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:Infectious complications of CAR T-cell therapy across novel antigen targets in the first 30 days.
我们提供了输注后30天内多种靶点和疾病感染风险的广泛概述,阐明了独特特征和共性,突出了对改善患者预后重要的方面。
感染是嵌合抗原受体(CAR)T细胞治疗已知的并发症,相关数据主要来自CD19 CAR T细胞靶向治疗。随着CAR T细胞治疗不断发展,感染风险及其管理将变得越来越重要,以优化针对不同抗原和疾病靶点的治疗结局。我们回顾性描述了在5项1期CAR T细胞临床试验中接受治疗的162名儿童和成人中发生的感染性并发症。试验包括靶向CD19、CD22、双唾液酸神经节苷脂(GD2)或B细胞成熟抗原(BCMA)。53名患者(32.7%)在淋巴细胞清除(LD)化疗至第30天(D30)期间发生了76次感染;大多数感染(61次,80.3%)发生在第0天(D0)至D30之间。按试验划分,感染比例最高的是CD22 CAR T细胞(n = 23/53;43.4%),其次是BCMA CAR T细胞(n = 9/24;37.5%)。按疾病划分,多发性骨髓瘤患者的感染比例最高(9/24;37.5%),其次是急性淋巴细胞白血病(36/102;35.3%)。4级感染罕见(n = 4;2.5%)。在D0至D30之间,菌血症和细菌性部位感染是最常见的感染类型。在单变量分析中,既往治疗线数增加、LD化疗前100天内有近期感染、使用皮质类固醇或托珠单抗,以及发热和中性粒细胞减少与更高的感染风险相关。在多变量分析中,仅既往治疗线数和近期感染与更高的感染风险相关。总之,我们提供了输注后30天内多种靶点和疾病感染风险的广泛概述,阐明了独特特征和共性,突出了对改善患者预后重要的方面。
Infections are a known complication of chimeric antigen receptor (CAR) T-cell therapy with data largely emerging from CD19 CAR T-cell targeting. As CAR T-cell therapy continues to evolve, infection risks and management thereof will become increasingly important to optimize outcomes across the spectrum of antigens and disease targeted. We retrospectively characterized infectious complications occurring in 162 children and adults treated among 5 phase 1 CAR T-cell clinical trials. Trials included targeting of CD19, CD22, disialoganglioside (GD2) or B-cell maturation antigen (BCMA). Fifty-three patients (32.7%) had 76 infections between lymphocyte depleting (LD) chemotherapy and day 30 (D30); with the majority of infections (61, 80.3%) occurring between day 0 (D0) and D30. By trial, the highest proportion of infections was seen with CD22 CAR T cells (n = 23/53; 43.4%), followed by BCMA CAR T cells (n = 9/24; 37.5%). By disease, patients with multiple myeloma had the highest proportion of infections (9/24; 37.5%) followed by acute lymphoblastic leukemia (36/102; 35.3%). Grade 4 infections were rare (n = 4; 2.5%). Between D0 and D30, bacteremia and bacterial site infections were the most common infection type. In univariate analysis, increasing prior lines of therapy, recent infection within 100 days of LD chemotherapy, corticosteroid or tocilizumab use, and fever and neutropenia were associated with a higher risk of infection. In a multivariable analysis, only prior lines of therapy and recent infection were associated with higher risk of infection. In conclusion, we provide a broad overview of infection risk within the first 30 days post infusion across a host of multiple targets and diseases, elucidating both unique characteristics and commonalities highlighting aspects important to improving patient outcomes.
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