CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Engineering TME-gated inducible CAR-T cell therapy for solid tumors.
Engineering TME-gated inducible CAR-T cell therapy for solid tumors.
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自主型“活体药物”嵌合抗原受体(CAR)T细胞疗法已改变癌症医学。然而,CAR-T 在靶向肿瘤外组织上意外活化及其毒性风险,要求建立先进、精确的调控系统。
本研究提出一种新策略:使用整合化学诱导邻近(CIP)与肿瘤激活前药方法的遗传“与”门,构建下一代CAR-T 细胞——TME-iCAR-T,使其能够感知多种肿瘤特异特征(即肿瘤抗原和肿瘤微环境[TME]信号),并在TME内精准执行治疗功能。该设计基于脱落酸(ABA)CIP及其反应性笼锁/传感技术。研究者通过将ABA与不同硝基芳香族衍生物偶联,开发低氧响应小分子前药;在TME中特定癌症信号移除独特感应基团前,ABA保持失活。研究证实,TME-iCAR-T 细胞在体外可特异性响应选定的肿瘤信号组合,实现显著的癌症信号限制性活化及癌细胞毒杀。研究还在异种移植前列腺肿瘤模型中证明其可控性和体内抗肿瘤疗效。CAR-T 所采用的模块化多条件调控系统为提高未来细胞免疫疗法肿瘤选择性和安全性提供了有前景的新策略。
Autonomous "living drug" chimeric antigen receptor (CAR)-T cell therapy has revolutionized cancer medicine.
However, concerns about on-target off-tumor T cell activation and resulting toxicities require advanced precise regulatory control systems for CAR-T.
Here, we present a novel strategy using a genetic "AND" gate that integrates chemically induced proximity (CIP) and tumor-activated prodrug approaches to generate the next-generation CAR-T cell, TME-iCAR-T cell, that is capable of sensing multiple tumor-specific characteristics (i. e. , tumor antigens and tumor microenvironment [TME] signals) to precisely execute therapeutic functions within the TME.
This design was built on the abscisic acid (ABA)-based CIP and its associated reactivity-based caging/sensing technology. Hypoxia-responsive small-molecule prodrugs were developed by conjugating ABA with different nitroaromatic derivatives, which render ABA inactive until the unique sensing moieties are removed by specific cancer signals in the TME.
We demonstrated that TME-iCAR-T cells respond specifically to the chosen tumor signal combination in vitro and resulted in remarkable cancer signal-restricted activation and cytotoxicity to cancer cells.
We also showed their controllability and antitumor efficacy in vivo using a xenograft prostate tumor model.
Our highly modular multi-criteria control system in CAR-T represents a promising new strategy to enhance the tumor selectivity and safety of future cell-based immunotherapies.
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