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:A TIM-3-Fc decoy secreted by engineered T cells improves CD19 CAR T-cell therapy in B-cell acute lymphoblastic leukemia.
这些TIM-3-Fc诱饵装甲CAR19 T细胞为R/R B-ALL患者提供了一种有前景的治疗策略。
复发或难治性(R/R)B细胞急性淋巴细胞白血病(B-ALL)仍是一种预后极差、具有挑战性的疾病。尽管靶向CD19的嵌合抗原受体(CAR19)T细胞疗法具有革命性影响,但>50%的患者在一年内复发。有利于免疫逃逸的白血病细胞内在因素以及CAR T细胞持续性差均导致临床失败。此外,骨髓(BM)微环境中免疫检查点受体(ICRs)及其配体的表达可能促进白血病进展和治疗耐药。在此,我们刻画了诊断时和复发时B-ALL BM样本中ICRs及其配体在白血病原始细胞、T细胞和间充质基质细胞(MSCs)中的表达,并将其与年龄匹配的健康BM对照进行比较。我们的发现揭示,在整个疾病进程中,T细胞中的TIM-3以及原始细胞和MSCs中其配体galectin-9的表达显著上调。B-ALL原始细胞中galectin-9和CAR19 T细胞中TIM-3的表达与临床结局呈负相关。此外,我们证明galectin-9损害CAR19 T细胞稳态和细胞毒性。值得注意的是,一种工程化TIM-3-Fc诱饵受体,或由与CAR19 T细胞共同输注的原代T细胞递送,或通过双顺反子一体化CAR19-TIM-3-Fc构建体递送,在B-ALL异种移植模型中改善了CAR19 T细胞的抗白血病疗效和持续性。在机制上,通过光谱流式细胞术测定,CAR19-TIM-3-Fc T细胞治疗促进了转导的以及旁观者的效应和记忆T细胞的体内扩增。总之,这些经TIM-3-Fc诱饵装甲的CAR19 T细胞为R/R B-ALL患者提供了一种有前景的治疗策略。
Relapsed or refractory (R/R) B-cell acute lymphoblastic leukemia (B-ALL) remains a challenging disease with dismal prognosis. Despite the revolutionary impact of CD19-directed chimeric antigen receptor (CAR19) T-cell therapy, >50% of patients relapse within a year. Both leukemia cell-intrinsic factors favoring immune escape and poor CAR T-cell persistence contribute to clinical failure. Moreover, the expression of immune checkpoint receptors (ICRs) and their ligands within the bone marrow (BM) microenvironment may contribute to leukemia progression and therapy resistance. Here, we characterized the expression of ICRs and their ligands in leukemic blasts, T cells, and mesenchymal stromal cells (MSCs) from B-ALL BM samples at diagnosis and relapse, comparing them with age-matched healthy BM controls. Our findings reveal a significantly upregulated expression of TIM-3 in T cells and its ligand, galectin-9, in both blasts and MSCs throughout disease progression. The expression of galectin-9 in B-ALL blasts and TIM-3 in CAR19 T cells negatively correlates with clinical outcome. Furthermore, we demonstrate that galectin-9 impairs CAR19 T-cell homeostasis and cytotoxicity. Notably, an engineered TIM-3-Fc decoy receptor, delivered either by primary T cells coadministered with CAR19 T cells or via a bicistronic all-in-one CAR19-TIM-3-Fc construct, improved the antileukemia efficacy and persistence of CAR19 T cells in B-ALL xenograft models. Mechanistically, CAR19-TIM-3-Fc T-cell treatment promotes the in vivo expansion of transduced and bystander effector and memory T cells, as determined by spectral flow cytometry. Collectively, these TIM-3-Fc decoy-armored CAR19 T cells offer a promising therapeutic strategy for patients with R/R B-ALL.
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