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:Targeting the origins of multiple myeloma along hematopoietic stem cell lymphoid lineage differentiation.
我们的工作确定了与MM在B细胞谱系中的起始和恶性转化相关的遗传事件。
多发性骨髓瘤(MM)的发生和进展是复杂的过程,理解MM起始细胞(MICs)的恶性转化机制及其驱动基因是一项关键挑战。在本研究中,我们利用单细胞测序和遗传示踪分析,在从造血干细胞到淋系分化的每个发育阶段,识别MM患者的异常分化阶段。我们发现染色体1q扩增(1q Amp)起源于B细胞的特定亚群,而染色体17p缺失发生在浆细胞阶段。1q Amp存在于CD24⁻FCRL5⁺B细胞亚群中,并通过在体外和体内增强B细胞增殖和促进浆细胞分化,启动B细胞向恶性浆细胞的转化。FCRL5通过与IRF4/SPI1复合物相互作用,促进B细胞分化为恶性浆细胞。在复发或难治性MM(RRMM)患者中使用靶向FCRL5 CAR T细胞显示出良好的安全性和疗效。总之,我们的工作识别了沿B细胞谱系与MM起始和恶性转化相关的遗传事件。这些发现为通过靶向MICs及其驱动癌基因来识别RRMM患者的潜在治疗策略奠定了基础。
The initiation and progression of multiple myeloma (MM) are intricate processes, and a critical challenge lies in understanding the mechanisms of malignant transformation in MM-initiating cells (MICs) and their driver genes. In this study, we used single-cell sequencing and genetic tracer analysis at each developmental stage, from hematopoietic stem cells to lymphoid lineage differentiation, to identify abnormal differentiation stages in patients with MM. We found that chromosome 1q amplification (1q Amp ) originated from a specific subgroup of B cells, whereas chromosome 17p deletion occurred at the plasma cell stage. 1q Amp was present in CD24 - FCRL5 + B cell subgroups and initiated B cell transformation into malignant plasma cells by enhancing B cell proliferation and promoting plasma cell differentiation in vitro and in vivo. FCRL5 facilitated B cell differentiation into malignant plasma cells through its interaction with the IRF4/SPI1 complex. The use of targeted FCRL5 CAR T cells in patients with relapsed or refractory MM (RRMM) showed promising safety and efficacy. Together, our work identified genetic events linked to the initiation and malignant transformation of MM along the B cell lineage. These findings form the foundation for identifying potential therapeutic strategies for patients with RRMM by targeting MICs and their driving oncogenes.
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