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早期转导产生具有中央记忆标志物的高功能嵌合抗原受体修饰的病毒特异性 T 细胞:细胞治疗的生产助理(PACT)的转化应用。

Early transduction produces highly functional chimeric antigen receptor-modified virus-specific T-cells with central memory markers: a Production Assistant for Cell Therapy (PACT) translational application.

机构信息

Center for Cell and Gene Therapy Baylor College of Medicine Texas Children's Hospital Houston Methodist Hospital, Houston, TX 77030 USA.

Department of Pathology and Immunology, Baylor College of Medicine, Houston, TX 77030 USA.

出版信息

J Immunother Cancer. 2015 Feb 18;3:5. doi: 10.1186/s40425-015-0049-1. eCollection 2015.

Abstract

BACKGROUND

Virus-specific T-cells (VSTs) proliferate exponentially after adoptive transfer into hematopoietic stem cell transplant (HSCT) recipients, eliminate virus infections, then persist and provide long-term protection from viral disease. If VSTs behaved similarly when modified with tumor-specific chimeric antigen receptors (CARs), they should have potent anti-tumor activity. This theory was evaluated by Cruz et al. in a previous clinical trial with CD19.CAR-modified VSTs, but there was little apparent expansion of these cells in patients. In that study, VSTs were gene-modified on day 19 of culture and we hypothesized that by this time, sufficient T-cell differentiation may have occurred to limit the subsequent proliferative capacity of the transduced T-cells. To facilitate the clinical testing of this hypothesis in a project supported by the NHLBI-PACT mechanism, we developed and optimized a good manufacturing practices (GMP) compliant method for the early transduction of VSTs directed to Epstein-Barr virus (EBV), Adenovirus (AdV) and cytomegalovirus (CMV) using a CAR directed to the tumor-associated antigen disialoganglioside (GD2).

RESULTS

Ad-CMVpp65-transduced EBV-LCLs effectively stimulated VSTs directed to all three viruses (triVSTs). Transduction efficiency on day three was increased in the presence of cytokines and high-speed centrifugation of retroviral supernatant onto retronectin-coated plates, so that under optimal conditions up to 88% of tetramer-positive VSTs expressed the GD2.CAR. The average transduction efficiency of early-and late transduced VSTs was 55 ± 4% and 22 ± 5% respectively, and early-transduced VSTs maintained higher frequencies of T cells with central memory or intermediate memory phenotypes. Early-transduced VSTs also had higher proliferative capacity and produced higher levels of TH1 cytokines IL-2, TNF-α, IFN-γ, MIP-1α, MIP-1β and other cytokines in vitro.

CONCLUSIONS

We developed a rapid and GMP compliant method for the early transduction of multivirus-specific T-cells that allowed stable expression of high levels of a tumor directed CAR. Since a proportion of early-transduced CAR-VSTs had a central memory phenotype, they should expand and persist in vivo, simultaneously protecting against infection and targeting residual malignancy. This manufacturing strategy is currently under clinical investigation in patients receiving allogeneic HSCT for relapsed neuroblastoma and B-cell malignancies (NCT01460901 using a GD2.CAR and NCT00840853 using a CD19.CAR).

摘要

背景

病毒特异性 T 细胞(VST)在被过继转移到造血干细胞移植(HSCT)受者后会呈指数级增殖,消除病毒感染,然后持续存在并提供长期的病毒疾病保护。如果经过肿瘤特异性嵌合抗原受体(CAR)修饰的 VST 表现出类似的行为,它们应该具有强大的抗肿瘤活性。Cruz 等人在之前一项针对 CD19.CAR 修饰的 VST 的临床试验中评估了这一理论,但在患者中这些细胞的明显扩增很少。在该研究中,VST 在培养的第 19 天进行基因修饰,我们假设此时,T 细胞分化可能已经足够,从而限制了转导 T 细胞的后续增殖能力。为了通过 NHLBI-PACT 机制支持的项目在临床试验中检验这一假设,我们开发并优化了一种符合良好生产规范(GMP)的方法,用于使用针对肿瘤相关抗原神经节苷脂(GD2)的 CAR 对 EBV、腺病毒(AdV)和巨细胞病毒(CMV)进行早期转导,针对 EBV、AdV 和 CMV 的病毒特异性 T 细胞(triVST)。

结果

Ad-CMVpp65 转导的 EBV-LCL 可有效刺激针对所有三种病毒的 triVST。在细胞因子存在和将逆转录病毒上清液高速离心到 retronectin 包被的平板上的情况下,第 3 天的转导效率增加,因此在最佳条件下,高达 88%的四聚体阳性 VST 表达 GD2.CAR。早期和晚期转导的 VST 的平均转导效率分别为 55±4%和 22±5%,早期转导的 VST 保持更高频率的具有中央记忆或中间记忆表型的 T 细胞。早期转导的 VST 还具有更高的增殖能力,并在体外产生更高水平的 TH1 细胞因子 IL-2、TNF-α、IFN-γ、MIP-1α、MIP-1β 和其他细胞因子。

结论

我们开发了一种快速且符合 GMP 的方法,用于早期转导多病毒特异性 T 细胞,允许稳定表达高水平的肿瘤导向 CAR。由于一部分早期转导的 CAR-VST 具有中央记忆表型,它们应该在体内扩增和持续存在,同时防止感染和靶向残留的恶性肿瘤。该制造策略目前正在接受同种异体 HSCT 治疗复发性神经母细胞瘤和 B 细胞恶性肿瘤的患者中进行临床试验(NCT01460901 使用 GD2.CAR,NCT00840853 使用 CD19.CAR)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ae0/4346112/1bb79d5e556a/40425_2015_49_Fig1_HTML.jpg

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