Related Experiment Video
Updated: Jul 31, 2025

An Effective Mouse Model of Unilateral Renal Ischemia-Reperfusion Injury
Published on: July 15, 2021
Peroxiredoxin 1 aggravates acute kidney injury by promoting inflammation through Mincle/Syk/NF-κB signaling
Shenglan Li1, Yan Zhang2, Rong Lu3
1Department of Gastroenterology, Xiangya Hospital, Central South University, Changsha, China; Department of Nephrology, Xiangya Hospital, Central South University, Changsha, China; Hunan Key Laboratory of Organ Fibrosis, Central South University, Changsha, China.
Abstract:
Damage-associated molecular patterns (DAMPs) are a cause of acute kidney injury (AKI). Our knowledge of these DAMPs remains incomplete. Here, we report serum peroxiredoxin 1 (Prdx1) as a novel DAMP for AKI. Lipopolysaccharide (LPS) and kidney ischemia/reperfusion injury instigated AKI with concurrent increases in serum Prdx1 and reductions of Prdx1 expression in kidney tubular epithelial cells. Genetic knockout of Prdx1 or use of a Prdx1-neutralizing antibody protected mice from AKI and this protection was impaired by introduction of recombinant Prdx1 (rPrdx1). Mechanistically, lipopolysaccharide increased serum and kidney proinflammatory cytokines, macrophage infiltration, and the content of M1 macrophages. All these events were suppressed in Prdx1-/- mice and renewed upon introduction of rPrdx1. In primary peritoneal macrophages, rPrdx1 induced M1 polarization, activated macrophage-inducible C-type lectin (Mincle) signaling, and enhanced proinflammatory cytokine production. Prdx1 interacted with Mincle to initiate acute kidney inflammation. Of note, rPrdx1 upregulated Mincle and the spleen tyrosine kinase Syk system in the primary peritoneal macrophages, while knockdown of Mincle abolished the increase in activated Syk. Additionally, rPrdx1 treatment enhanced the downstream events of Syk, including transcription factor NF-κB signaling pathways. Furthermore, serum Prdx1 was found to be increased in patients with AKI; the increase of which was associated with kidney function decline and inflammatory biomarkers in patient serum. Thus, kidney-derived serum Prdx1 contributes to AKI at least in part by activating Mincle signaling and downstream pathways.
Insights
Serum peroxiredoxin 1 (Prdx1) is identified as a novel damage-associated molecular pattern (DAMP) contributing to acute kidney injury (AKI). Elevated Prdx1 activates Mincle signaling, promoting inflammation and kidney dysfunction in both mice and human patients.
Area of Science:
- Nephrology
- Immunology
- Molecular Biology
Background:
- Acute kidney injury (AKI) is often triggered by damage-associated molecular patterns (DAMPs).
- The full spectrum of DAMPs involved in AKI pathogenesis is not yet completely understood.
- Identifying novel DAMPs is crucial for developing targeted AKI therapies.
Purpose of the Study:
- To investigate serum peroxiredoxin 1 (Prdx1) as a potential novel DAMP in AKI.
- To elucidate the underlying mechanisms by which Prdx1 contributes to AKI.
- To assess the clinical relevance of serum Prdx1 levels in AKI patients.
Main Methods:
- Utilized mouse models of AKI induced by lipopolysaccharide (LPS) and ischemia/reperfusion injury.
- Employed genetic knockout (Prdx1-/-) and neutralizing antibody approaches in mice.
- Investigated Prdx1's role in macrophage polarization and Mincle/Syk signaling pathways in vitro.
- Analyzed serum Prdx1 levels and their correlation with kidney function and inflammatory markers in human AKI patients.
Main Results:
- Serum Prdx1 levels were elevated in AKI models and patients, correlating with disease severity.
- Genetic or antibody-mediated Prdx1 deficiency protected mice against AKI.
- Recombinant Prdx1 (rPrdx1) exacerbated AKI by promoting M1 macrophage polarization via Mincle-Syk-NF-κB signaling.
- rPrdx1 upregulated Mincle and Syk, activating downstream inflammatory pathways.
Conclusions:
- Kidney-derived serum Prdx1 acts as a novel DAMP in AKI.
- Prdx1 contributes to AKI pathogenesis by activating Mincle signaling and promoting inflammation.
- Serum Prdx1 levels may serve as a biomarker for AKI severity and progression.
Related Concept Videos
Acute Kidney Injury II: Pathophysiology
Acute Kidney Injury I: Introduction
Acute Kidney Injury IV: Diagnostic Studies and Prevention
Regulation of the Unfolded Protein Response
Acute Kidney Injury V: Interprofessional Care
Peroxisomes

