Integration of spatial and single-cell transcriptomics localizes epithelial cell–immune cross-talk in kidney injury

转录组 生物 免疫系统 电池类型 细胞生物学 细胞 急性肾损伤 病理 医学 免疫学 基因表达 内科学 基因 生物化学 遗传学 内分泌学
作者
Ricardo Melo Ferreira,Angela R. Sabo,Seth Winfree,Kimberly S. Collins,Danielle Janosevic,Connor J. Gulbronson,Ying‐Hua Cheng,Lauren Casbon,Daria Barwinska,Michael J. Ferkowicz,Xiaoling Xuei,Chi Zhang,Kenneth W. Dunn,Katherine J. Kelly,Timothy A. Sutton,Takashi Hato,Pierre C. Dagher,Tarek M. El‐Achkar,Michael T. Eadon
出处
期刊:JCI insight [American Society for Clinical Investigation]
卷期号:6 (12) 被引量:169
标识
DOI:10.1172/jci.insight.147703
摘要

Single-cell sequencing studies have characterized the transcriptomic signature of cell types within the kidney. However, the spatial distribution of acute kidney injury (AKI) is regional and affects cells heterogeneously. We first optimized coordination of spatial transcriptomics and single-nuclear sequencing data sets, mapping 30 dominant cell types to a human nephrectomy. The predicted cell-type spots corresponded with the underlying histopathology. To study the implications of AKI on transcript expression, we then characterized the spatial transcriptomic signature of 2 murine AKI models: ischemia/reperfusion injury (IRI) and cecal ligation puncture (CLP). Localized regions of reduced overall expression were associated with injury pathways. Using single-cell sequencing, we deconvoluted the signature of each spatial transcriptomic spot, identifying patterns of colocalization between immune and epithelial cells. Neutrophils infiltrated the renal medulla in the ischemia model. Atf3 was identified as a chemotactic factor in S3 proximal tubules. In the CLP model, infiltrating macrophages dominated the outer cortical signature, and Mdk was identified as a corresponding chemotactic factor. The regional distribution of these immune cells was validated with multiplexed CO-Detection by indEXing (CODEX) immunofluorescence. Spatial transcriptomic sequencing complemented single-cell sequencing by uncovering mechanisms driving immune cell infiltration and detection of relevant cell subpopulations.
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