研究概要
胶质母细胞瘤仍然是中枢神经系统最致命的原发性恶性肿瘤,最大范围手术、放疗和替莫唑胺所取得的有限获益,并未被那些重塑了许多颅外癌症治疗的免疫检查点抑制剂和抗原特异性疫苗所匹敌。
中文摘要
胶质母细胞瘤仍然是中枢神经系统最致命的原发性恶性肿瘤,最大范围手术、放疗和替莫唑胺所取得的有限获益,并未被那些重塑了许多颅外肿瘤治疗的免疫检查点抑制剂和抗原特异性疫苗所超越。这些方法反复令人失望,与其说归因于单一分子病变,不如说归因于多重障碍的汇合:深刻的瘤内异质性、密集免疫抑制且富含髓系细胞的微环境、常规T细胞的隔离与耗竭,以及将效应细胞递送穿过血脑屏障的实际困难。在此背景下,γδ T细胞作为一种非常规效应细胞群引起了兴趣,它们通过应激相关和代谢线索而非肽-主要组织相容性复合体(MHC)复合物识别转化细胞,以MHC非限制性方式杀伤,并且可以从健康供者扩增用于异体、即用型用途,而移植物抗宿主病的预期风险很低。本叙述性综述以刻意批判的视角,审视基于γδ T细胞免疫治疗胶质母细胞瘤的生物学依据和实验证据。我们总结人γδ T细胞的发育生物学和功能亚群,其与胶质母细胞瘤细胞和胶质瘤干样细胞结合的NKG2D、DNAM-1和T细胞受体依赖机制,以及支撑该领域的体外和动物模型研究,同时注意不夸大迄今仅在临床前或早期阶段环境中证明的疗效。我们随后权衡了主要机遇——局部区域给药与重复给药、与放化疗联合、检查点阻断以及基于抗体的重定向——与诸多障碍之间的利弊,这些障碍包括持久性有限、瘤内转运不确定、供者与生产变异性,以及效力检测和试验设计方面尚未确定的要求。我们尤其重视γδ T细胞在敌意肿瘤内部会发生什么——慢性刺激后出现的耗竭样功能障碍、其效应程序对氧气和葡萄糖的依赖、活化小胶质细胞和基因毒性治疗产生的白细胞介素-17极化信号,以及皮质类固醇的混杂效应——连同为应对这些而提出的工程化和药理学策略。首篇经同行评议的关于颅内递送、耐药γδ T细胞的1期报告现已出现,记录了在一个小型单臂队列中的耐受性,但未确立生存获益。全文始终将γδ T细胞呈现为一种生物学上合理但仍处于研究阶段的策略,其临床价值将由足够把握度的试验而非仅凭机制上的吸引力来决定。
展开英文摘要原文
Glioblastoma remains the most lethal primary malignancy of the central nervous system, and the modest gains achieved with maximal surgery, radiotherapy and temozolomide have not been matched by the immune checkpoint inhibitors and antigen-specific vaccines that reshaped the treatment of many extracranial cancers. The recurrent disappointment of these approaches has been attributed less to a single molecular lesion than to a confluence of obstacles: profound intratumoural heterogeneity, a densely immunosuppressive and myeloid-rich microenvironment, sequestration and exhaustion of conventional T cells, and the practical difficulty of delivering effectors across the blood-brain barrier. Against this background, γδ T cells have attracted interest as an unconventional effector population that recognises transformed cells through stress-associated and metabolic cues rather than peptide-major histocompatibility complex (MHC) complexes, that kills in an MHC-unrestricted manner, and that can be expanded from healthy donors for allogeneic, off-the-shelf use with little expectation of graft-versus-host disease. This narrative review examines, with a deliberately critical lens, the biological rationale and the experimental evidence for γδ T cell-based immunotherapy of glioblastoma. We summarise the developmental biology and functional subsets of human γδ T cells, the natural killer group 2 member D (NKG2D)-, DNAX accessory molecule 1 (DNAM-1)- and T-cell-receptor-dependent mechanisms through which they engage glioblastoma cells and glioma stem-like cells, and the in vitro and animal-model studies that underpin the field, taking care not to overstate efficacy that has so far been demonstrated only in preclinical or early-phase settings. We then weigh the principal opportunities-locoregional and repeated dosing, combination with chemoradiotherapy, checkpoint blockade and antibody-based redirection-against barriers that include limited persistence, uncertain intratumoural trafficking, donor and manufacturing variability, and the unsettled requirements of potency testing and trial design. We give particular weight to what becomes of γδ T cells inside a hostile tumour-the exhaustion-like dysfunction that follows chronic stimulation, the oxygen and glucose dependence of their effector programme, the interleukin-17-polarising signals generated by activated microglia and by genotoxic therapy, and the confounding effect of corticosteroids-together with the engineering and pharmacological strategies proposed to counter them. The first peer-reviewed phase 1 report of intracranially delivered, drug-resistant γδ T cells has now appeared and documents tolerability in a small, single-arm cohort without establishing survival benefit. Throughout, γδ T cells are presented as a biologically plausible but still investigational strategy whose clinical value will be determined by adequately powered trials rather than by mechanistic appeal alone.
论文信息
- 作者
- Chao CC、Shen HE、Zhang BB、Chao TC、Wang CW、Wu CC
- 第一作者单位
- Graduate Institute of Injury Prevention and Control, College of Public Health, Taipei Medical University, Taipei City 235057, Taiwan.Taiwan
- 通讯作者单位
- Department of Neurosurgery, Taipei Medical University Hospital, Taipei City 11031, Taiwan.Taiwan
- 文献类型
- 综述
- 期刊
- Biomedicines2026 Aug 6