中文摘要
髓母细胞瘤(MB)是儿童最常见的恶性脑肿瘤。第3组和第4组MB患者临床结局不佳,凸显了开发新疗法的迫切需求。聚糖-2(GPC2)是一种近期发现的癌胚抗原。鉴于其在脑肿瘤中的表达,研究者评估了GPC2嵌合抗原受体(CAR)对MB的临床前活性,并与两种现有的靶向GD2和B7-H3的CAR进行比较。研究者分析公开数据集的基因表达,并通过患者样本免疫组化染色进行验证。研究使用MB细胞系D283及新建立的患者来源异种移植细胞系MAF1433;采用细胞因子微球检测和单细胞RNA测序(scRNA-seq)开展机制研究。MB患者样本中GPC2表达最高可达中等水平。在原位肿瘤模型中,经静脉或脑室内给药的GPC2-CAR均可显著使肿瘤消退;对D283的活性与B7-H3-CAR相当,并且在两种体内模型中的活性均高于GD2-CAR。T细胞动力学研究发现,GPC2-CAR-T 细胞可归巢至原发肿瘤区域、发生扩增,并上调对细胞毒性和T细胞归巢至关重要的基因。这些结果为即将开展的GPC2-CAR-T 细胞临床试验纳入GPC2阳性MB患儿提供了临床前依据。
展开英文摘要原文
Medulloblastoma (MB) is the most common malignant brain tumor in children. Patients with group 3 and 4 MB have poor clinical outcomes, underscoring the urgent need for new therapies. Glypican-2 (GPC2) is a recently discovered oncofetal antigen. Given its expression in brain tumors, we evaluated the preclinical activity of our GPC2-chimeric antigen receptor (CAR) against MB and compared it to two existing CARs targeting GD2 and B7-H3. Gene expression analysis of publicly available datasets was performed and validated with immunohistochemistry staining of patient samples. The MB cell line D283 and a newly generated cell line patient-derived xenograft, MAF1433, were used.
Cytokine bead assays and single-cell RNA sequencing (scRNA-seq) were used for mechanistic studies. MB patient samples express up to moderate levels of GPC2. GPC2-CARs lead to significant in vivo tumor regression in orthotopic tumor models via intravenous or intraventricular administration route and had equivalent activity to the B7-H3-CAR against D283 and enhanced activity than GD2-CAR in both models in vivo .
T cell kinetic studies revealed that GPC2-CAR T cells home to the area of the primary tumor, expand, and upregulate genes critical for cytotoxicity and T cell homing. These results provide a preclinical rationale for including children with GPC2 + MB in our upcoming clinical GPC2-CAR T cell trial.
论文信息
- 作者
- Okada R、Fanuzzi M、Rodriguez C、Oh J、Sreenivasan A、Stack HG、Puebla M、Phadke I
- 单位
- Pediatric Oncology Branch, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA.United States
- 期刊
- Molecular therapy. Oncology2025 Dec 18