CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Antigen Specificity and Cell Engineering Determine CAR T Cell Efficacy in Group 3 Medulloblastoma.
Antigen Specificity and Cell Engineering Determine CAR T Cell Efficacy in Group 3 Medulloblastoma.
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Group 3髓母细胞瘤(G3MB)是一种主要影响婴幼儿的中枢神经系统(CNS)毁灭性疾病。嵌合抗原受体(CAR)T细胞疗法有望改善CNS恶性肿瘤的预后,但很少有研究专门针对G3MB。
我们利用公开可用的数据集证明了原发G3MB中EphA2和B7-H3的表达,并在患者来源的细胞系中验证了其表达。在体外与MYC驱动的G3MB细胞系共培养实验中,EphA2-CAR-T 细胞比B7-H3-CAR-T 细胞具有更强的细胞溶解活性、持久性和TH1细胞因子产生能力。在体内,在3个原位G3MB模型中的2个中,EphA2-CAR-T 细胞相比B7-H3-CAR-T 细胞表现出更优的肿瘤控制能力和改善的生存期。在1个EphA2抗原密度比B7-H3低5倍的模型中,B7-H3-CAR-T 细胞优于EphA2-CAR-T 细胞。EphA2-CAR-T 细胞有限的抗肿瘤活性可以通过增加T细胞功能的第二遗传修饰来克服,包括敲除DNMT3A或表达组成性活跃的IL-18嵌合细胞因子受体。
因此,我们的研究提名EphA2-CAR-T 细胞作为B7-H3-CAR-T 细胞的有前景的替代方案,后者正在积极进行髓母细胞瘤的临床研究。
Group 3 medulloblastoma (G3MB) is a devastating disease of the central nervous system (CNS) that primarily affects infants and children. Chimeric antigen receptor (CAR) T cell therapy holds the promise to improve outcomes for CNS malignancies, but few studies have focused specifically on G3MB.
We used publicly available datasets to demonstrate EphA2 and B7-H3 expression in primary G3MB and validated expression in patient-derived cell lines. EphA2-CAR T cells had greater cytolytic activity, persistence, and TH1 cytokine production than B7-H3-CAR T cells in coculture assays with MYC-driven G3MB cell lines in vitro . In vivo , EphA2-CAR T cells demonstrated superior tumor control and improved survival compared to B7-H3-CAR T cells in 2 of 3 orthotopic G3MB models.
B7-H3-CAR T cells outperformed EphA2-CAR T cells in one model in which the antigen density of EphA2 was 5-fold lower than for B7-H3. The limited antitumor activity of EphA2-CAR T cells could be overcome with second genetic modifications that increase T cell functionality including deletion of DNMT3A or the expression of a constitutively active IL-18 chimeric cytokine receptor.
Thus, our study nominates EphA2-CAR T cells as a promising alternative to B7-H3-CAR T cells, which are actively being explored in clinical studies for medulloblastoma.
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