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CAR 疗法在肿瘤与自身免疫领域的演进:机制见解与治疗创新

英文原题:The evolution of CAR therapies across oncology and autoimmunity: mechanistic insights and therapeutic innovations.

PubMed 2026/05/16(内容时间) Int Immunopharmacol Q1 · IF 5.6(JCR 2025)

研究概要

CD19靶向CAR-T疗法在系统性红斑狼疮的小型早期研究(通常为5-18例患者)中实现了深度B细胞清除和临床改善,使部分患者获得无药物缓解;

中文摘要

嵌合抗原受体(CAR)工程化细胞疗法已从早期概念验证发展为高度可编程平台,可实现强效细胞毒作用和精准免疫调节。在肿瘤学领域,CAR 设计不断迭代,纳入优化的共刺激结构域、细胞因子分泌模块和基因编辑技术,以增强血液系统恶性肿瘤治疗的疗效和持久性。CD19 和 BCMA 靶向 CAR-T 可使难治性 B 细胞白血病、淋巴瘤和多发性骨髓瘤获得深度且持久的缓解。逻辑门控 CAR、合成 Notch(SynNotch)线路和模块化接头系统等新策略旨在克服抗原逃逸、减少肿瘤外毒性,并将疗效拓展至异质性实体瘤。与此同时,CAR 应用的概念也从癌症扩展至自身免疫病中的免疫调节。小规模早期研究(通常每项 5–18 名患者)显示,CD19 靶向 CAR-T 可深度清除 B 细胞并改善系统性红斑狼疮患者病情,部分患者达到停药缓解;但目前缺少随机对照试验,证据仍属初步。抗原特异性策略,包括嵌合自身抗体受体(CAAR)T 细胞和 CAR 工程化调节性 T 细胞(CAR-Treg),可选择性清除自身反应性 B 细胞克隆或局部恢复免疫耐受。这些策略正在系统性硬化症、多发性硬化、重症肌无力、1 型糖尿病、炎症性肠病和类风湿关节炎中研究。总体而言,合成受体工程和转化应用进展,使 CAR 平台成为可用于恶性肿瘤及免疫介导疾病的多功能下一代疗法。

展开英文摘要原文

Chimeric antigen receptor (CAR)-engineered cellular therapies have progressed from early proof of concept into highly programmable platforms capable of mediating potent cytotoxicity and precise immune modulation. In oncology, successive CAR design has incorporated optimized costimulatory domains, cytokine-secreting modules, and gene-editing technologies to enhance efficacy and durability in hematologic malignancies. CD19- and BCMA-directed CAR-T cells induce deep and durable remissions in refractory B-cell leukemias, lymphomas, and multiple myeloma. Emerging strategies, including logic-gated CARs, synthetic Notch (SynNotch) circuits, and modular adaptor-based systems, aim to overcome antigen escape, reduce off-tumor toxicity, and extend efficacy to heterogeneous solid tumors. Concurrently, a conceptual shift has expanded CAR applications beyond cancer toward immune modulation in autoimmune diseases. CD19-directed CAR-T therapy has achieved deep B-cell depletion and clinical improvement in small early-phase studies (typically 5-18 patients) of systemic lupus erythematosus, inducing drug-free remission in some patients; however, randomized controlled trials are lacking and evidence remains preliminary. Antigen-specific approaches, including chimeric autoantibody receptor (CAAR)-T cells and CAR-engineered regulatory T-cells (CAR-Tregs), enable selective depletion of autoreactive B-cell clones or localized restoration of immune tolerance. These strategies are under investigation across systemic sclerosis, multiple sclerosis, myasthenia gravis, type 1 diabetes, inflammatory bowel disease, and rheumatoid arthritis. Collectively, advances in synthetic receptor engineering and translational application position CAR platforms as versatile, next-generation therapeutics across malignant and immune-mediated diseases.

论文信息

作者
Abd El-Fattah EE、Hamdy R、Soliman SSM、Husseiny MI
第一作者单位
Beckman Research Institute, City of Hope, Duarte, CA, USA; Department of Biochemistry, Faculty of Pharmacy, Delta University for Science and Technology, Gamasa, Egypt.United States
通讯作者单位
Beckman Research Institute, City of Hope, Duarte, CA, USA; Department of Translational Research & Cellular Therapeutics, Arthur Riggs Diabetes & Metabolism Research Institute, City of Hope National Medical Center, Duarte, CA, USA. Electronic address: melsayed@coh.org.United States
文献类型
综述
期刊
International immunopharmacology2026 Aug 1
原文标识
PubMed 42143506 · DOI 10.1016/j.intimp.2026.116867