PO.TB10.07 · 肿瘤生物学
胰腺实性假乳头状肿瘤的整合多组学图谱提示腺泡细胞为潜在起源细胞
Integrated multiomic atlas of pancreatic solid pseudopapillary neoplasms suggests acinar cells as a potential cell-of-origin
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摘要 Abstract
中文摘要
引言:
胰腺实性假乳头状肿瘤(SPNs)是罕见的低级别肿瘤,通常影响年轻女性,偶尔复发或转移。虽然SPNs的组织学特征和突变谱已有充分记载,但其起源细胞和空间组织仍未完全阐明。本研究的目的是描绘SPNs的发生发展和空间转录组学景观。
方法:
使用G4X Singular In Situ多组学平台对2020年至2025年间收集的10例手术切除SPN标本的感兴趣区域进行分析。整合并分析基因表达数据以生成空间嵌入,随后进行无监督聚类。使用经典标志物对细胞类型进行注释,并整合蛋白质组学数据以获得更高分辨率。
结果:
对来自10例患者的30个SPN切片进行空间转录组学分析,产生了360万个高质量细胞。该队列全部为女性,中位年龄为31.5岁。整合分析显示出由外分泌胰腺细胞、免疫细胞、成纤维细胞、内皮细胞和肿瘤细胞组成的异质性肿瘤微环境。肿瘤细胞表现出肿瘤内和肿瘤间异质性,具有五个不同的亚群:(1) CPB1⁺肿瘤细胞,(2) MYH11⁺肿瘤细胞,(3) FN1⁺ VIM⁺ MMP2⁺肿瘤细胞,(4) IGHG1⁺ FCGR1A⁺ TBX21⁺肿瘤细胞,以及(5) STAT1⁺ TAP1⁺ CD74+肿瘤细胞。将这些肿瘤转录状态映射回组织切片揭示了不同的微环境niche。IGHG1⁺ FCGR1A⁺ TBX21⁺肿瘤细胞和MYH11⁺肿瘤细胞是各样本中最普遍的肿瘤细胞。STAT1⁺ TAP1⁺ CD74+肿瘤细胞以抗原提呈和干扰素信号program升高为特征,定位于免疫浸润高的区域,这在蛋白质组学上得到了进一步证实和刻画。CPB1⁺肿瘤细胞显示腺泡细胞标志物的表达相对增加,并在肿瘤-腺泡界面形成空间梯度,提示SPN肿瘤细胞可能起源于腺泡谱系。
结论:
我们提出了首个针对胰腺SPNs的多组学分析,建立了其细胞和空间结构的高分辨率图谱。我们鉴定了占据不同空间niche的保守肿瘤转录和蛋白质组状态。CPB1⁺肿瘤细胞的空间梯度提示SPN肿瘤细胞可能具有腺泡起源,值得进一步的谱系聚焦研究。这些发现共同完善了我们对SPN肿瘤生物学的理解。
查看英文原文 English abstract
Introduction:
Solid pseudopapillary neoplasms (SPNs) of the pancreas are rare, low-grade tumors that typically affect young women and occasionally recur or metastasize. While the histological features and mutational profile of SPNs are well documented, their cell-of-origin and spatial organization remain incompletely understood. The purpose of this study was to delineate the development and spatial transcriptomic landscape of SPNs.
Methods:
Regions of interest from 10 surgically resected SPN specimens collected between 2020 and 2025 were profiled using the G4X Singular In Situ Multiomic platform. Gene expression data were integrated and analyzed to generate spatial embeddings, followed by unsupervised clustering. Cell types were annotated using canonical markers, and proteomic data were integrated for further resolution.
Results:
Spatial transcriptomic profiling of 30 SPN sections from 10 patients yielded 3.6 million high-quality cells. The cohort was entirely female, with a median age of 31.5 years. Integrated analysis demonstrated a heterogeneous tumor microenvironment composed of exocrine pancreatic cells, immune cells, fibroblasts, endothelial cells, and tumor cells. Tumor cells demonstrated intra- and inter-tumoral heterogeneity, with five distinct subpopulations: (1) CPB1⁺ tumor cells, (2) MYH11⁺ tumor cells, (3) FN1⁺ VIM⁺ MMP2⁺ tumor cells, (4) IGHG1⁺ FCGR1A⁺ TBX21⁺ tumor cells, and (5) STAT1⁺ TAP1⁺ CD74 + tumor cells. Mapping these tumor transcriptional states back onto the tissue sections revealed distinct microenvironmental niches. IGHG1⁺ FCGR1A⁺ TBX21⁺ tumor cells and MYH11⁺ tumor cells were the most prevalent tumor cells across samples. STAT1⁺ TAP1⁺ CD74 + tumor cells, characterized by elevated antigen-presentation and interferon-signaling programs, were localized in areas with high immune-infiltration, which was further corroborated and delineated proteomically. CPB1⁺ tumor cells showed relatively increased expression of acinar cell markers and formed spatial gradients at tumor-acinar interfaces, suggesting that SPN tumor cells may arise from an acinar lineage.
Conclusion:
We present the first multiomic analysis of SPNs of the pancreas, establishing a high-resolution atlas of their cellular and spatial architecture. We identify conserved tumor transcriptional and proteomic states that occupy distinct spatial niches. Spatial gradients in CPB1⁺ tumor cells suggest a potential acinar origin for SPN tumor cells, warranting further lineage-focused investigation. These findings collectively refine our understanding of SPN tumor biology.
利益披露 Disclosure
B. Reddy, None..
M. Korah, None..
J. P. Agolia, None..
R. Reveron-Thornton, None..
M. Lam, None..
D. Foster, None..
M. T. Longaker, None..
D. Delitto, None.