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Updated: Feb 10, 2026

Unilateral Ureteral Obstruction Model for Investigating Kidney Interstitial Fibrosis
Published on: April 25, 2025
S100A8/A9 promotes parenchymal damage and renal fibrosis in obstructive nephropathy
A Tammaro1, S Florquin1, M Brok1
1Department of Pathology, Amsterdam UMC, Univ(ersity) of Amsterdam, Amsterdam, the Netherlands.
Abstract:
Despite advances in our understanding of the mechanisms underlying the progression of chronic kidney disease and the development of fibrosis, only limited efficacious therapies exist. The calcium binding protein S100A8/A9 is a damage-associated molecular pattern which can activate Toll-like receptor (TLR)-4 or receptor for advanced glycation end-products (RAGE). Activation of these receptors is involved in the progression of renal fibrosis; however, the role of S100A8/A9 herein remains unknown. Therefore, we analysed S100A8/A9 expression in patients and mice with obstructive nephropathy and subjected wild-type and S100A9 knock-out mice lacking the heterodimer S100A8/A9 to unilateral ureteral obstruction (UUO). We found profound S100A8/A9 expression in granulocytes that infiltrated human and murine kidney, together with enhanced renal expression over time, following UUO. S100A9 KO mice were protected from UUO-induced renal fibrosis, independently of leucocyte infiltration and inflammation. Loss of S100A8/A9 protected tubular epithelial cells from UUO-induced apoptosis and critical epithelial-mesenchymal transition steps. In-vitro studies revealed S100A8/A9 as a novel mediator of epithelial cell injury through loss of cell polarity, cell cycle arrest and subsequent cell death. In conclusion, we demonstrate that S100A8/A9 mediates renal damage and fibrosis, presumably through loss of tubular epithelial cell contacts and irreversible damage. Suppression of S100A8/A9 could be a therapeutic strategy to halt renal fibrosis in patients with chronic kidney disease.
Insights
The calcium binding protein S100A8/A9 drives kidney damage and fibrosis by harming tubular epithelial cells. Suppressing S100A8/A9 may offer a new therapy for chronic kidney disease patients.
Area of Science:
- Nephrology
- Immunology
- Molecular Biology
Background:
- Chronic kidney disease (CKD) fibrosis progresses despite advances, with limited therapies.
- S100A8/A9, a damage-associated molecular pattern, activates Toll-like receptor (TLR)-4/receptor for advanced glycation end-products (RAGE), implicated in renal fibrosis.
Purpose of the Study:
- To investigate the role of S100A8/A9 in obstructive nephropathy and renal fibrosis.
Main Methods:
- Analyzed S100A8/A9 expression in human and murine kidneys with obstructive nephropathy.
- Utilized unilateral ureteral obstruction (UUO) in wild-type and S100A9 knock-out (KO) mice.
- Conducted in-vitro studies on epithelial cell injury.
Main Results:
- S100A8/A9 expression was significantly upregulated in infiltrating granulocytes and renal tissue post-UUO.
- S100A9 KO mice showed protection against UUO-induced renal fibrosis, apoptosis, and epithelial-mesenchymal transition.
- In-vitro, S100A8/A9 mediated epithelial cell injury via loss of polarity, cell cycle arrest, and death.
Conclusions:
- S100A8/A9 is a key mediator of renal damage and fibrosis, likely by disrupting tubular epithelial cell integrity.
- Targeting S100A8/A9 presents a potential therapeutic strategy to mitigate renal fibrosis in CKD.
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