产点击。纳米粒子被保留至少8天,显示连杆是稳定的,并且有希望用于体内递送的合适的时间窗。与裸吨细胞相比,纳米霉素纳米颗粒点击的T细胞显示出体外具有较高的细胞毒性效果。在体外和体内T细胞中表达TQM-13的纳米颗粒的输送梭,并与单独的纳米颗粒相比显着增加了达到脑肿瘤的纳米颗粒的数量。该工作代表允许将治疗性纳米颗粒和T细胞递送至实体瘤的新平台。

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