PO.CL01.12 · 临床研究

老龄小鼠自发性肺肿瘤的空间多组学表征

Spatial multiomic characterization of spontaneous lung tumors in aged mice

海报缩略图:老龄小鼠自发性肺肿瘤的空间多组学表征
编号 1204 展板 5 时间 4/19 02:00–05:00 区域 Section 47 主讲 Adam Thiesen, B Eng;BS
分会场 Spatial Proteomics and Transcriptomics 1
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作者与单位 Authors & Affiliations

Adam Thiesen1, Sema Akkurt1, Javad Noorbakhsh1, Te-Chia Wu2, Andrew Salner3, Peter Yu3, Susan Airhart4, Olga Anczukow1, Ron Korstanje4, Karolina Palucka5, Jeffrey H. Chuang5

1The Jackson Laboratory for Genomic Medicine, Farmington, CT,2Jackson Laboratory, Farmington, CT,3Hartford Hospital, Hartford, CT,4The Jackson Laboratory, Bar Harbor, ME,5The Jackson Laboratory, Farmington, CT

摘要 Abstract

中文摘要
引言:肺癌是最常见的恶性肿瘤之一,也是全球癌症相关死亡的首要原因。虽然随着戒烟和戒烟草运动的成功,肺癌发病率随时间下降,但在非吸烟者或从不吸烟者中仍存在显著的疾病负担。高龄是肺癌的关键危险因素,发病率在第五个十年上升最陡。本研究显示实验室小鼠同样会随年龄自发发生肺肿瘤。此外,我们显示这些肿瘤常为恶性腺癌,而非传统描述的腺瘤。利用空间转录组学和蛋白质组学方法,我们旨在研究老龄小鼠自发发生的腺癌是否与人类从不吸烟者肿瘤相似。 方法:将多样性远交系(DO)和UM-HET3小鼠饲养并老化至24月龄。24月龄时对600余只小鼠进行尸检,检查所有组织是否存在肿瘤。所识别的肺部病变由病理学家在苏木精-伊红(H&E)染色切片上注释以评估肿瘤类型。对注释为腺癌者评估2mm直径的感兴趣区域(ROIs),纳入组织微阵列用于下游Xenium空间转录组学和Codex空间蛋白质组学分析。Codex分析使用Spacec软件包,Xenium分析一般使用Scanpy。这些数据与公开的TCGA bulk RNA-seq以及从当地医院患者采集的Xenium数据进行比较。 结果:约40%的小鼠发生肺部病变,其中30%为腺癌。对Xenium单细胞数据的无监督leiden聚类揭示了小鼠上皮肿瘤间由炎症标志物(Chil1)界定的共同特征。其他聚类则与更具侵袭性的肿瘤进展相关。Codex分析揭示肿瘤中分布有高P21蛋白表达区域,遍布整个肿瘤,但与内部相比更靠近基质边界(p<0.05)。当我们将侵袭性小鼠肿瘤特征与TCGA bulk RNA-seq特征进行比较时,这些患者具有更差的生存结局。CD2AP是在小鼠和人类肿瘤中均显著上调的共同转录本(P<0.05)。此外,这些侵袭性肿瘤的微环境常含有p21阳性、可能衰老的树突状细胞,其与T细胞共定位。 结论:遗传多样性小鼠会自发发生肺腺癌,并可进展为更高级别状态。多模态分析揭示了自发发生的小鼠与人类腺癌之间的共同通路。
查看英文原文 English abstract
Introduction: Lung cancer is one of the most common malignancies and is the leading cause of cancer related deaths worldwide. While lung cancer incidence has decreased over time with the success of smoking and tobacco cessation campaigns, a significant burden of disease remains among non or never-smokers. Advancing age is a key risk factor for lung cancer, with incidence escalating most steeply in the fifth decade. Here we show that laboratory mice also spontaneously develop lung tumors with age. Additionally, we show that these tumors are often malignant adenocarcinomas as opposed to the adenomas traditionally described. Using spatial transcriptomic and proteomic approaches we aimed to study whether the adenocarcinomas that develop spontaneously in aged mice were similar to human never-smoking tumors. Methods: Diversity Outbred (DO) and UM-HET3 mice were housed and aged to 24 months. At 24 months, necropsies were performed on more than 600 mice, and all tissues were examined for the presence of tumors. The identified lung lesions were annotated by pathologists on hematoxylin and eosin (H&E)-stained sections to assess tumor type. Those annotated as adenocarcinomas were assessed for 2mm diameter regions of interest (ROIs) to be incorporated into Tissue Microarrays for downstream Xenium spatial transcriptomics and Codex spatial proteomic profiling. The Spacec package was used for codex and Scanpy was generally used for Xenium analysis. These data were compared against publicly available TCGA bulk RNA-seq as well as Xenium data collected from patients at local hospitals. Results: About 40% of mice developed lung lesions, with 30% of those being adenocarcinomas. Unsupervised leiden clustering of the Xenium single cell data revealed a common signature between mouse epithelial tumors defined by inflammatory markers ( Chil1 ). Other clusters associated more aggressive tumor progressions. Codex analysis revealed tumors with pockets of high P21 protein expression distributed throughout the tumor but found closer to the stromal boundary compared to the interior (p < 0.05). When we compared aggressive mouse tumor signatures to TCGA bulk RNA-seq signatures these patients have worse survival outcomes. CD2AP was a shared transcript significantly up-regulated in both mouse and human tumors (P < 0.05). Additionally, the microenvironment of these aggressive tumors often contained p21 positive potentially senescent dendritic cells, which colocalize with T cells. Conclusion: Genetically diverse mice develop spontaneous lung adenocarcinomas that can develop into higher grade states. Multimodal analysis has revealed common pathways between spontaneously occurring mouse and human adenocarcinomas.
利益披露 Disclosure
A. Thiesen, None.. S. Akkurt, None.. J. Noorbakhsh, None.. R. Korstanje, None.

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