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:Single-Cell RNAseq Profiling of Human γδ T Lymphocytes in Virus-Related Cancers and COVID-19 Disease.
这些发现表明,一些病毒诱导的记忆γδ T淋巴细胞在成人血液中持久存在,并随后可能浸润肿瘤并在肿瘤中再循环。
在肿瘤和2019冠状病毒病(COVID-19)患者中,于单细胞转录组(scRNAseq)水平详细刻画人类γδ T淋巴细胞的分化,需要既有一个γδ T细胞分化的参考轨迹,也需要一种用于其他γδ T淋巴细胞的稳健映射方法。在此,我们创建了这样一种方法,用于刻画来自(n = 95)癌症患者或成人及儿童COVID-19患者的数千个γδ T淋巴细胞。我们发现,人乳头瘤病毒阳性头颈部鳞状细胞癌和Epstein-Barr病毒阳性霍奇金淋巴瘤的癌症患者,其γδ肿瘤浸润T淋巴细胞更倾向于从肿瘤再循环并避免耗竭。在COVID-19中,γδ T淋巴细胞的TCRVγ9和TCRVγnon9亚群均从外周血单个核细胞(PBMC)重新定位到受感染的肺组织,在那里其晚期分化、组织驻留和耗竭反映了T细胞活化。尽管重型COVID-19疾病增加了受感染肺病灶而非血液中γδ T淋巴细胞的募集和耗竭,但使用Tocilizumab的抗IL6R治疗促进了COVID-19患者中γδ T淋巴细胞的分化。急性COVID-19疾病儿童患者的PBMC显示出与成人患者相似的γδ T细胞淋巴细胞减少。然而,患有COVID-19相关多系统炎症综合征的儿童,其血液γδ T细胞并未淋巴细胞耗竭,但其分化情况与健康PBMC中一样。这些发现表明,一些病毒诱导的记忆γδ T淋巴细胞可在成人血液中持久存在,并随后可浸润肿瘤并在肿瘤中再循环。
The detailed characterization of human γδ T lymphocyte differentiation at the single-cell transcriptomic (scRNAseq) level in tumors and patients with coronavirus disease 2019 (COVID-19) requires both a reference differentiation trajectory of γδ T cells and a robust mapping method for additional γδ T lymphocytes. Here, we incepted such a method to characterize thousands of γδ T lymphocytes from ( n = 95) patients with cancer or adult and pediatric COVID-19 disease. We found that cancer patients with human papillomavirus-positive head and neck squamous cell carcinoma and Epstein-Barr virus-positive Hodgkin's lymphoma have γδ tumor-infiltrating T lymphocytes that are more prone to recirculate from the tumor and avoid exhaustion. In COVID-19, both TCRVγ9 and TCRVγnon9 subsets of γδ T lymphocytes relocalize from peripheral blood mononuclear cells (PBMC) to the infected lung tissue, where their advanced differentiation, tissue residency, and exhaustion reflect T cell activation. Although severe COVID-19 disease increases both recruitment and exhaustion of γδ T lymphocytes in infected lung lesions but not blood, the anti-IL6R therapy with Tocilizumab promotes γδ T lymphocyte differentiation in patients with COVID-19. PBMC from pediatric patients with acute COVID-19 disease display similar γδ T cell lymphopenia to that seen in adult patients. However, blood γδ T cells from children with the COVID-19-related multisystem inflammatory syndrome are not lymphodepleted, but they are differentiated as in healthy PBMC. These findings suggest that some virus-induced memory γδ T lymphocytes durably persist in the blood of adults and could subsequently infiltrate and recirculate in tumors.
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