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.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Immune checkpoint inhibitors for glioblastoma: emerging science, clinical advances, and future directions.
Immune checkpoint inhibitors for glioblastoma: emerging science, clinical advances, and future directions.
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胶质母细胞瘤(GBM)是成人最常见、侵袭性最强的原发性中枢神经系统(CNS)肿瘤,预后仍极差。数百项临床试验中,只有少数新策略转化为临床实践,过去三十年生存期仅延长数月。免疫检查点抑制剂(ICI)在晚期或转移性颅外实体瘤中取得显著成功,但其随机对照试验迄今未能证明对GBM患者有临床获益。这可能与GBM异质性、CNS独特的免疫抑制微环境、癌细胞的免疫逃逸策略以及肿瘤在治疗过程中的快速演变有关。本综述旨在总结GBM ICI关键临床试验的发现,回顾既往失败,并介绍目前有前景的研究方向。
我们探讨驱动ICI应答的生物学机制,重点关注肿瘤微环境、免疫逃逸及分子生物标志物的作用。除传统的PD-1、PD-L1和CTLA-4单药治疗外,还介绍GBM治疗中的新兴策略,包括双药ICI,以及ICI联合溶瘤病毒疗法、抗原肽疫苗、嵌合抗原受体(CAR)T细胞疗法,并利用纳米颗粒递送系统增强ICI疗效。综述还强调改善患者筛选和治疗个体化的潜在策略,以及通过先进影像和液体活检实时、纵向监测治疗应答。整合影像组学、组织和血浆分析,可能有助于发现免疫治疗应答特征,从而支持尽早、灵活调整治疗。针对当前治疗挑战的策略有望改善GBM患者结局。
Glioblastoma (GBM), the most common and aggressive primary central nervous system (CNS) tumor in adults, continues to have a dismal prognosis. Across hundreds of clinical trials, few novel approaches have translated to clinical practice while survival has improved by only a few months over the past three decades. Randomized controlled trials of immune checkpoint inhibitors (ICIs), which have seen impressive success for advanced or metastatic extracranial solid tumors, have so far failed to demonstrate a clinical benefit for patients with GBM.
This has been secondary to GBM heterogeneity, the unique immunosuppressive CNS microenvironment, immune-evasive strategies by cancer cells, and the rapid evolution of tumor on therapy. This review aims to summarize findings from major clinical trials of ICIs for GBM, review historic failures, and describe currently promising avenues of investigation.
We explore the biological mechanisms driving ICI responses, focusing on the role of the tumor microenvironment, immune evasion, and molecular biomarkers. Beyond conventional monotherapy approaches targeting PD-1, PD-L1, CTLA-4, we describe emerging approaches for GBM, such as dual-agent ICIs, and combination of ICIs with oncolytic virotherapy, antigenic peptide vaccines, chimeric antigenic receptor (CAR) T-cell therapy, along with nanoparticle-based delivery systems to enhance ICI efficacy.
We highlight potential strategies for improving patient selection and treatment personalization, along with real-time, longitudinal monitoring of therapeutic responses through advanced imaging and liquid biopsy techniques. Integrated radiomics, tissue, and plasma-based analyses, may potentially uncover immunotherapeutic response signatures, enabling early, adaptive therapeutic adjustments. By specifically targeting current therapeutic challenges, outcomes for GBM patients may potentially be improved.
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