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:Timing Genomic Antigen Loss in Multiple Myeloma Treated with T Cell-Redirecting Immunotherapies.
Timing Genomic Antigen Loss in Multiple Myeloma Treated with T Cell-Redirecting Immunotherapies.
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基因组层面的抗原丢失是复发/难治性多发性骨髓瘤(RRMM)对CAR-T 细胞和T细胞衔接器(TCE)产生耐药的常见机制。但尚不清楚这些事件是在治疗期间获得,还是治疗选择了既存但无法检测的克隆。我们利用全基因组测序中的化疗突变特征作为时间条码,确定11例RRMM患者中4例发生基因组抗原逃逸的时间。所有病例中,双等位基因丢失均由患者暴露于靶向BCMA和GPRC5D的CAR-T/TCE治疗后获得的基因组事件驱动,且治疗前未检测到。纵向数字PCR分析也证实,耐药突变在治疗开始时不可检测,但在复发前出现。在752例新诊断患者中,仅2.7%和9%分别存在TNFRSF17和GPRC5D单等位基因失活,均未见双等位基因丢失。我们的发现提示,在CAR-T/TCE治疗前进行突变筛查的价值有限,同时强调治疗期间动态监测的重要性。 意义:研究已证实,多发性骨髓瘤反复通过基因组抗原逃逸产生T细胞重定向疗法耐药。利用化疗突变特征,我们证明体细胞抗原逃逸机制均在治疗开始后获得,而非治疗筛选自既存克隆,强调应动态纵向监测其出现。相关评述见Kauer等,532页。
UNLABELLED: Genomic antigen loss is a recurring mechanism of resistance to chimeric antigen receptor T-cell (CAR-T) and T-cell engagers (TCE) in relapsed/refractory multiple myeloma (RRMM). Yet, it remains unclear whether these events are acquired under treatment or merely selected from preexisting, undetectable clones. By leveraging chemotherapy mutational signatures as temporal barcodes within whole-genome sequencing data, we could time genomic antigen escape in 4 of 11 patients with RRMM.
In all cases, the biallelic loss was driven by genomic events acquired after exposure to BCMA- and GPCR5D-targeted CAR-T/TCE and not present at baseline. Longitudinal digital PCR analysis corroborated that resistance mutations were undetectable at therapy initiation but emerged preceding relapse. Among 752 newly diagnosed patients, only 2. 7% and 9% had monoallelic inactivation of TNFRSF17 and GPCR5D, respectively, with no biallelic loss.
Our findings suggest limited utility of mutational screening prior to CAR-T/TCE while underscoring the importance of dynamic surveillance during therapy. SIGNIFICANCE: Multiple myeloma has been demonstrated to recurrently develop resistance to T-cell redirection via genomic antigen escape.
By leveraging chemotherapy mutational signatures, we demonstrate that somatic antigen-escape mechanisms are uniformly acquired following treatment initiation and not selected from among preexisting clones, emphasizing the importance of dynamic longitudinal surveillance for their emergence. See related commentary by Kauer et al. , p. 532.
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