γδ T 细胞调节小细胞肺癌中的抗肿瘤免疫
γδ T cells modulate anti-tumor immunity in small cell lung cancer.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:A Simple and Robust Single-Step Method for CAR-Vδ1 γδT Cell Expansion and Transduction for Cancer Immunotherapy.
A Simple and Robust Single-Step Method for CAR-Vδ1 γδT Cell Expansion and Transduction for Cancer Immunotherapy.
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外周淋巴细胞的γδT细胞亚群表现出不依赖于经典肽-MHC复合物的强效肿瘤抗原识别能力,使其成为异体癌症过继免疫治疗的有吸引力的候选者。与外周γδT细胞中更为常见的Vγ9Vδ2-TCR和αβ-TCR表达亚群相比,表达Vδ1-T细胞受体(TCR)的亚群一直鲜为人知。尽管自20世纪80年代以来Vδ1细胞在肿瘤学适应症方面一直具有临床前前景,但直到2021年才有首例患者接受了异体过继Vδ1细胞产品的治疗。Vδ1细胞临床进展匮乏的一个促成因素是缺乏稳健、一致且符合GMP的扩增方案。
在此,我们描述了一种可重复的一步法、可临床转化的方案,用于从外周血单个核细胞(PBMCs)中扩增Vδ1-γδT细胞,该方案进一步兼容用于免疫治疗目的的高效基因工程改造。简言之,用本领域已知的T细胞刺激物抗CD3 mAb(克隆号:OKT-3)和IL-15刺激经αβTCR和CD56去除的PBMC,可导致Vδ1细胞稳健扩增,具有高纯度和类先天性抗肿瘤效力。这些Vδ1细胞可使用标准技术进行病毒转导以表达嵌合抗原受体(CARs),且CAR-Vδ1表现出抗原特异性持久性、细胞毒性和产生IFN-γ。可行的、符合GMP的工程化Vδ1细胞扩增方法对于这些细胞在肿瘤学适应症中的广泛临床测试将至关重要。
The γδT cell subset of peripheral lymphocytes exhibits potent cancer antigen recognition independent of classical peptide MHC complexes, making it an attractive candidate for allogeneic cancer adoptive immunotherapy. The Vδ1-T cell receptor (TCR)-expressing subset of peripheral γδT cells has remained enigmatic compared to its more prevalent Vγ9Vδ2-TCR and αβ-TCR-expressing counterparts.
It took until 2021 before a first patient was dosed with an allogeneic adoptive Vδ1 cell product despite pre-clinical promise for oncology indications stretching back to the 1980s. A contributing factor to the paucity of clinical progress with Vδ1 cells is the lack of robust, consistent and GMP-compatible expansion protocols.
Herein we describe a reproducible one-step, clinically translatable protocol for Vδ1-γδT cell expansion from peripheral blood mononuclear cells (PBMCs), that is further compatible with high-efficiency gene engineering for immunotherapy purposes. Briefly, αβTCR- and CD56-depleted PBMC stimulation with known-in-the-art T cell stimulators, anti-CD3 mAb (clone: OKT-3) and IL-15, leads to robust Vδ1 cell expansion of high purity and innate-like anti-tumor efficacy.
These Vδ1 cells can be virally transduced to express chimeric antigen receptors (CARs) using standard techniques, and the CAR-Vδ1 exhibit antigen-specific persistence, cytotoxicity and produce IFN-γ. Practicable, GMP-compatible engineered Vδ1 cell expansion methods will be crucial to the wide-spread clinical testing of these cells for oncology indications.
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