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基于多重共表达基因的 FISHnCHIPs 的高灵敏空间转录组学。

Highly sensitive spatial transcriptomics using FISHnCHIPs of multiple co-expressed genes.

机构信息

Genome Institute of Singapore, Agency for Science, Technology and Research (A*STAR), 60 Biopolis Street, Singapore, 138672, Singapore.

出版信息

Nat Commun. 2024 Mar 15;15(1):2342. doi: 10.1038/s41467-024-46669-y.

Abstract

High-dimensional, spatially resolved analysis of intact tissue samples promises to transform biomedical research and diagnostics, but existing spatial omics technologies are costly and labor-intensive. We present Fluorescence In Situ Hybridization of Cellular HeterogeneIty and gene expression Programs (FISHnCHIPs) for highly sensitive in situ profiling of cell types and gene expression programs. FISHnCHIPs achieves this by simultaneously imaging ~2-35 co-expressed genes (clustered into modules) that are spatially co-localized in tissues, resulting in similar spatial information as single-gene Fluorescence In Situ Hybridization (FISH), but with ~2-20-fold higher sensitivity. Using FISHnCHIPs, we image up to 53 modules from the mouse kidney and mouse brain, and demonstrate high-speed, large field-of-view profiling of a whole tissue section. FISHnCHIPs also reveals spatially restricted localizations of cancer-associated fibroblasts in a human colorectal cancer biopsy. Overall, FISHnCHIPs enables fast, robust, and scalable cell typing of tissues with normal physiology or undergoing pathogenesis.

摘要

高维、空间分辨的完整组织样本分析有望改变生物医学研究和诊断,但现有的空间组学技术既昂贵又繁琐。我们提出了用于细胞异质性和基因表达程序的荧光原位杂交(FISHnCHIPs),用于高度灵敏的原位分析细胞类型和基因表达程序。FISHnCHIPs 通过同时成像组织中空间共定位的约 2-35 个共表达基因(聚类成模块)来实现这一点,从而获得与单个基因荧光原位杂交(FISH)相似的空间信息,但灵敏度提高了约 2-20 倍。使用 FISHnCHIPs,我们可以对来自小鼠肾脏和大脑的 53 个模块进行成像,并演示了对整个组织切片的高速、大视场分析。FISHnCHIPs 还揭示了人类结直肠癌活检中与癌症相关的成纤维细胞的空间受限定位。总体而言,FISHnCHIPs 能够快速、稳健、可扩展地对具有正常生理学或发生发病机制的组织进行细胞分型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44b1/10943009/71157662953d/41467_2024_46669_Fig1_HTML.jpg

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