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:MAGE-A4 pMHC-targeted CAR-T cells exploiting TCR machinery exhibit significantly improved in vivo function while retaining antigen specificity.
这些发现表明,利用 TCR 机制是增强靶向 pMHC 的 CAR-T 细胞治疗实体瘤的一种有前景的策略,有望带来更有效的治疗。
背景:实体瘤嵌合抗原受体(CAR)T细胞疗法受到广泛关注,但临床疗效仍有限,因此研究者已尝试多种方法提高其效能。一项有前景的策略是在CAR结构中引入T细胞受体(TCR)元件;既往针对EGFR等靶点的传统CAR研究显示,这样做可能提升CAR-T细胞疗效。然而,对于靶向肽/主要组织相容性复合体(pMHC)的CAR,利用TCR元件的优势尚未充分明确。我们近期使用一种针对MAGE-A4 p230-239/HLA-A*02:01的高特异性人源单链可变片段(scFv)抗体,开发了靶向MAGE-A4来源pMHC的CAR-T细胞(MA-CAR-T细胞)。本研究旨在确定利用TCR元件的MAGE-A4 pMHC靶向CAR-T细胞(Hybrid MA-TCR-T细胞)能否在不损害抗原特异性的前提下表现出更优功能。 方法:研究构建了表达Hybrid MA-TCR的逆转录病毒载体,其中MAGE-A4 pMHC特异性scFv与人TCR恒定区链融合。 结果:与MA-CAR-T细胞相比,Hybrid MA-TCR-T细胞在体外功能更强,同时保持严格的抗原特异性。重复抗原刺激后,Hybrid MA-TCR-T细胞相对于MA-CAR-T细胞的功能优势更加明显。尤其是在免疫缺陷小鼠模型中,Hybrid MA-TCR-T细胞对肿瘤生长的抑制显著强于MA-CAR-T细胞。离体分析提示,其治疗效力增强可能源于肿瘤组织内功能活跃、分化程度较低的Hybrid MA-TCR-T细胞浸润更多。 结论:这些发现提示,利用TCR元件是增强针对实体瘤的pMHC靶向CAR-T细胞疗法的一种有前景策略,可能带来更有效的治疗。
BACKGROUND: The development of chimeric antigen receptor (CAR)-T cell therapies for solid tumors has attracted considerable attention, yet their clinical efficacy remains limited. Therefore, various efforts have been made to improve the efficacy of CAR-T cell therapy. As one promising strategy, incorporating the T-cell receptor (TCR) machinery into CAR structures has been reported to improve the efficacy of CAR-T cells in studies using conventional CARs targeting such as EGFR. However, in the case of peptide/major histocompatibility complex (pMHC)-targeted CARs, the advantages of exploiting TCR machinery have not been fully elucidated. We recently developed MAGE-A4-derived pMHC (MAGE-A4 pMHC)-targeted CAR-T cells (MA-CAR-T cells) using a highly specific human scFv antibody against MAGE-A4 p230-239 /HLA-A*02:01. We aimed to determine whether MAGE-A4 pMHC-targeted CAR-T cells using the TCR machinery (Hybrid MA-TCR-T cells) exhibit superior functionality without compromising antigen specificity. METHODS: We constructed a retroviral vector expressing Hybrid MA-TCR where MAGE-A4 pMHC-specific scFv are fused to human TCR constant chains. RESULTS: Hybrid MA-TCR-T cells demonstrated superior in vitro functions compared with MA-CAR-T cells, while maintaining strict antigen specificity. In addition, functional superiority of Hybrid MA-TCR-T cells to MA-CAR-T cells became more pronounced on repetitive antigen stimulation. In particular, Hybrid MA-TCR-T cells significantly inhibited tumor growth in an immunodeficient mouse model more effectively than MA-CAR-T cells. Ex vivo analyses indicated that their enhanced therapeutic efficacy might result from higher infiltration of functionally active, less differentiated Hybrid MA-TCR-T cells in tumor tissues. CONCLUSIONS: These findings suggest that leveraging the TCR machinery is a promising strategy for enhancing pMHC-targeted CAR-T cell therapy for solid tumors, potentially leading to more effective treatments.
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