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成纤维细胞谱系的跨组织组织。

Cross-tissue organization of the fibroblast lineage.

机构信息

Genentech, South San Francisco, CA, USA.

出版信息

Nature. 2021 May;593(7860):575-579. doi: 10.1038/s41586-021-03549-5. Epub 2021 May 12.

Abstract

Fibroblasts are non-haematopoietic structural cells that define the architecture of organs, support the homeostasis of tissue-resident cells and have key roles in fibrosis, cancer, autoimmunity and wound healing. Recent studies have described fibroblast heterogeneity within individual tissues. However, the field lacks a characterization of fibroblasts at single-cell resolution across tissues in healthy and diseased organs. Here we constructed fibroblast atlases by integrating single-cell transcriptomic data from about 230,000 fibroblasts across 17 tissues, 50 datasets, 11 disease states and 2 species. Mouse fibroblast atlases and a Dpt knock-in mouse identified two universal fibroblast transcriptional subtypes across tissues. Our analysis suggests that these cells can serve as a reservoir that can yield specialized fibroblasts across a broad range of steady-state tissues and activated fibroblasts in disease. Comparison to an atlas of human fibroblasts from perturbed states showed that fibroblast transcriptional states are conserved between mice and humans, including universal fibroblasts and activated phenotypes associated with pathogenicity in human cancer, fibrosis, arthritis and inflammation. In summary, a cross-species and pan-tissue approach to transcriptomics at single-cell resolution has identified key organizing principles of the fibroblast lineage in health and disease.

摘要

成纤维细胞是非造血组织细胞,它们决定器官的结构,支持组织常驻细胞的内稳态,并在纤维化、癌症、自身免疫和伤口愈合中起关键作用。最近的研究描述了单个组织内成纤维细胞的异质性。然而,该领域缺乏对健康和患病器官中组织间单细胞分辨率下成纤维细胞的特征描述。在这里,我们通过整合来自 17 种组织、50 个数据集、11 种疾病状态和 2 个物种的约 23 万个成纤维细胞的单细胞转录组数据,构建了成纤维细胞图谱。小鼠成纤维细胞图谱和 Dpt 敲入小鼠鉴定了两种普遍存在的跨组织成纤维细胞转录亚型。我们的分析表明,这些细胞可以作为一个储备库,在广泛的稳态组织中产生专门的成纤维细胞,并在疾病中产生激活的成纤维细胞。与扰动状态下的人类成纤维细胞图谱进行比较表明,成纤维细胞转录状态在小鼠和人类之间是保守的,包括与人类癌症、纤维化、关节炎和炎症中的致病性相关的通用成纤维细胞和激活表型。总之,单细胞分辨率的跨物种和泛组织转录组学方法确定了健康和疾病中成纤维细胞谱系的关键组织原则。

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