表型
急性肾损伤
谱系(遗传)
生物
转基因
细胞损伤
转基因小鼠
肾
基因
细胞生物学
肾脏疾病
病理
医学
遗传学
内科学
内分泌学
细胞凋亡
作者
Marc Buse,Mingbo Cheng,Vera Jankowski,Michaela Lellig,Viktor Sterzer,Thiago Strieder,Katja Leuchtle,Ina V. Martin,Claudia Seikrit,Paul Brinkkoettter,Giuliano Crispatzu,Jürgen Floege,Peter Boor,Thimoteus Speer,Rafael Kramann,Tammo Ostendorf,Marcus J. Moeller,Ivan G. Costa,Eleni Stamellou
出处
期刊:iScience
[Elsevier]
日期:2024-02-16
卷期号:27 (3): 109255-109255
被引量:3
标识
DOI:10.1016/j.isci.2024.109255
摘要
Tubular injury is the hallmark of acute kidney injury (AKI) with a tremendous impact on patients and health-care systems. During injury, any differentiated proximal tubular cell (PT) may transition into a specific injured phenotype, so-called "scattered tubular cell" (STC)-phenotype. To understand the fate of this specific phenotype, we generated transgenic mice allowing inducible, reversible, and irreversible tagging of these cells in a murine AKI model, the unilateral ischemia-reperfusion injury (IRI). For lineage tracing, we analyzed the kidneys using single-cell profiling during disease development at various time points. Labeled cells, which we defined by established endogenous markers, already appeared 8 h after injury and showed a distinct expression set of genes. We show that STCs re-differentiate back into fully differentiated PTs upon the resolution of the injury. In summary, we show the dynamics of the phenotypic transition of PTs during injury, revealing a reversible transcriptional program as an adaptive response during disease.
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