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:Unconventional T cells in anti-cancer immunity.
与识别负载于主要组织相容性复合体(MHC)分子上的肽类抗原的常规T细胞不同,非常规T细胞响应由MHC I类样蛋白(如CD1和MHC相关蛋白1(MR1))呈递的非肽类代谢物抗原。
与识别主要组织相容性复合体(MHC)分子上肽段抗原的常规T细胞不同,非常规T细胞响应由MHC I类样蛋白(如CD1和MHC相关蛋白1(MR1))呈递的非肽类代谢物抗原。半恒定黏膜相关恒定T(MAIT)细胞、T细胞和恒定自然杀伤T(iNKT)细胞,连同表达多样T细胞受体(TCR)的其他CD1或MR1限制性T细胞亚群,引发不依赖于多样化MHC遗传背景的固有样反应。与感染中细菌来源核黄素前体代谢物总体增强的反应相反,MAIT细胞在胶质母细胞瘤、肺癌、结直肠癌及多种血液恶性肿瘤中常表现出免疫抑制或耗竭表型。尽管某些肿瘤细胞能激活MAIT细胞,但肿瘤来源MR1配体的结构和功能仍 largely 未知。哺乳动物来源激动剂和拮抗剂结合MR1蛋白的新发现,扩展了我们对MR1配体结构和功能的认识,从健康条件下的MAIT细胞激活到抗癌免疫。近期发现表明,核苷和核碱基类似物作为自身代谢物激活MR1限制性T细胞,并在肿瘤微环境中受到调控。同样,iNKT细胞在癌症中表现出动态作用,既能促进肿瘤免疫也能发挥抗肿瘤免疫。类似地,T细胞通过识别应激诱导蛋白和代谢物配体,也展示了保护性和促肿瘤双重角色。本综述进一步描绘了反应的独特动力学,强调非常规T细胞在实体瘤与血液癌症中的快速激活差异。新兴治疗策略,包括负载抗原的MR1和CD1、过继性T细胞转移、嵌合抗原受体-T(CAR-T)细胞、T细胞受体-T(TCR-T)细胞,以及与免疫检查点抑制剂的联合治疗,虽仍具挑战性,但有望克服肿瘤诱导的免疫抑制和传统T细胞疗法的遗传限制。通过解决关键空白,如癌症代谢物抗原的新结构与功能,非传统T细胞在抗癌免疫治疗中展现出独特优势。
Unlike conventional T cells that detect peptide antigens loaded to major histocompatibility complex (MHC) molecules, unconventional T cells respond to non-peptidic metabolite antigens presented by MHC class I-like proteins, such as CD1 and MHC-related protein 1 (MR1). Semi-invariant mucosal-associated invariant T (MAIT) cells, T cells, and invariant natural killer T (iNKT) cells, together with other CD1- or MR1-restricted T cell subsets expressing diverse T cell receptors (TCR), elicit an innate-like response independent of diverse MHC genetics. In contrast to an overall enhanced response to bacterial-derived riboflavin precursor metabolites in infections, MAIT cells often exhibit an immunosuppressive or exhausted phenotype in glioblastoma, lung cancer, colorectal cancer, and various hematological malignancies. Whereas some tumor cells can activate MAIT cells, the structures and functions of tumor-derived MR1 ligands remain largely unknown. Novel discoveries of mammalian-derived agonists and antagonists binding to MR1 protein are our knowledge of MR1 ligand structures and functions from MAIT cell activation in healthy conditions to anti-cancer immunity. Recent findings reveal that nucleoside and nucleobase analogs, as self-metabolites to activate MR1-restricted T cells, are regulated in the tumor microenvironment. Likewise, iNKT cells exhibit a dynamic role in cancer, capable of both protumor and antitumor immunity. Similarly, T cells have also demonstrated both protective and tumor-promoting roles, via recognizing stress-induced protein and metabolite ligands. This review further depicts the distinct kinetics of responses, highlighting a rapid activation of unconventional T cells in solid versus hematological cancers. Emerging therapeutic strategies, including antigen-loaded MR1 and CD1, adoptive T cell transfer, chimeric antigen receptor-T (CAR-T) cells, T cell receptor-T (TCR-T) cells, and combination treatments with immune checkpoint inhibitors, yet remain challenging, hold promise in overcoming tumor-induced immunosuppression and genetic restriction of conventional T cell therapies. By addressing critical gaps, such as novel structures and functions of cancer metabolite antigens, unconventional T cells offer unique advantages in anti-cancer immunotherapy.
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