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:Harnessing antibody-mediated recognition of the intracellular proteome with T cell receptor-like specificity.
癌症免疫治疗的临床成功推动了持续的研究,以寻找能够有效引导强效效应功能清除恶性细胞的新靶点。
癌症免疫治疗的临床成功推动了研究者持续寻找新靶点,以有效引导强效效应功能、清除恶性细胞。传统免疫疗法主要聚焦细胞表面抗原,但这类抗原仅占癌症蛋白质组很小一部分,限制了其治疗潜力。相比之下,人类蛋白质组中大部分蛋白位于细胞内,但可作为由MHC I类分子呈递于细胞表面的短肽。此类肽-MHC复合物为癌症免疫治疗提供了大量尚未充分利用的靶点。包括新抗原在内的细胞内蛋白质组,为开发新型细胞及可溶性免疫疗法带来重要机会。可通过特异性T细胞受体(TCR)或模拟TCR的抗体(称为TCR样[TCRL]抗体),靶向恶性细胞表面的细胞内来源肽-MHC分子。目前正在研究的治疗策略包括过继转移经TCR或TCRL工程化的T细胞,以及靶向肽-MHC复合物的CAR-T细胞;还有基于可溶性TCR和TCRL的药物,如双特异性T细胞衔接器。近期使用TCRL和TCR分子靶向细胞内蛋白质组的临床进展令人鼓舞;两种相关疗法近期获FDA批准,用于治疗不可切除或转移性葡萄膜黑色素瘤及滑膜肉瘤。本综述聚焦TCR和TCRL靶向结构域的筛选及分离流程,重点介绍探索肽-MHC靶向制剂用于癌症免疫治疗潜力的临床前和临床研究。
The clinical success of cancer immunotherapy has driven ongoing efforts to identify novel targets that can effectively guide potent effector functions to eliminate malignant cells. Traditionally, immunotherapies have focused on surface antigens; however, these represent only a small fraction of the cancer proteome, limiting their therapeutic potential. In contrast, the majority of proteins within the human proteome are intracellular, yet they are represented on the cell surface as short peptides presented by MHC class I molecules. These peptide-MHC complexes offer a vast and largely untapped resource for cancer immunotherapy targets. The intracellular proteome, including neo-antigens, presents an exciting opportunity for the development of novel cell-based and soluble immunotherapies. Targeting these intracellular-derived peptide-MHC molecules on malignant cell surfaces can be achieved using specific T-cell receptors (TCRs) or TCR-mimicking antibodies, known as TCR-like (TCRL) antibodies. Current therapeutic strategies under investigation include adoptive cell transfer of TCR-engineered or TCRL-T cells and CAR-T cells that target peptide-MHC complexes, as well as soluble TCR- and TCRL-based agents like bispecific T cell engagers. Recent clinical developments in targeting the intracellular proteome using TCRL- and TCR-based molecules have shown promising results, with two therapies recently receiving FDA approval for the treatment of unresectable or metastatic uveal melanoma and synovial sarcoma. This review focuses on the processes for selecting and isolating TCR- and TCRL-based targeting moieties, with an emphasis on pre-clinical and clinical studies that explore the potential of peptide-MHC targeting agents in cancer immunotherapy.
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