决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:CD34+CD19-CD22+ B-cell progenitors may underlie phenotypic escape in patients treated with CD19-directed therapies.
我们的数据表明,白血病前期的 CD34+CD19-CD22+ 祖细胞是 CD19 靶向免疫治疗后表型逃逸的基础,并支持正在进行的旨在将 CD19/CD22 双靶向作为减少 CD19- 复发策略的临床研究。
CD19靶向免疫疗法已经彻底改变了晚期B细胞急性淋巴细胞白血病(B-ALL)的治疗。尽管初始完全缓解(CR)率令人印象深刻,但许多患者最终仍会复发。接受CD19靶向T细胞治疗并获得成功的B-ALL患者最终会复发,结合B细胞发育过程中CD22表达的早期出现,这提示预先存在的CD34+CD22+CD19-(前)白血病细胞代表了一种“早期祖细胞来源相关”的机制,构成了对CD19靶向免疫疗法的表型逃逸基础。我们证明,在B细胞发育过程中,CD22表达早于CD19表达。CD34+CD19-CD22+细胞可在70%的B-ALL患者诊断时和复发时的骨髓样本中发现,并且在接受CD19 CAR T细胞治疗后达到CR的B-ALL患者中,其频率增加两倍。在CD19靶向免疫治疗后复发B-ALL的患者中,治疗前CD34+CD19-CD22+细胞的中位数高出三倍(中位随访时间24个月)。对流式分选细胞群进行的荧光原位杂交分析和异种移植模型显示,CD34+CD19-CD22+细胞携带诊断时存在的遗传学异常,并可在体内启动白血病发生。我们的数据提示,前白血病性CD34+CD19-CD22+祖细胞是CD19靶向免疫治疗后表型逃逸的基础,并支持正在进行的以CD19/CD22双靶向作为减少CD19-复发策略的临床研究。鼓励在临床实验室中实施CD34/CD19/CD22免疫表型分析,用于B-ALL患者的初始诊断以及CD19靶向治疗期间的后续监测。
CD19-directed immunotherapies have revolutionized the treatment of advanced B-cell acute lymphoblastic leukemia (B-ALL). Despite initial impressive rates of complete remission (CR) many patients ultimately relapse. Patients with B-ALL successfully treated with CD19-directed T cells eventually relapse, which, coupled with the early onset of CD22 expression during B-cell development, suggests that preexisting CD34+CD22+CD19- (pre)-leukemic cells represent an "early progenitor origin-related" mechanism underlying phenotypic escape to CD19-directed immunotherapies. We demonstrate that CD22 expression precedes CD19 expression during B-cell development. CD34+CD19-CD22+ cells are found in diagnostic and relapsed bone marrow samples of 70% of patients with B-ALL, and their frequency increases twofold in patients with B-ALL in CR after CD19 CAR T-cell therapy. The median of CD34+CD19-CD22+ cells before treatment was threefold higher in patients in whom B-ALL relapsed after CD19-directed immunotherapy (median follow-up, 24 months). Fluorescence in situ hybridization analysis in flow-sorted cell populations and xenograft modeling revealed that CD34+CD19-CD22+ cells harbor the genetic abnormalities present at diagnosis and initiate leukemogenesis in vivo. Our data suggest that preleukemic CD34+CD19-CD22+ progenitors underlie phenotypic escape after CD19-directed immunotherapies and reinforce ongoing clinical studies aimed at CD19/CD22 dual targeting as a strategy for reducing CD19- relapses. The implementation of CD34/CD19/CD22 immunophenotyping in clinical laboratories for initial diagnosis and subsequent monitoring of patients with B-ALL during CD19-targeted therapy is encouraged.
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