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Updated: Jan 27, 2026

Unilateral Ureteral Obstruction Model for Investigating Kidney Interstitial Fibrosis
Published on: April 25, 2025
Long Non-coding RNAs Rian and Miat Mediate Myofibroblast Formation in Kidney Fibrosis
Roel Bijkerk1, Yu Wah Au1, Wendy Stam1
1Department of Internal Medicine (Nephrology) and the Einthoven Laboratory for Experimental Vascular and Regenerative Medicine, Leiden University Medical Center, Leiden, Netherlands.
Abstract:
There is an increasing prevalence of chronic kidney disease (CKD), which associates with the development of interstitial fibrosis. Pericytes (perivascular fibroblasts) provide a major source of α-SMA-positive myofibroblasts that are responsible for the excessive deposition of extracellular matrix. In order to identify pericyte long non-coding RNAs (lncRNAs) that could serve as a target to decrease myofibroblast formation and counteract the progression of kidney fibrosis we employed two models of experimental kidney injury, one focused on kidney fibrosis (unilateral ureteral obstruction; UUO), and one focused on acute kidney injury that yields kidney fibrosis in the longer term (unilateral ischemia-reperfusion injury; IRI). This was performed in FoxD1-GC;tdTomato stromal cell reporter mice that allowed pericyte fate tracing. Tomato red-positive FoxD1-derivative cells of control and injured kidneys were FACS-sorted and used for lncRNA and mRNA profiling yielding a distinctive transcriptional signature of pericytes and myofibroblasts with 244 and 586 differentially expressed lncRNAs (>twofold, P < 0.05), in the UUO and IRI models, respectively. Next, we selected two differentially expressed and conserved lncRNAs, Rian (RNA imprinted and accumulated in nucleus) and Miat (Myocardial infarction associated transcript), and explored their potential regulatory role in myofibroblast formation through knockdown of their function with gapmers. While Miat was upregulated in myofibroblasts of UUO and IRI in mice, gapmer silencing of Miat attenuated myofibroblast formation as evidenced by decreased expression of α-SMA, col1α1, SMAD2, and SMAD3, as well as decreased α-SMA and pro-collagen-1α1 protein levels. In contrast, silencing Rian, which was found to be downregulated in kidney myofibroblast after IRI and UUO, resulted in increased myofibroblast formation. In addition, we found microRNAs that were previously linked to Miat (miR-150) and Rian (14q32 miRNA cluster), to be dysregulated in the FoxD1-derivative cells, suggesting a possible interaction between miRNAs and these lncRNAs in myofibroblast formation. Taken together, lncRNAs play a regulatory role in myofibroblast formation, possibly through interacting with miRNA regulation, implicating that understanding their biology and their modulation may have the potential to counteract the development of renal fibrosis.
Insights
Long non-coding RNAs (lncRNAs) regulate myofibroblast formation in kidney fibrosis. Silencing Miat reduced myofibroblast markers, while Rian silencing increased them, suggesting lncRNAs as potential therapeutic targets for renal fibrosis.
Area of Science:
- Nephrology
- Molecular Biology
- Genetics
Background:
- Chronic kidney disease (CKD) prevalence is rising, often leading to interstitial fibrosis.
- Pericytes are a primary source of α-SMA-positive myofibroblasts, driving extracellular matrix deposition and fibrosis.
- Identifying molecular targets within pericytes is crucial for combating kidney fibrosis progression.
Purpose of the Study:
- To identify pericyte-specific long non-coding RNAs (lncRNAs) involved in myofibroblast formation.
- To investigate the regulatory roles of lncRNAs Rian and Miat in kidney fibrosis models.
- To explore potential therapeutic strategies targeting lncRNAs for renal fibrosis.
Main Methods:
- Utilized unilateral ureteral obstruction (UUO) and ischemia-reperfusion injury (IRI) mouse models of kidney injury.
- Employed FoxD1-GC;tdTomato reporter mice for pericyte fate tracing and FACS sorting.
- Performed lncRNA and mRNA profiling, followed by gapmer-mediated knockdown of Rian and Miat.
Main Results:
- Identified 244 (UUO) and 586 (IRI) differentially expressed lncRNAs in pericytes/myofibroblasts.
- Miat upregulation correlated with increased myofibroblast markers; Miat silencing attenuated this.
- Rian downregulation correlated with increased myofibroblast markers; Rian silencing exacerbated fibrosis.
- Dysregulation of miR-150 (linked to Miat) and 14q32 miRNA cluster (linked to Rian) was observed.
Conclusions:
- lncRNAs, including Miat and Rian, play significant regulatory roles in myofibroblast formation during kidney fibrosis.
- lncRNA function may involve interactions with microRNA regulation.
- Targeting specific lncRNAs offers a potential strategy to counteract renal fibrosis development.
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