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:Single-cell genomics details the maturation block in BCP-ALL and identifies therapeutic vulnerabilities in DUX4-r cases.
B细胞前体急性淋巴细胞白血病(BCP-ALL)是儿童最常见的恶性肿瘤,由多种遗传改变驱动,这些改变导致成熟停滞和异常前体B细胞积聚。
B细胞祖细胞急性淋巴细胞白血病(BCP-ALL)是儿童最常见的恶性肿瘤,由多种遗传改变驱动,这些改变导致成熟停滞和异常祖B细胞的积累。目前的化疗方案已带来良好的预后,但与显著的毒性和副作用风险相关,这凸显了开发高效、低毒靶向药物的必要性,即使在预后良好的亚型中也是如此。在此,我们采用多模态单细胞测序技术,描绘了23例儿童BCP-ALL的转录、表观遗传和免疫表型特征,这些病例属于BCR::ABL1+、ETV6::RUNX1+、高超二倍体以及最近发现的DUX4重排(DUX4-r)亚型。将ALL细胞沿正常造血分化轴进行投影,揭示了不同BCP-ALL亚型之间成熟模式的多样性。尽管BCR::ABL1+、ETV6::RUNX1+和高超二倍体细胞主要显示与正常前B细胞的相似性,但DUX4-r ALL细胞还表现出类似成熟B细胞的转录特征。聚焦于DUX4-r亚型,我们发现原始细胞群体不仅显示出向非造血细胞、髓系和T细胞谱系的多谱系启动,还表现出磷脂酰肌醇3-激酶(PI3K)/AKT信号通路的激活,这使细胞在体内对PI3K抑制敏感。鉴于DUX4-r原始细胞的多谱系启动伴有髓系标志物CD371(CLL-1)的异常表达,我们制备了CAR-T 细胞,其在体内有效清除了DUX4-r ALL细胞。这些结果在单细胞水平上对BCP-ALL进行了详细表征,并揭示了DUX4-r亚型的治疗脆弱性,对理解ALL生物学及新的治疗策略具有重要意义。
B-cell progenitor acute lymphoblastic leukemia (BCP-ALL) is the most common childhood malignancy and is driven by multiple genetic alterations that cause maturation arrest and accumulation of abnormal progenitor B cells. Current treatment protocols with chemotherapy have led to favorable outcomes but are associated with significant toxicity and risk of side effects, highlighting the necessity for highly effective, less toxic, targeted drugs, even in subtypes with a favorable outcome. Here, we used multimodal single-cell sequencing to delineate the transcriptional, epigenetic, and immunophenotypic characteristics of 23 childhood BCP-ALLs belonging to the BCR::ABL1+, ETV6::RUNX1+, high hyperdiploid, and recently discovered DUX4-rearranged (DUX4-r) subtypes. Projection of the ALL cells along the normal hematopoietic differentiation axis revealed a diversity in the maturation pattern between the different BCP-ALL subtypes. Although the BCR::ABL1+, ETV6::RUNX1+, and high hyperdiploidy cells mainly showed similarities to normal pro-B cells, DUX4-r ALL cells also displayed transcriptional signatures resembling mature B cells. Focusing on the DUX4-r subtype, we found that the blast population displayed not only multilineage priming toward nonhematopoietic cells, myeloid, and T-cell lineages, but also an activation of phosphatidylinositol 3-kinase (PI3K)/AKT signaling that sensitized the cells to PI3K inhibition in vivo. Given the multilineage priming of DUX4-r blasts with aberrant expression of myeloid marker CD371 (CLL-1), we generated chimeric antigen receptor T cells, which effectively eliminated DUX4-r ALL cells in vivo. These results provide a detailed characterization of BCP-ALL at the single-cell level and reveal therapeutic vulnerabilities in the DUX4-r subtype, with implications for the understanding of ALL biology and new therapeutic strategies.
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