抗 CD22/CD19 CAR-T 细胞疗法 CART2219.1 在成人和儿童复发/难治性 B-ALL 中的 I/II 期试验
A Phase I/II Trial of Anti-CD22/CD19 CAR-T Cell Therapy, CART2219.1, in Adult and Pediatric Relapsed/Refractory B-ALL.
在一项多中心I/II期试验中,所有患者(n=11;7名儿童,4名成人)在第28天均达到完全缓解(91%为微小残留病阴性)。
英文原题:Targeting an alternate Wilms' tumor antigen 1 peptide bypasses immunoproteasome dependency.
设计有效的抗白血病免疫治疗需要理解肿瘤控制或耐药背后的机制。
设计有效的抗白血病免疫治疗需要理解肿瘤控制或耐药的机制。在此,我们报告了一例急性髓系白血病(AML)患者免疫逃逸的机制,该患者在接受了表达针对Wilms瘤抗原1表位WT1 126-134的HLA-A*02(HLA-A2)限制性T细胞受体(TCR)的工程化T细胞(T TCR-C4)免疫治疗后1年复发。尽管患者的AML细胞持续表达WT1和HLA-A2,且功能性治疗性T细胞持续存在,耐药仍然发生。对复发性AML的分析显示标准蛋白酶体表达,但免疫蛋白酶体表达有限,特别是β亚基1i(1i),这是呈递WT1 126-134所必需的。对接受T TCR-C4治疗的第二例患者的分析显示,共表达1i和WT1的AML细胞特异性丢失。为了确定在缺乏免疫蛋白酶体加工的情况下WT1蛋白是否继续被加工和呈递,我们鉴定并测试了一种靶向替代性HLA-A2限制性WT1 37-45表位的TCR,该表位由免疫蛋白酶体缺陷细胞产生,包括表达WT1的实体瘤细胞系。表达该TCR的T细胞(T TCR37-45)在体外杀死了第一例患者对WT1 126-134靶向耐药的复发性AML,以及其他原发性AML。T TCR37-45在体外和NSG小鼠模型中均能控制缺乏免疫蛋白酶体亚基的实体瘤细胞系。由于蛋白酶体组成在AML中可能变化,定义并优先靶向这些蛋白酶体非依赖性表位可能最大化治疗效果,并可能通过蛋白酶体相关免疫编辑规避AML免疫逃逸。
Designing effective antileukemic immunotherapy will require understanding mechanisms underlying tumor control or resistance. Here, we report a mechanism of escape from immunologic targeting in an acute myeloid leukemia (AML) patient, who relapsed 1 year after immunotherapy with engineered T cells expressing a human leukocyte antigen A*02 (HLA-A2)-restricted T cell receptor (TCR) specific for a Wilms' tumor antigen 1 epitope, WT1 126-134 (T TCR-C4 ). Resistance occurred despite persistence of functional therapeutic T cells and continuous expression of WT1 and HLA-A2 by the patient's AML cells. Analysis of the recurrent AML revealed expression of the standard proteasome, but limited expression of the immunoproteasome, specifically the beta subunit 1i ( 1i), which is required for presentation of WT1 126-134 . An analysis of a second patient treated with T TCR-C4 demonstrated specific loss of AML cells coexpressing 1i and WT1. To determine whether the WT1 protein continued to be processed and presented in the absence of immunoproteasome processing, we identified and tested a TCR targeting an alternative, HLA-A2-restricted WT1 37-45 epitope that was generated by immunoproteasome-deficient cells, including WT1-expressing solid tumor lines. T cells expressing this TCR (T TCR37-45 ) killed the first patients' relapsed AML resistant to WT1 126-134 targeting, as well as other primary AML, in vitro. T TCR37-45 controlled solid tumor lines lacking immunoproteasome subunits both in vitro and in an NSG mouse model. As proteasome composition can vary in AML, defining and preferentially targeting these proteasome-independent epitopes may maximize therapeutic efficacy and potentially circumvent AML immune evasion by proteasome-related immunoediting.
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