CD81 通过阻断 CD274/PD-L1 的选择性自噬降解驱动放射抵抗性胶质母细胞瘤的免疫逃逸
CD81 drives immune evasion in radioresistant glioblastoma by blocking selective autophagic degradation of CD274/PD-L1.
我们的工作确立了CD81作为连接放射抵抗与免疫逃逸的关键桥梁,其通过维持GBM中CD274的丰度发挥作用,并突显CD81作为优化放射免疫治疗的有前景的治疗靶点。
英文原题:Elucidating Tumorigenesis Mechanisms and Assessing Immunotherapeutic Efficacy in Patient-Derived Medulloblastoma Organoid Models.
我们的 MBO 系统整体上忠实地再现了关键的肿瘤特征,可作为研究肿瘤发生机制和评估治疗反应的有价值平台。
髓母细胞瘤是最常见的儿童恶性脑肿瘤之一。由于缺少准确反映肿瘤异质性的模型,致癌机制研究和治疗效果评估仍面临重大挑战。为克服这一限制,研究者建立了 10 个患者来源髓母细胞瘤类器官(MBO),其保留了原始肿瘤的组织学特征和细胞多样性。这些 MBO 具有较强浸润能力:体外可通过与人胚胎干细胞来源脑类器官共培养实现浸润,体内则可在原位或皮下移植后浸润,为研究肿瘤微环境内相互作用提供潜在平台。通过整合 RNA 测序、全外显子组测序和 DNA 甲基化分析,研究证明 MBO 忠实保留亲本肿瘤的转录、基因组和表观遗传特征。单细胞转录组分析显示,MBO 和原发肿瘤之间保留了相似的细胞亚群。研究结果提示,光感受器相关通路可能在第 4 组髓母细胞瘤发病中发挥此前未识别的作用,并可能与肿瘤微环境相互作用有关。此外,研究者根据肿瘤细胞中 IMPG2、BNC2、PAPPA2、ITGBL1 和 UNC13C 的表达水平开发预后列线图,用于预测生存结局。值得注意的是,从患者标本扩增的TIL(肿瘤浸润淋巴细胞)对体外共培养的自体 MBO 显示显著细胞毒活性,并在体内有效抑制皮下 MBO 异种移植瘤生长。这些结果显示 TIL 免疫疗法治疗髓母细胞瘤具有潜力。总体而言,MBO 系统忠实重现肿瘤关键特征,可用于研究致瘤机制和评估治疗应答;该研究既促进基础生物学研究,也加快髓母细胞瘤临床转化。
Medulloblastoma is one of the most common malignant pediatric brain tumors. There remain significant challenges in investigating oncogenic mechanisms and evaluating therapeutic efficacy due to the limited available models that accurately reflect tumor heterogeneity. To overcome this limitation, we established 10 patient-derived medulloblastoma organoids (MBOs) that retain the histological characteristics, and cellular diversity of the original tumors. These MBOs demonstrate strong infiltration capabilities, both in vitro through co-culture with human embryonic stem cell-derived cerebral organoids and in vivo following orthotopic or subcutaneous transplantation, establishing a potential platform for investigating interactions within the tumor microenvironment. Using integrated RNA sequencing, whole-exome sequencing, and DNA methylation profiling, we demonstrated that MBOs faithfully preserve the transcriptional, genomic, and epigenetic landscapes of their parental tumors. Single-cell transcriptomic analysis revealed conserved cellular subpopulation between MBOs and primary tumors. Our findings suggest that photoreceptor-related pathways may play an unprecedented role in the pathogenesis of Group 4 medulloblastoma and may be associated with interactions within the tumor microenvironment. Furthermore, we developed a prognostic nomogram based on IMPG2, BNC2, PAPPA2, ITGBL1and UNC13C expression levels in tumor cells to predict survival outcomes. Notably, tumor-infiltrating lymphocytes (TILs) expanded from patient specimens exhibited significant cytotoxic activity against autologous MBOs co-cultured in vitro and effectively suppressed the growth of subcutaneous MBO xenografts in vivo . These findings demonstrate the potential of TIL-based immunotherapy for medulloblastoma treatment. Collectively, our MBO system faithfully recapitulates critical tumor characteristics and serves as a valuable platform for investigating tumorigenic mechanisms and assessing therapeutic responses. This study not only promotes fundamental biological research but also accelerates clinical translation in medulloblastoma.
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