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:Tumor and Stromal Sphingolipid Imbalance Are Associated with T Cell Tissue Residency in Glioblastoma.
Tumor and Stromal Sphingolipid Imbalance Are Associated with T Cell Tissue Residency in Glioblastoma.
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GBM 中基质 S1P 生成的缺失伴随 T 细胞组织驻留。因此,基质 S1P 代谢是调节 GBM 中 T 细胞再循环和 TIL 生物学的候选轴。这些发现是来自单细胞 RNA 测序的转录组学关联,并未直接测量 S1P 代谢物水平或信号传导活性,将需要功能性和脂质组学验证。
实体瘤内的T细胞常从再循环状态转变为组织驻留状态,这可能削弱抗肿瘤活性,但驱动这种体内转变的信号仍不清楚。我们探究了肿瘤或周围基质细胞中1-磷酸鞘氨醇(S1P)信号的改变是否与胶质母细胞瘤(GBM)中T细胞驻留相关。
我们分析了五个单细胞 RNA 测序队列:三个人类胶质瘤数据集、一个内部小鼠 CT2A 胶质母细胞瘤队列,以及一个人类黑色素瘤TIL(肿瘤浸润淋巴细胞)队列。使用精选基因模块对每个细胞的 T 细胞外流和组织驻留程序,以及基质 S1P 生成和降解进行评分。细胞状态对比以 Cohen's d 量化,样本水平耦合以 Spearman 量化。
在人GBM中,与低级别胶质瘤对照相比,肿瘤内CD4+辅助性T细胞和调节性T细胞中T细胞驻留程序升高。在小鼠CT2A来源的GBM肿瘤中,基质S1P产生与四种独立基质细胞类型中的T细胞驻留呈负相关。在人GBM小胶质细胞中,与对照小胶质细胞相比,S1P产生减少。相同的CD8+驻留表型在CD3分选的GBMTIL(肿瘤浸润淋巴细胞)(TILs)和黑色素瘤TILs中得到重现。
We analyzed five single-cell RNA-sequencing cohorts: three human glioma datasets, an in-house mouse CT2A glioblastoma cohort, and a human melanoma tumor-infiltrating lymphocyte cohort. T cell egress and tissue-residency programs, together with stromal S1P production and degradation, were scored per cell using curated gene modules. Cell-state contrasts were quantified as Cohen's d, and sample-level coupling as Spearman .
In human GBM, T cell residency programs were elevated in CD4+ helper and regulatory T cells in tumors compared with low-grade glioma controls. In mouse CT2A-derived GBM tumors, stromal S1P production correlated negatively with T cell residency across four independent stromal cell types. In human GBM microglia, S1P production was reduced compared with control microglia. The same CD8+ residency phenotype was replicated in CD3-sorted GBM tumor-infiltrating lymphocytes (TILs) and in melanoma TILs.
A loss of stromal S1P production accompanies T cell tissue residency in GBM. Thus, stromal S1P metabolism is a candidate axis for modulating T cell recirculation and TIL biology in GBM. These findings are transcriptomic associations from single-cell RNA sequencing that do not directly measure S1P metabolite levels or signaling activity and will require functional and lipidomic validation.
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