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:Off-the-shelf dual CAR-iNKT cell immunotherapy eradicates medullary and leptomeningeal high-risk KMT2A-rearranged leukemia.
当前疗法,包括自体嵌合抗原受体(CAR)T细胞免疫治疗,未能治愈一半患有KMT2A重排急性淋巴细胞白血病(KMT2Ar-ALL)的婴儿,该疾病以频繁的中枢神经系统受累、治疗反应差、早期复发和谱系转换为特征。
现有疗法,包括自体嵌合抗原受体(CAR)T细胞免疫疗法,仍无法治愈约一半KMT2A重排急性淋巴细胞白血病(KMT2Ar-ALL)婴儿患者。该疾病特征包括中枢神经系统常受累、治疗应答不佳、早期复发和谱系转换。在婴儿患者中,开发更有效治疗策略(包括现货型免疫疗法)尤为重要。PROM1/CD133是KMT2A融合致癌蛋白的直接靶基因,并表达于白血病细胞。异基因不变型自然杀伤T(iNKT)细胞的先天效应能力强于常规T细胞,可作为现货型疗法使用,且无急性移植物抗宿主病风险。在此,我们使iNKT细胞表达靶向CD19和/或CD133的CAR,并在相关体外及体内模型中检测其抗KMT2Ar-ALL活性。与单特异性细胞及双靶点双特异性CAR-T细胞相比,双特异性CD19-CD133 CAR-iNKT细胞具有更强的抗白血病活性,可有效靶向CAR抗原高表达和低表达白血病。双特异性CAR-iNKT细胞可清除骨髓内白血病,尤其能清除软脑膜白血病,并诱导持久缓解,且未见明显血液学毒性。从机制上看,CAR-iNKT细胞较CAR-T细胞抗白血病效应更强,源于CAR及CAR抗原依赖性的先天活化受体NKG2D显著上调,以及NKG2D与KMT2Ar-ALL细胞相应配体结合。即使CD133或CD19表达下调,这也能确保有效靶向白血病。因此,CAR-iNKT细胞可同时利用两类不同的白血病相关抗原——CAR抗原和NKG2D配体——为治疗KMT2Ar-ALL提供强有力的平台。该策略也可快速调整用于其他高危恶性肿瘤,包括难以靶向的软脑膜受累病例。
Current therapies, including autologous chimeric antigen receptor (CAR) T-cell immunotherapy, fail to cure half of infants with KMT2A-rearranged acute lymphoblastic leukemia (KMT2Ar-ALL), a disease characterized by frequent central nervous system involvement, poor treatment response, early relapse, and lineage switching. More effective treatment strategies, including the availability of off-the-shelf immunotherapies, is particularly relevant in infants. PROM1/CD133 is a direct target of KMT2A-fusion oncoproteins and is expressed on leukemic cells. Allogeneic invariant natural killer T (iNKT) cells, "innately" more powerful effectors than T cells, can be deployed off-the-shelf without risk of acute graft-versus-host disease. Here, we equip iNKT cells with CD19- and/or CD133-targeting CARs, and investigate their antileukemia activity against KMT2Ar-ALL in relevant in vitro and in vivo models. Compared with monospecific counterparts and dual, bispecific CAR T cells, bispecific CD19-CD133 CAR-iNKT cells have a more potent antileukemia activity, effectively targeting both CAR antigen-high and -low leukemia. Bispecific CAR-iNKT cells eradicate medullary and, notably, leptomeningeal leukemia, and induce sustained remissions without discernible hematologic toxicity. Mechanistically, the more potent antileukemia effect of CAR-iNKT cells over CAR T cells is mediated by a pronounced CAR-dependent and CAR antigen-dependent upregulation of the innate activating receptor NKG2D on CAR-iNKT cells, and its engagement by its corresponding ligands on KMT2Ar-ALL cells. This ensures effective leukemia targeting even with downregulation of CD133 or CD19. Thus, by engaging with 2 different types of leukemia-associated antigens, that is, CAR antigens and NKG2D ligands, CAR-iNKT cells provide a powerful platform for the treatment of KMT2Ar-ALL. This approach can be readily adapted for other high-risk malignancies, including those with otherwise difficult to target leptomeningeal involvement.
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