葡萄糖剥夺的肿瘤微环境激活 AMP 活化蛋白激酶驱动过继转移的 T 辅助 9 细胞衰老
Glucose-deprived tumor microenvironment activates AMP-activated protein kinase to drive adoptively transferred T helper 9 cell senescence.
辅助性T细胞9(Th9)细胞在针对实体瘤的过继细胞治疗(ACT)中显示出前景。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:HDACi-dependent Microenvironmental Normalization Overcomes Tumor Burden-induced T-cell Exhaustion.
HDACi-dependent Microenvironmental Normalization Overcomes Tumor Burden-induced T-cell Exhaustion.
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肿瘤负荷诱导的通路变化可通过表观遗传重编程逆转,从而实现从 T 细胞耗竭向效应谱系分化的转化。
T细胞耗竭限制了实体瘤的免疫治疗。尽管免疫检查点阻断和过继性T细胞疗法(ACT)可以介导肿瘤消退,但其效力往往取决于肿瘤负荷。在此,我们确定了有利于T细胞耗竭的肿瘤负荷相关通路变化。随后,我们确定了通过表观遗传调控进行微环境重编程是否能够逆转T细胞耗竭并改善免疫治疗反应性。
我们建立了一种小鼠同基因肿瘤模型,其中肿瘤负荷增加导致对ACT的治疗反应消失,这与T细胞耗竭的系统性诱导相对应。对这些大肿瘤的转录组分析使我们能够表征在I类组蛋白去乙酰化酶抑制剂MS-275治疗期间免疫抑制通路表达的变化。随后,我们测量了MS-275在ACT期间的治疗效果,并通过转录组/表型分析评估了T细胞耗竭。
ACT 能使小肿瘤持久消退,但无法控制大肿瘤,而大肿瘤与全身性 T 细胞耗竭和 T 细胞应答消除相关。大肿瘤由免疫抑制通路特征所定义。MS-275 逆转了该通路特征,并在 ACT 过程中促进大肿瘤的持久消退。尽管经典耗竭标志物 Tim-3 在转移的 T 细胞中选择性上调,但耗竭特征却有所减少。相反,我们观察到活化依赖性信号增强,并与 IL2-STAT5 信号轴的富集相关。活化的 CD8+ T 细胞应答主要偏向终末效应细胞样 CD44+ Tim-3hi TCF1- CD127- KLRG1+ 分化。
T-cell exhaustion limits immunotherapy for the treatment of solid tumors. Although immune checkpoint blockade and adoptive T-cell therapy (ACT) can mediate tumor regression, their potency is often determined by tumor burden. Here, we identified tumor burden-related pathway changes that are conducive to T-cell exhaustion. We then determined whether microenvironmental reprogramming via epigenetic modulation could reverse T-cell exhaustion and improve immunotherapeutic responsiveness. EXPERIMENTAL DESIGN: We developed a murine syngeneic tumor model wherein an increased burden ablated therapeutic responsiveness to ACT, which corresponded with systemic induction of T-cell exhaustion. Transcriptome analysis of these large tumors allowed us to characterize changes to immunosuppressive pathway expression during class I histone deacetylase inhibitor MS-275 treatment. We then measured the therapeutic impact of MS-275 during ACT and assessed T-cell exhaustion by transcriptome/phenotypic analysis.
ACT durably regressed small tumors but failed to control large tumors, which were associated with systemic T-cell exhaustion and ablation of T-cell responses. Large tumors were defined by an immunosuppressive pathway signature. MS-275 reversed this pathway signature and promoted durable regression of large tumors during ACT. Prototypical exhaustion marker Tim-3 was selectively upregulated in transferred T cells despite displaying a reduced exhaustion signature. Instead, we observed enhanced activation-dependent signaling correlating with enrichment of the IL2-STAT5 signaling axis. Activated CD8+ T-cell responses were predominantly skewed toward terminal effector cell-like CD44+ Tim-3hi TCF1- CD127- KLRG1+ differentiation.
Tumor burden-induced pathway changes can be reversed through epigenetic reprogramming, enabling the conversion from T-cell exhaustion to effector lineage differentiation.
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