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:Blinatumomab-driven T-cell activation in αβ and γδ T-cell subsets: insights from in vitro assays.
Blinatumomab-driven T-cell activation in αβ and γδ T-cell subsets: insights from in vitro assays.
这些体外数据揭示了亚群特异性的BLN反应,并支持以下假设:体外扩增的Vγ9Vδ2 γδ T细胞可以补充BLN介导的细胞毒性,尤其是在CD19密度较高且靶标负荷较低的情况下。这些发现为未来在患者来源模型和临床研究中测试γδ T细胞/BLN联合策略提供了机制框架。
Blinatumomab(BLN)是一种双特异性T细胞衔接器,彻底改变了B细胞前体急性淋巴细胞白血病(BCP-ALL)的治疗,显著改善了成人和儿童的预后。通过同时结合B细胞上的CD19和T细胞上的CD3,BLN触发靶细胞依赖性T细胞活化,导致CD19+ BCP-ALL细胞的溶解。尽管BLN取得了显著的临床进展,但治疗应答或失败背后的免疫学机制仍鲜有表征。γδ T细胞因其强大的细胞毒性、呈递抗原的能力、对不同肿瘤实体的广泛溶解作用以及低同种反应性,成为过继性T细胞治疗的有吸引力的候选者。由于γδ T细胞也可被BLN重定向,我们在体外系统研究了来自健康供者的常规αβ T细胞和非常规γδ T细胞中BLN驱动的效应功能。
我们评估了来自健康成人的新鲜分离和体外扩增的αβ和γδ T细胞对CD19+ BCP-ALL细胞系(NALM-6、HAL-01)的细胞毒性和细胞因子/效应分子释放,并通过多参数流式细胞术分析了动态表型变化。
在BLN存在下,CD19+靶点持续减少。新鲜分离的αβ T细胞,尤其是CD8+ T细胞,表现出优于γδ T细胞的BLN介导效应功能,γδ T细胞杀伤存在供者依赖性变异。值得注意的是,唑来膦酸扩增的Vγ9Vδ2 γδ T细胞系达到了与PHA扩增的αβ T细胞相当的细胞毒性。然而,当面对高肿瘤负荷时,γδ T细胞杀伤受益于更高的BLN浓度。在这些体外健康供者T细胞培养中,BLN诱导αβ T细胞中CD3下调,但未在γδ T细胞中诱导,且αβ培养物释放更高的可溶性Fas配体,这些发现与更强的早期激活一致,并提示对激活相关凋亡/AICD的易感性增加。探索性靶向单细胞转录组学(一名供者)支持αβ T细胞中存在显著的激活/耗竭程序,而γδ T细胞中则相对稳定的效应记忆特征且检查点表达较低。
INTRODUCTION: Blinatumomab (BLN) is a bispecific T-cell engager that has revolutionized the treatment of B-cell precursor acute lymphoblastic leukemia (BCP-ALL), significantly improving outcomes in both adults and children. By simultaneously binding to CD19 on B cells and CD3 on T cells, BLN triggers target cell-dependent T-cell activation, resulting in the cytolysis of CD19 + BCP-ALL cells. Despite the remarkable clinical advancements achieved with BLN, the immunological mechanisms underlying treatment response or failure remain poorly characterized. γδ T cells are attractive candidates for adoptive T-cell therapy due to potent cytotoxicity, capacity to present antigens, broad lysis of different tumor entities, and low alloreactivity. Because γδ T cells can also be redirected by BLN, we systematically studied BLN-driven effector functions in vitro in conventional αβ and unconventional γδ T cells from healthy donors. MATERIALS AND METHODS: We evaluated cytotoxicity and cytokine/effector release in freshly isolated and in vitro -expanded αβ and γδ T cells from healthy adults against CD19 + BCP-ALL cell lines (NALM-6, HAL-01), and profiled dynamic phenotypic alterations by multiparametric flow cytometry. RESULTS: CD19 + targets were consistently reduced in the presence of BLN. Freshly isolated αβ, especially CD8 + , displayed superior BLN-mediated effector functions as compared to γδ T cells, with donor-dependent variability in γδ killing. Notably, zoledronate-expanded Vγ9Vδ2 γδ T-cell lines achieved cytotoxicity comparable to PHA-expanded αβ cells. However, γδ T-cell-killing benefited from higher BLN concentration when challenged with high tumor load. In these in vitro healthy-donor T-cell cultures, BLN induced CD3 down-modulation in αβ T cells but not in γδ T cells, and αβ cultures released higher soluble Fas ligand, findings consistent with stronger early activation and suggestive of increased susceptibility to activation-associated apoptosis/AICD. Exploratory targeted single-cell transcriptomics (one donor) supported a pronounced activation/exhaustion program in αβ T cells and a comparatively stable effector-memory profile with low checkpoint expression in γδ T cells. DISCUSSION: Together, these in vitro data reveal subset-specific BLN responses and support the hypothesis that ex vivo-expanded Vγ9Vδ2 γδ T cells could complement BLN-mediated cytotoxicity, particularly under conditions of higher CD19 density and lower target burden. These findings provide a mechanistic framework for future testing of γδ T-cell/BLN combination strategies in patient-derived models and clinical studies.
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