为肝细胞癌武装 GPC3 CAR T 细胞:多少才足够,下一步是什么?
Armouring GPC3 CAR T cells for hepatocellular carcinoma: how much is enough and what comes next?
英文原题:TCR T cells overexpressing c-Jun have better functionality with improved tumor infiltration and persistence in hepatocellular carcinoma.
TCR T cells overexpressing c-Jun have better functionality with improved tumor infiltration and persistence in hepatocellular carcinoma.
c-Jun过表达可增强A2/AFP 158 TCR工程化T细胞的扩增、功能和持久性。c-Jun基因共递送有潜力在治疗HCC患者时增强AFP特异性TCR T细胞的抗肿瘤疗效。
肝细胞癌(HCC)是肝癌的主要形式,其总体5年生存率仅为20%,这凸显了对更有效疗法的需求。我们最近鉴定出针对HLA-A2/甲胎蛋白氨基酸158-166(AFP 158)的特异性T细胞受体(TCR),并表明这些TCR工程化T细胞能够控制NSG小鼠中的HCC异种移植瘤。然而,其疗效受到TCR T细胞扩增不良、功能丧失和持久性短的限制。在此,我们研究了在TCR T细胞中过表达c-Jun(一种T细胞活化所需的转录因子)是否能够增强其在HCC肿瘤模型中的扩增、功能和持久性。
构建了表达HLA-A2/AFP 158特异性TCR或同时表达TCR和c-Jun(TCR-JUN)的重组慢病毒载体(lv),并分别用于转导原代人T细胞以生成TCR或TCR-JUN T细胞。我们在体外比较了HCC肿瘤刺激后TCR和TCR-JUN T细胞的扩增、效应功能和耗竭状态。此外,我们利用NSG小鼠中的HCC异种移植模型研究了TCR和TCR-JUN T细胞的持久性和抗肿瘤效果。
我们能够有效地转导原代人T细胞以表达TCR和c-Jun。与HLA-A2/AFP 158 TCR T细胞相比,TCR-JUN T细胞在培养中具有更好的扩增潜力,对HCC肿瘤细胞的功能能力增强。此外,TCR-JUN T细胞在HepG2肿瘤刺激后凋亡较少,且更耐受耗竭。在HCC异种移植肿瘤模型中,c-Jun过表达增强了TCR T细胞扩增,并提高了治疗小鼠的总体生存率。重要的是,TCR-JUN T细胞在肿瘤病灶中耗竭较少,并表现出增强的肿瘤浸润、功能性和持久性。
BACKGROUND: The overall 5-year survival rate of hepatocellular carcinoma (HCC), a major form of liver cancer, is merely 20%, underscoring the need for more effective therapies. We recently identified T cell receptors (TCR) specific for the HLA-A2/alpha fetoprotein amino acids 158-166 (AFP 158 ) and showed that these TCR engineered T cells could control HCC xenografts in NSG mice. However, their efficacy was limited by poor expansion, loss of function, and short persistence of the TCR T cells. Here, we studied whether overexpression of c-Jun, a transcription factor required for T cell activation, in the TCR T cells could enhance their expansion, function, and persistence in HCC tumor models. METHODS: Recombinant lentiviral vectors (lv), expressing either the HLA-A2/AFP 158 -specific TCR or both the TCR and c-Jun (TCR-JUN), were constructed and used to transduce primary human T cells to generate the TCR or TCR-JUN T cells, respectively. We compared the expansion, effector function, and exhaustion status of the TCR and TCR-JUN T cells in vitro after HCC tumor stimulation. Additionally, we studied the persistence and antitumor effects of the TCR and TCR-JUN T cells using the HCC xenografts in NSG mice. RESULTS: We could effectively transduce primary human T cells to express both TCR and c-Jun. Compared to the HLA-A2/AFP 158 TCR T cells, the TCR-JUN T cells have better expansion potential in culture, with enhanced functional capacity against HCC tumor cells. In addition, the TCR-JUN T cells were less apoptotic and more resistant to exhaustion after HepG2 tumor stimulation. In the HCC xenograft tumor model, c-Jun overexpression enhanced the TCR T cell expansion and increased the overall survival rate of the treated mice. Importantly, the TCR-JUN T cells were less exhausted in the tumor lesions and demonstrated enhanced tumor infiltration, functionality, and persistence. CONCLUSION: c-Jun overexpression can enhance the expansion, function, and persistence of the A2/AFP 158 TCR engineered T cells. The c-Jun gene co-delivery has the potential to enhance the antitumor efficacy of AFP specific TCR T cells when treating patients with HCC.
MEMBER ACCOUNT
登录成功会直接打开下一页。