PO.IM01.02 · 免疫学

肝巨噬细胞的代谢重编程可在T细胞荒漠型肝细胞癌中恢复CD8+ T细胞免疫

Metabolic reprogramming of hepatic macrophages restores CD8⁺ T cell immunity in T cell-desert hepatocellular carcinoma

编号 2920 展板 30 时间 4/20 02:00–05:00 区域 Section 10 主讲 Liangliang Ji, BS;PhD
分会场 Modifiers of Inflammation and the Tumor Microenvironment
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作者与单位 Authors & Affiliations

Liangliang Ji1, Delaney Bessel1, Sophia Brosnan1, Isha Malik1, Zijian Xu1, Jiaxin Li1, Peng Li1, Xian Zhang1, Jing Zhang1, Ting-Wei Tsu1, Shengyu Gao1, Amaia Lujambio2, Ming Li1

1Immunology Program, Memorial Sloan Kettering Cancer Center, New York, NY,2Icahn School of Medicine at Mount Sinai, New York, NY

摘要 Abstract

中文摘要
CD8+ T细胞介导的免疫监视在很大程度上依赖于抗原呈递细胞(APC)的功能完整性,尤其是在次级淋巴器官中致敏并激活T细胞的树突状细胞(DC)。然而,在某些病理情境下(如beta-catenin突变的癌症),DC常常存在缺陷,破坏了癌症-免疫循环,并产生抵抗免疫治疗的"T细胞荒漠"型肿瘤免疫型。除DC外,巨噬细胞也可作为APC并调控CD8+ T细胞激活,但其抗原呈递功能仍未得到充分理解。利用基因小鼠模型,我们系统性地表征了巨噬细胞特异性缺失mTORC1抑制因子Tsc1的小鼠,发现肝脏中CD8+ T细胞显著增加——而在其他组织中并非如此。这种组织特异性可能反映了Kupffer细胞与循环CD8+ T细胞直接相互作用的独特血管内微环境。值得注意的是,这种CD8+ T细胞扩增独立于DC区室发生。在MYC/beta-catenin驱动的"T细胞荒漠"型肝细胞癌(HCC)模型中,TSC1缺陷的肝巨噬细胞(hMφs)重新激活了抗原特异性CD8+ T细胞应答并抑制了HCC进展,同样以不依赖DC的方式。野生型小鼠的hMφs主要表达含T细胞免疫球蛋白和粘蛋白结构域4(TIM-4),而TSC1缺陷的hMφs由TIM-4+和TIM-4-两个亚群组成,其中TIM-4-群体驱动CD8+ T细胞扩增。此外,TSC1缺陷的hMφs表现出增强的肿瘤抗原获取和呈递能力。将hMφs中的TSC1缺陷与抗PD-L1免疫治疗相结合,显著改善了小鼠"T细胞荒漠"型HCC的结局。代谢分析揭示TSC1缺陷的hMφs线粒体活性显著增加,其增强的APC和抗肿瘤功能需要苹果酸-天冬氨酸穿梭介导的氧化磷酸化。总之,这些临床前研究揭示了hMφs在协调CD8+ T细胞免疫中不依赖DC的作用,并提示巨噬细胞的代谢重编程可能为克服由DC功能缺陷所致的"T细胞荒漠"型肿瘤中的免疫逃逸提供一种有前景的策略。
查看英文原文 English abstract
CD8⁺ T cell-mediated immunosurveillance relies heavily on the functional integrity of antigen-presenting cells (APCs), particularly dendritic cells (DCs) that prime and activate T cells in secondary lymphoid organs. However, DCs are often defective in certain pathological contexts, such as beta-catenin-mutated cancers, disrupting the cancer-immunity cycle and giving rise to “T cell-desert” tumor immunotypes that resist immunotherapy. Besides DCs, macrophages can also act as APCs and modulate CD8⁺ T cell activation, but their antigen-presenting function remains less well understood. Using genetic mouse models, we systematically characterized mice with macrophage-specific deletion of the mTORC1 suppressor Tsc1 and found a striking increase of CD8⁺ T cells in the liver-but not in other tissues. This tissue specificity likely reflects the unique intravascular niche in which Kupffer cells interact directly with circulating CD8⁺ T cells. Notably, this CD8⁺ T cell expansion occurs independently of DC compartments. In a MYC/beta-catenin-driven “T cell-desert” hepatocellular carcinoma (HCC) model, TSC1-deficient hepatic macrophages (hMϕs) reinvigorated antigen-specific CD8⁺ T cell responses and suppressed HCC progression, also in a DC-independent manner. hMϕs from wild-type mice predominantly express T-cell immunoglobulin and mucin domain-containing 4 (TIM-4), while TSC1-deficient hMϕs consist of both TIM-4⁺ and TIM-4⁻ subsets, with the TIM-4⁻ population driving CD8⁺ T cell expansion. Moreover, TSC1-deficient hMϕs exhibited enhanced tumor antigen acquisition and presentation capacity. Combining TSC1 deficiency in hMϕs with anti-PD-L1 immunotherapy significantly improved outcomes in murine “T cell-desert” HCC. Metabolic profiling revealed markedly increased mitochondrial activity in TSC1-deficient hMϕs, and their enhanced APC and anti-tumor functions required malate-aspartate shuttle-mediated oxidative phosphorylation. Together, these preclinical studies reveal a DC-independent role for hMϕs in orchestrating CD8⁺ T cell immunity and suggest that metabolic reprogramming of macrophages may offer a promising strategy to overcome immune evasion in “T cell-desert” tumors caused by defective DC function.
利益披露 Disclosure
L. Ji, None.. D. Bessel, None.. S. Brosnan, None.. I. Malik, None.. Z. Xu, None.. J. Li, None.. P. Li, None.. X. Zhang, None.. J. Zhang, None.. T. Tsu, None.. S. Gao, None.. A. Lujambio, None.. M. Li, None.

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