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Clonal kinetics and single-cell transcriptional profiling of CAR-T cells in patients undergoing CD19 CAR-T immunotherapy

机译:CD19 CAR-T免疫疗法患者CAR-T细胞的克隆动力学和单细胞转录谱

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Chimeric antigen receptor (CAR) T-cell therapy has produced remarkable anti-tumor responses in patients with B-cell malignancies. However, clonal kinetics and transcriptional programs that regulate the fate of CAR-T cells after infusion remain poorly understood. Here we perform TCRB sequencing, integration site analysis, and single-cell RNA sequencing (scRNA-seq) to profile CD8 CAR-T cells from infusion products (IPs) and blood of patients undergoing CD19 CAR-T immunotherapy. TCRB sequencing shows that clonal diversity of CAR-T cells is highest in the IPs and declines following infusion. We observe clones that display distinct patterns of clonal kinetics, making variable contributions to the CAR-T cell pool after infusion. Although integration site does not appear to be a key driver of clonal kinetics, scRNA-seq demonstrates that clones that expand after infusion mainly originate from infused clusters with higher expression of cytotoxicity and proliferation genes. Thus, we uncover transcriptional programs associated with CAR-T cell behavior after infusion.
机译:嵌合抗原受体(CAR)T细胞治疗在B细胞恶性肿瘤患者中产生了显着的抗肿瘤反应。然而,在输注后调节Car-T细胞命运的克隆动力学和转录程序仍然明白。在这里,我们进行TCRB测序,集成点分析和单细胞RNA测序(ScRNA-SEQ),从输注产物(IPS)和患者接受CD19 CAR-T免疫疗法的患者的血液中谱系CD8 CAR-T细胞。 TCRB测序表明,在IPS中,CAR-T细胞的克隆多样性最高,并且输注后下降。我们观察显示克隆动力学模式不同模式的克隆,输注后对Car-T细胞库进行可变贡献。虽然整合现场似乎不是克隆动力学的关键驱动器,但Scrna-SEQ证明了输注后扩张的克隆主要来自具有更高表达细胞毒性和增殖基因的注入簇。因此,我们在输注后发现与Car-T细胞行为相关的转录程序。

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