研究概要
up-LC14A1模型代表了一个患者来源的HBV-HCC系统,捕获了克隆稳定但动态调控的HLA-G介导的免疫耐受状态。该平台使得免疫逃逸的机制研究成为可能,并为在HBV相关HCC中测试靶向免疫疗法提供了转化模型。影响与意义:HBV相关HCC表现出深刻的免疫逃逸能力和对免疫疗法的不充分应答。然而,模拟病毒持续存在和肿瘤耐药的临床前模型仍然不足。免疫调节分子HLA-G因其直接抑制T细胞和NK细胞,已成为HCC免疫治疗的有力靶点。在此,我们建立了一种新型患者来源的HBV-HCC细胞系(up-LC14A1),其通过HLA-G上调介导免疫逃逸。
研究思路结论见上方概要
目的
HBV相关肝细胞癌(HCC)以免疫逃逸和对免疫治疗的反应异质性为特征。然而,驱动肿瘤免疫耐受的机制及其对基于检查点抑制剂治疗的影响仍知之甚少。为填补这一空白,我们构建了一株患者来源的HBV诱导HCC细胞系,该细胞系保留了由人类白细胞抗原G(HLA-G)表达介导的、具有临床相关性的免疫逃逸机制。
方法
我们对两个空间分离的肿瘤区域进行了全外显子组测序,以定义基因组特征,重点关注 HLA-G 位点。使用 upcyte® 技术对患者来源的肿瘤细胞进行修饰,生成 up-LC14A1 细胞系。分子分层包括一个内部 HCC 队列(n = 13)、健康供者(n = 4)、早期肝病血清样本(n = 4)、确诊 HCC(n = 10)以及全球数据集(TCGA 活检,n = 24;HCC,n = 120)。功能表征包括 NK92 共培养实验(1:1、1:5、1:10)和小鼠原位移植(HUH7,n = 3;Hep3B,n = 4;HepG2H1.3,n = 4;up-LC14A1,n = 14)。
结果
全外显子组测序揭示了一例克隆一致的HCC,携带与免疫耐受相关的HLA-G 3'UTR单倍型。队列分层证实患者#14中可溶性HLA-G升高。衍生的up-LC14A1细胞系保留了肝胆和病毒特征,并表现出稳定增殖及低水平HBV DNA产生。转录组分析将up-LC14A1定位于HCC图谱中。在体内,原位移植产生了结构化的肝脏肿瘤,与永生化HCC细胞系相比延长了生存期。up-LC14A1细胞系通过动态HLA-G诱导抵抗NK92细胞毒性,而HLA-G沉默恢复了免疫杀伤并诱导了代偿性PD-L1表达。
展开英文摘要原文
BACKGROUND & AIMS: HBV-associated hepatocellular carcinoma (HCC) is characterized by immune evasion and heterogeneous responses to immunotherapy. However, the mechanisms driving tumor-immune tolerance and their impact on checkpoint inhibitor-based therapies remain poorly understood. To address this gap, we generated a patient-derived HBV-induced HCC cell line that preserves a clinically relevant immune evasion mechanism mediated by human leukocyte antigen G (HLA-G) expression.
METHODS: We performed whole-exome sequencing on two spatially separated tumor regions to define genomic signatures with emphasis on the HLA-G locus. Patient-derived tumor cells were modified using upcyte® technology, generating the up-LC14A1 cell line. Molecular stratification included an in-house HCC cohort (n = 13), healthy donors (n = 4), serum samples from early-stage liver disease (n = 4), diagnosed HCC (n = 10), and global datasets (TCGA biopsies, n = 24; HCC, n = 120). Functional characterization included NK92 co-culture assays (1:1, 1:5, 1:10) and orthotopic transplantation in mice (HUH7, n = 3; Hep3B, n = 4; HepG2H1.3, n = 4; up-LC14A1, n = 14).
RESULTS: Whole-exome sequencing revealed a clonally coherent HCC carrying an HLA-G 3'UTR haplotype associated with immune tolerance. Cohort stratification confirmed elevated soluble HLA-G in patient #14. The derived up-LC14A1 line retained hepatobiliary and viral features and showed stable proliferation with low-level HBV DNA production. Transcriptomic profiling positioned up-LC14A1 within the HCC landscape. In vivo, orthotopic transplantation generated structured liver tumors and prolonged survival compared with immortalized HCC lines. The up-LC14A1 cell line resisted NK92 cytotoxicity through dynamic HLA-G induction, while HLA-G silencing restored immune killing and induced compensatory PD-L1 expression.
CONCLUSIONS: The up-LC14A1 model represents a patient-derived HBV-HCC system capturing a clonally stable but dynamically regulated HLA-G-mediated immune-tolerant state. This platform enables mechanistic investigation of immune escape and provides a translational model for testing targeted immunotherapies in HBV-associated HCC.
IMPACT AND IMPLICATIONS: HBV-associated HCC exhibits a profound immune evasion capacity and an insufficient response to immunotherapy. Nevertheless, preclinical models that mimic viral persistence and tumor resistance are underrepresented. The immune modulatory molecule HLA-G has emerged as a potent target for immunotherapy in HCCs owing to its direct suppression of T and NK cells. Here, we established a novel patient-derived HBV-HCC cell line (up-LC14A1) that mediates immune evasion via HLA-G upregulation.
论文信息
- 作者
- Kah J、Staffeldt L、Stefanski S、Herzog N、Mattert G、Volz T、Voß M、Schulze K
- 单位
- Department of Medicine, University Medical Center Hamburg-Eppendorf, Hamburg, Germany; Faculty of Health Sciences Brandenburg, Brandenburg Medical School Theodor Fontane, Brandenburg, Germany; Department of Gastroenterology, Diabetology and Hepatology, University Hospital Brandenburg, Brandenburg Medical School Theodor Fontane, Brandenburg, Germany; Center for Translational Medicine, Brandenburg Medical School Theodor Fontane, Brandenburg, Germany. Electronic address: janine.kah@mhb-fontane.de.Germany
- 期刊
- JHEP reports : innovation in hepatology2026 Aug