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一种多功能组织卷取技术,用于对整个小鼠胃肠道进行空间组学分析。

A versatile tissue-rolling technique for spatial-omics analyses of the entire murine gastrointestinal tract.

机构信息

Division of Immunology and Allergy, Department of Medicine Solna, Karolinska Institute and University Hospital, Stockholm, Sweden.

Center of Molecular Medicine, Stockholm, Sweden.

出版信息

Nat Protoc. 2024 Oct;19(10):3085-3137. doi: 10.1038/s41596-024-01001-2. Epub 2024 Jun 21.

Abstract

Tissues are dynamic and complex biological systems composed of specialized cell types that interact with each other for proper biological function. To comprehensively characterize and understand the cell circuitry underlying biological processes within tissues, it is crucial to preserve their spatial information. Here we report a simple mounting technique to maximize the area of the tissue to be analyzed, encompassing the whole length of the murine gastrointestinal (GI) tract, from mouth to rectum. Using this method, analysis of the whole murine GI tract can be performed in a single slide not only by means of histological staining, immunohistochemistry and in situ hybridization but also by multiplexed antibody staining and spatial transcriptomic approaches. We demonstrate the utility of our method in generating a comprehensive gene and protein expression profile of the whole GI tract by combining the versatile tissue-rolling technique with a cutting-edge transcriptomics method (Visium) and two cutting-edge proteomics methods (ChipCytometry and CODEX-PhenoCycler) in a systematic and easy-to-follow step-by-step procedure. The entire process, including tissue rolling, processing and sectioning, can be achieved within 2-3 d for all three methods. For Visium spatial transcriptomics, an additional 2 d are needed, whereas for spatial proteomics assays (ChipCytometry and CODEX-PhenoCycler), another 3-4 d might be considered. The whole process can be accomplished by researchers with skills in performing murine surgery, and standard histological and molecular biology methods.

摘要

组织是由相互作用以实现正常生物学功能的特化细胞类型组成的动态而复杂的生物系统。为了全面描述和理解组织内生物过程的细胞电路,保留其空间信息至关重要。在这里,我们报告了一种简单的安装技术,以最大限度地增加要分析的组织面积,涵盖从口腔到直肠的整个小鼠胃肠道 (GI) 道长度。使用这种方法,不仅可以通过组织学染色、免疫组织化学和原位杂交,还可以通过多重抗体染色和空间转录组学方法,在单个载玻片上分析整个小鼠 GI 道。我们通过将多功能组织滚压技术与前沿转录组学方法 (Visium) 以及两种前沿蛋白质组学方法 (ChipCytometry 和 CODEX-PhenoCycler) 相结合,在系统且易于遵循的逐步过程中,证明了我们的方法在生成整个 GI 道的全面基因和蛋白质表达谱方面的实用性。整个过程,包括组织滚压、处理和切片,所有三种方法都可以在 2-3 天内完成。对于 Visium 空间转录组学,还需要额外的 2 天,而对于空间蛋白质组学测定 (ChipCytometry 和 CODEX-PhenoCycler),则可能需要另外 3-4 天。整个过程可以由具有进行小鼠手术、标准组织学和分子生物学方法技能的研究人员完成。

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