PO.TB10.10 · 肿瘤生物学

肿瘤相关CD207+ cDC2通过TNF家族细胞因子驱动非小细胞肺癌中三级淋巴样结构(TLS)的形成

Tumor-associated CD207 + cDC2 drives TLS formation via TNF family cytokines in non-small cell lung cancer

海报缩略图:肿瘤相关CD207+ cDC2通过TNF家族细胞因子驱动非小细胞肺癌中三级淋巴样结构(TLS)的形成
编号 2221 展板 7 时间 4/20 09:00–12:00 区域 Section 31 主讲 Youngtaek Kim, BS
分会场 Tertiary Lymphoid Structures in Cancer
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作者与单位 Authors & Affiliations

Youngtaek Kim1, Gang-Taik Lee2, Dong Kwon Kim2, JuHyeon Lee2, So Young Park2, Jae Hwan Kim3, Hyun Jung Yoo2, Byoung Chul Cho3

1Yonsei University College of Medicine, Seoul, Korea, Republic of,2Department of Research Support, Yonsei Biomedical Research Institute, Seoul, Korea, Republic of,3Yonsei New Il Han Institute for Integrative Lung Cancer Research, Seoul, Korea, Republic of

摘要 Abstract

中文摘要
背景:树突状细胞(DCs)是专职抗原提呈细胞,负责协调固有免疫和适应性免疫,在肿瘤微环境(TME)中,其功能进一步扩展至调控抗肿瘤免疫应答。DCs的异质性是其多样化免疫功能的基础,其中经典2型DCs(cDC2s)表现出尤为显著的表型和功能复杂性,从而实现依情境而定的免疫调节。然而,肿瘤相关DCs的特征和功能仍未被充分阐明。阐明这些亚群如何产生并发挥功能,有望拓展我们对肿瘤免疫的认识,并有助于开发有效的癌症免疫疗法。 方法:对未经治疗、EGFR野生型NSCLC患者的肿瘤组织(n=35)及癌旁正常组织(n=24)进行酶解,并使用5′ Chromium平台(10x Genomics)进行单细胞RNA测序。开展轨迹分析和SCENIC分析以刻画cDC2谱系程序。功能验证包括由人单核细胞诱导分化CD207+ DCs、与HUVECs共培养,以及对NSCLC患者FFPE肿瘤切片进行多重免疫组化(mIHC)。对TCGA-LUAD及一个院内免疫治疗bulk RNA-seq队列进行反卷积分析以评估临床相关性。 结果:我们鉴定出10种转录组学上截然不同的DC亚型,并发现CD207+ cDC2s在肿瘤中显著富集。轨迹分析将CD207+ cDC2s界定为一个独特的、TME富集的谱系,其特征为NF-κB信号、趋化作用和T细胞调节程序降低,而TNF超家族细胞因子产生和视黄酸代谢增强。SCENIC分析提示RARA/RXRA是CD207+ cDC2分化的关键调控因子。CD207+ cDC2频率与更高的免疫细胞浸润相关,尤其是CXCL13+ T细胞。与此一致,CD207+ cDC2中LTB的表达与高内皮微静脉(HEV)和三级淋巴样结构(TLS)的基因特征相关,提示其在淋巴样组织形成中的作用。在功能上,单核细胞来源的CD207+ DCs在体外可诱导内皮细胞表达黏附分子,mIHC证实其与HEVs共定位并伴随TLS密度增加。更高的CD207+ cDC2丰度与更好的生存及免疫治疗应答相关,凸显了它们在TME内支持淋巴样结构形成、并在EGFR野生型NSCLC中带来良好预后的特化作用。 结论:CD207+ cDC2s构成一个独特的、TME富集的DC亚型,通过LTB介导内皮激活并驱动HEV和TLS的形成。它们在肿瘤中的富集与更好的生存及增强的免疫治疗应答相关,表明CD207+ cDC2s在EGFR野生型NSCLC中促进淋巴样组织形成及良好的免疫结局。
查看英文原文 English abstract
Background: Dendritic cells (DCs) are specialized antigen-presenting cells that orchestrate innate and adaptive immunity, and within the tumor microenvironment (TME) they extend their function to modulate anti-tumor immune responses. The heterogeneity of DCs underlies their diverse immune functions, with conventional type 2 DCs (cDC2s) showing particularly high phenotypic and functional complexity, which enables context-dependent immune modulation. However, the characteristics and functions of tumor-associated DCs remain incompletely defined. Elucidating how these subsets arise and function could broaden our understanding of tumor immunity and contribute to the development of effective cancer immunotherapies. Methods: Tumor tissues (n=35) and adjacent normal tissues (n=24) from treatment-naïve, EGFR-wildtype NSCLC patients were enzymatically dissociated and subjected to single-cell RNA sequencing using the 5′ Chromium platform (10x Genomics). Trajectory and SCENIC analyses were performed to delineate cDC2 lineage programs. Functional validation included differentiation of CD207 + DCs from human monocytes, co-culture with HUVECs, and multiplex IHC (mIHC) on FFPE tumor slides from NSCLC patients. Deconvolution analyses of TCGA-LUAD and an in-house immunotherapy bulk RNA-seq cohort were conducted to assess clinical relevance. Results: We identified 10 transcriptionally distinct DC subtypes and found that CD207 + cDC2s were markedly enriched in tumors. Trajectory analysis defined CD207 + cDC2s as a distinct TME-enriched lineage characterized by reduced NF-κB signaling, chemotaxis, and T cell-regulatory programs, while enhanced TNF superfamily cytokine production and retinoic acid metabolism. SCENIC analysis implicated RARA/RXRA as key regulators of CD207 + cDC2 differentiation. CD207 + cDC2 frequency correlated with higher immune cell infiltration, especially CXCL13 + T cells. Consistently, LTB expression in CD207 + cDC2 correlated with high endothelial venule (HEV) and tertiary lymphoid structure (TLS) gene signatures, suggesting a role in lymphoid organization. Functionally, monocyte-derived CD207 + DCs induced adhesion molecules in endothelial cells in vitro , and mIHC confirmed that their co-localization with HEVs and increased TLS density. Higher CD207 + cDC2 abundance was associated with improved survival and immunotherapy response, highlighting their specialized role within TME in supporting lymphoid structuring and favorable outcomes in EGFR-wildtype NSCLC. Conclusion: CD207 + cDC2s constitute a distinct TME-enriched DC subtype that mediates endothelial activation and drives HEV and TLS formation via LTB. Their enrichment in tumors correlates with improved survival and enhanced immunotherapy response, indicating that CD207 + cDC2s promote lymphoid organization and favorable immune outcomes in EGFR-wildtype NSCLC.
利益披露 Disclosure
Y. Kim, None.. G. Lee, None.. D. Kim, None.. J. Lee, None.. S. Park, None.. J. Kim, None.. H. Yoo, None. B. Cho, AstraZeneca ). Janssen ). Yuhan ).

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