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:Unraveling cellular and molecular mechanisms of relapse in CD19/CD22 dual-targeting chimeric antigen receptor T-cell therapy for B-cell acute lymphoblastic leukemia.
然而,超过 20% 的患者复发,其潜在机制仍不十分清楚。
CD19/CD22双靶点嵌合抗原受体(CAR19/22)T细胞疗法是难治性B细胞恶性肿瘤治疗中相较单靶点方案的一项重要进展。然而,超过20%的患者仍会复发,其潜在机制尚未充分阐明。本研究评估了临床试验(ChiCTR-OPN-16008526)中接受CAR19/22 T细胞治疗的91例B细胞急性淋巴细胞白血病(B-ALL)患者的复发情况。完全缓解率为91.9%;应答者中32.9%(26/79)复发,中位复发时间约7个月。在晚期复发(>7个月)患者中,92.3%的复发归因于CAR-T功能不足,表现为CAR-T细胞缺乏持久性或CD19+ B淋巴细胞恢复。早期复发异质性更高,其中30.8%归因于CAR-T功能不足,30.8%归因于抗原不足。值得注意的是,2例早期复发(15.4%)同时出现CD19/CD22下调,并存在既有PAX5缺失或移码插入。这些PAX5突变亚克隆在复发时持续存在并扩增,其中1例患者还获得额外CD19突变。在白血病细胞中敲除PAX5会降低CD19/CD22表达及近端增强子活性,导致体外对CAR19/22 T细胞耐药。总体而言,CAR-T功能不足和抗原不足分别是最常见(61.5%)和第二常见(15.4%)的复发驱动因素。破坏性PAX5突变界定了一种独特的早期复发分子机制,可为制定合理靶向策略提供依据。
CD19/CD22 dual-target chimeric antigen receptor (CAR19/22) T cell therapies mark a key advance over single-target options for refractory B-cell malignancies. However, over 20% of patients relapse and underlying mechanisms remain less understood. This study evaluated relapse in 91 B-cell acute lymphoblastic leukemia (B-ALL) patients treated with CAR19/22 T cells a clinical trial (ChiCTR-OPN-16008526). The complete remission rate was 91.9%, and 32.9% (26/79) of responders relapsed at a median of approximately 7 months. Among late relapses (>7 months), 92.3% was CAR T functional insufficiency showing lack of persistence or recovery of CD19 B lymphocytes. Early relapses showed greater heterogeneity with 30.8% attributable to CAR T functional insufficiency and 30.8% to antigen insufficiency. Notably, two early relapses (15.4%) exhibited concurrent CD19/CD22 downregulation and harbored a preexisting PAX5 deletion or frameshift insertion. These PAX5-mutated subclones persisted and expanded at relapse, with one patient acquiring additional CD19 mutations. PAX5 knockout in leukemic cells reduced CD19/CD22 expression and proximal enhancer activities, causing in vitro resistance to CAR19/22 T cells. Collectively, CAR T functional insufficiency and antigen insufficiency are the most (61.5%) and second (15.4%) frequent drivers of relapse, respectively. Disruptive PAX5 mutations define a distinct molecular mechanism of early relapse, guiding rational targeted strategies.
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