PO.IM02.04 · 免疫学
研究隆突性皮肤纤维肉瘤的空间免疫肿瘤微环境
Investigating the spatial immune tumor microenvironment of dermatofibrosarcoma protuberans
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
隆突性皮肤纤维肉瘤(DFSP)是一种罕见的、局部侵袭性的皮肤肉瘤,由COL1A1-PDGFB融合驱动。尽管其分子驱动因素已明确界定,但DFSP的肿瘤免疫微环境仍表征不足。理解DFSP中免疫-基质相互作用可能揭示以免疫疗法或靶向方法补充手术切除的机会。我们使用10X Genomics Visium v2(n=12)和Visium HD(n=4)对16例DFSP患者样本进行了空间转录组学分析,并整合了单细胞RNA测序。我们的分析揭示了不同的肿瘤、基质和免疫细胞群,其中PDGFB高表达的肿瘤细胞在空间上与浸润性免疫区室相隔离。我们鉴定出转录特征不同的癌症相关成纤维细胞(CAF)亚群,包括富集细胞外基质重塑和炎症特征、可能调节局部免疫的细胞群。免疫分析揭示了空间异质性的T细胞和巨噬细胞浸润,各患者中存在不同的免疫富集区和免疫荒漠区。值得注意的是,我们在多个样本中观察到三级淋巴结构(TLS)形成,其特征为TLS特征评分升高以及B细胞和T细胞标志物的空间共定位。CXCL13和CCL19成为界定TLS相关免疫-基质通讯网络的关键趋化因子。利用循环免疫荧光,我们验证了TLS相关免疫龛的空间组织,在蛋白水平证实了CD3+ T细胞、CD20+ B细胞和CD68+巨噬细胞在TLS富集区域内的共定位。这项工作提供了首个DFSP空间免疫图谱,揭示了有组织的淋巴结构和CAF介导的免疫调控,可为靶向PDGFR信号并联合免疫检查点或基质调节的联合策略提供依据。
查看英文原文 English abstract
Dermatofibrosarcoma Protuberans (DFSP) is a rare, locally aggressive cutaneous sarcoma driven by the COL1A1-PDGFB fusion. While its molecular drivers are well-defined, the DFSP tumor immune microenvironment remains poorly characterized. Understanding immune-stromal interactions in DFSP may reveal opportunities to complement surgical resection with immunotherapy or targeted approaches. We performed spatial transcriptomics on 16 DFSP patient samples using 10X Genomics Visium v2 (n=12) and Visium HD (n=4), integrated with single-cell RNA sequencing. Our analysis revealed distinct tumor, stromal, and immune populations with high PDGFB-high tumor cells spatially segregated from infiltrating immune compartments. We identified transcriptionally distinct cancer-associated fibroblast (CAF) subsets, including populations enriched for extracellular matrix remodeling and inflammatory signatures that may modulate local immunity. Immune profiling uncovered spatially heterogeneous T cell and macrophage infiltration, with distinct immune-rich and immune-desert zones across patients. Notably, we observed tertiary lymphoid structure (TLS) formation in multiple samples, characterized by elevated TLS signature scores and spatial co-localization of B and T cell markers. CXCL13 and CCL19 emerged as key chemokines defining TLS-associated immune-stromal communication networks. Using cyclic immunofluorescence, we validated the spatial organization of TLS-associated immune niches, confirming co-localization of CD3+ T cells, CD20+ B cells, and CD68+ macrophages within TLS-enriched regions at protein level. This work provides the first spatial immune atlas of DFSP, revealing organized lymphoid structures and CAF-mediated immune regulation that could inform combination strategies targeting PDGFR signaling alongside immune checkpoint or stromal modulation.
利益披露 Disclosure
M. Al-Ghezi, None..
M. Rettig, None..
C. P. Loo, None..
R. Yadav, None..
W. Yu, None..
J. M. Moreau, None.