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.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Sensitive bispecific chimeric T cell receptors for cancer therapy.
Sensitive bispecific chimeric T cell receptors for cancer therapy.
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通过表达合成嵌合抗原受体(CAR)重定向 T 细胞抗原特异性,正在改变血液系统恶性肿瘤和自身免疫病的治疗。在癌症中,表达低水平或缺失靶抗原的肿瘤逃逸常使疗效无法持久。这些临床结果强调需要同时具备高敏感性和多特异性的免疫受体,以改善结局。现有单特异性和双特异性 CAR 不能充分模拟 T 细胞受体(TCR)功能,识别肿瘤需要靶细胞表达较高水平抗原。
本研究介绍一种新型合成嵌合 TCR(ChTCR),具有更高抗原敏感性且易于改造为双特异性靶向。双特异性 ChTCR 模拟 TCR 结构,形成经典免疫突触,并呈现类似 TCR 的近端信号。与表达优化双特异性 CAR 的 T 细胞相比,表达双特异性 ChTCR 的 T 细胞在体内更有效清除抗原异质性肿瘤。双特异性 ChTCR 结构具有良好可扩展性,可设计为靶向多个 B 细胞谱系和多发性骨髓瘤抗原。
本研究提出一种广泛适用的 T 细胞工程化方法,可靶向抗原表达异质的血液系统恶性肿瘤,从而克服现有 CAR-T 治疗后最常见的复发机制。
The expression of a synthetic chimeric antigen receptor (CAR) to redirect antigen specificity of T cells is transforming the treatment of hematological malignancies and autoimmune diseases [1-7]. In cancer, durable efficacy is frequently limited by the escape of tumors that express low levels or lack the target antigen [8-12].
These clinical results emphasize the need for immune receptors that combine high sensitivity and multispecificity to improve outcomes. Current mono- and bispecific CARs do not faithfully recapitulate T cell receptor (TCR) function and require high antigen levels on tumor cells for recognition [13-17].
Here, we describe a novel synthetic chimeric TCR (ChTCR) that exhibits superior antigen sensitivity and is readily adapted for bispecific targeting. Bispecific ChTCRs mimic TCR structure, form classical immune synapses, and exhibit TCR-like proximal signaling. T cells expressing Bi-ChTCRs more effectively eliminated tumors with heterogeneous antigen expression in vivo compared to T cells expressing optimized bispecific CARs. The Bi-ChTCR architecture is resilient and can be designed to target multiple B cell lineage and multiple myeloma antigens.
Our findings identify a broadly applicable approach for engineering T cells to target hematologic malignancies with heterogeneous antigen expression, thereby overcoming the most frequent mechanism of relapse after current CAR T therapies.
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