生物
反褶积
肺纤维化
纤维化
肺
肺纤维化
利基
病理
医学
物理
光学
内科学
生态学
作者
Michael Eyres,Joseph A. Bell,Elizabeth R. Davies,Aurélie Fabre,Aiman Alzetani,Sanjay Jogai,Ben G. Marshall,David A. Johnston,Zijian Xu,Sophie Fletcher,Yihua Wang,Gayle Marshall,Donna E. Davies,Emily Offer,Mark G. Jones
出处
期刊:Cell Reports
[Cell Press]
日期:2022-08-01
卷期号:40 (7): 111230-111230
被引量:43
标识
DOI:10.1016/j.celrep.2022.111230
摘要
A defining pathological feature of human lung fibrosis is localized tissue heterogeneity, which challenges the interpretation of transcriptomic studies that typically lose spatial information. Here we investigate spatial gene expression in diagnostic tissue using digital profiling technology. We identify distinct, region-specific gene expression signatures as well as shared gene signatures. By integration with single-cell data, we spatially map the cellular composition within and distant from the fibrotic niche, demonstrating discrete changes in homeostatic and pathologic cell populations even in morphologically preserved lung, while through ligand-receptor analysis, we investigate cellular cross-talk within the fibrotic niche. We confirm findings through bioinformatic, tissue, and in vitro analyses, identifying that loss of NFKB inhibitor zeta in alveolar epithelial cells dysregulates the TGFβ/IL-6 signaling axis, which may impair homeostatic responses to environmental stress. Thus, spatially resolved deconvolution advances understanding of cell composition and microenvironment in human lung fibrogenesis.
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