Spatially defined multicellular functional units in colorectal cancer revealed from single cell and spatial transcriptomics.

Inbal Avraham-Davidi, Simon Mages, Johanna Klughammer, Noa Moriel, Shinya Imada, Matan Hofree, Evan Murray, Jonathan Chen, Karin Pelka, Arnav Mehta, Genevieve M Boland, Toni Delorey, Leah Caplan, Danielle Dionne, Robert Strasser, Jana Lalakova, Anezka Niesnerova, Hao Xu, Morgane Rouault, Itay Tirosh, Nir Hacohen, Fei Chen, Omer Yilmaz, Jatin Roper, Orit Rozenblatt-Rosen, Mor Nitzan, Aviv Regev
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Abstract

While advances in single cell genomics have helped to chart the cellular components of tumor ecosystems, it has been more challenging to characterize their specific spatial organization and functional interactions. Here, we combine single cell RNA-seq, spatial transcriptomics by Slide-seq, and in situ multiplex RNA analysis, to create a detailed spatial map of healthy and dysplastic colon cellular ecosystems and their association with disease progression. We profiled inducible genetic CRC mouse models that recapitulate key features of human CRC, assigned cell types and epithelial expression programs to spatial tissue locations in tumors, and computationally used them to identify the regional features spanning different cells in the same spatial niche. We find that tumors were organized in cellular neighborhoods, each with a distinct composition of cell subtypes, expression programs, and local cellular interactions. Comparing to scRNA-seq and Slide-seq data from human CRC, we find that both cell composition and layout features were conserved between the species, with mouse neighborhoods correlating with malignancy and clinical outcome in human patient tumors, highlighting the relevance of our findings to human disease. Our work offers a comprehensive framework that is applicable across various tissues, tumors, and disease conditions, with tools for the extrapolation of findings from experimental mouse models to human diseases.

从单细胞和空间转录组学揭示结直肠癌中空间定义的多细胞功能单位。
虽然单细胞基因组学的进步有助于绘制肿瘤生态系统的细胞成分,但表征其特定的空间组织和功能相互作用更具挑战性。在这里,我们结合单细胞RNA-seq,空间转录组学通过Slide-seq和原位多重RNA分析,创建健康和发育不良的结肠细胞生态系统及其与疾病进展的关联的详细空间图。我们描述了可诱导的遗传CRC小鼠模型,这些模型概括了人类CRC的关键特征,将细胞类型和上皮表达程序分配到肿瘤的空间组织位置,并通过计算使用它们来识别跨越相同空间生态位中不同细胞的区域特征。我们发现肿瘤是在细胞邻近区组织的,每个肿瘤都有不同的细胞亚型、表达程序和局部细胞相互作用的组成。与来自人类CRC的scRNA-seq和Slide-seq数据相比,我们发现细胞组成和布局特征在物种之间都是保守的,小鼠邻域与人类患者肿瘤的恶性和临床结果相关,突出了我们的发现与人类疾病的相关性。我们的工作提供了一个适用于各种组织、肿瘤和疾病状况的综合框架,并提供了将实验小鼠模型的发现推断到人类疾病的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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