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Updated: May 5, 2026

Phenotypic Characterization of Macrophages from Rat Kidney by Flow Cytometry
Published on: October 18, 2016
Macrophage phenotype controls long-term AKI outcomes--kidney regeneration versus atrophy
Maciej Lech1, Regina Gröbmayr, Mi Ryu
1Division of Nephrology, Medical Clinic and Polyclinic IV, University of Munich, Munich, Germany;
Abstract:
The mechanisms that determine full recovery versus subsequent progressive CKD after AKI are largely unknown. Because macrophages regulate inflammation as well as epithelial recovery, we investigated whether macrophage activation influences AKI outcomes. IL-1 receptor-associated kinase-M (IRAK-M) is a macrophage-specific inhibitor of Toll-like receptor (TLR) and IL-1 receptor signaling that prevents polarization toward a proinflammatory phenotype. In postischemic kidneys of wild-type mice, IRAK-M expression increased for 3 weeks after AKI and declined thereafter. However, genetic depletion of IRAK-M did not affect immunopathology and renal dysfunction during early postischemic AKI. Regarding long-term outcomes, wild-type kidneys regenerated completely within 5 weeks after AKI. In contrast, IRAK-M(-/-) kidneys progressively lost up to two-thirds of their original mass due to tubule loss, leaving atubular glomeruli and interstitial scarring. Moreover, M1 macrophages accumulated in the renal interstitial compartment, coincident with increased expression of proinflammatory cytokines and chemokines. Injection of bacterial CpG DNA induced the same effects in wild-type mice, and TNF-α blockade with etanercept partially prevented renal atrophy in IRAK-M(-/-) mice. These results suggest that IRAK-M induction during the healing phase of AKI supports the resolution of M1 macrophage- and TNF-α-dependent renal inflammation, allowing structural regeneration and functional recovery of the injured kidney. Conversely, IRAK-M loss-of-function mutations or transient exposure to bacterial DNA may drive persistent inflammatory mononuclear phagocyte infiltrates, which impair kidney regeneration and promote CKD. Overall, these results support a novel role for IRAK-M in the regulation of wound healing and tissue regeneration.
Insights
Interleukin-1 receptor-associated kinase-M (IRAK-M) deficiency impairs kidney regeneration after acute kidney injury (AKI), promoting chronic kidney disease (CKD) by sustaining inflammation.
Area of Science:
- Nephrology
- Immunology
- Molecular Biology
Background:
- Mechanisms driving complete recovery versus progressive chronic kidney disease (CKD) post-acute kidney injury (AKI) remain unclear.
- Macrophages play a critical role in inflammation and epithelial repair, influencing AKI outcomes.
- Interleukin-1 receptor-associated kinase-M (IRAK-M) is a macrophage-specific inhibitor of Toll-like receptor (TLR) and IL-1 receptor signaling, preventing pro-inflammatory polarization.
Purpose of the Study:
- To investigate the role of macrophage activation, specifically IRAK-M, in determining AKI outcomes.
- To elucidate the mechanisms by which IRAK-M influences kidney regeneration and the transition to CKD.
Main Methods:
- Utilized a mouse model of postischemic AKI.
- Compared wild-type mice with IRAK-M knockout (IRAK-M(-/-)) mice.
- Assessed kidney pathology, macrophage polarization (M1), cytokine/chemokine expression, and renal function post-AKI.
- Investigated the effects of bacterial CpG DNA injection and TNF-α blockade (etanercept).
Main Results:
- IRAK-M expression increased during kidney healing in wild-type mice but its depletion did not affect early AKI.
- IRAK-M(-/-) mice exhibited progressive kidney mass loss, tubule loss, interstitial scarring, and M1 macrophage accumulation.
- Bacterial CpG DNA induced similar effects in wild-type mice, while TNF-α blockade partially protected IRAK-M(-/-) mice.
- IRAK-M deficiency was associated with increased pro-inflammatory cytokines and chemokines.
Conclusions:
- IRAK-M induction during AKI healing promotes resolution of inflammation, enabling kidney regeneration and functional recovery.
- Loss of IRAK-M function leads to persistent M1 macrophage-driven inflammation, impairing regeneration and promoting CKD.
- IRAK-M plays a crucial role in regulating wound healing and tissue regeneration in the kidney.
Related Concept Videos
Chronic Inflammation: Introduction
Acute Kidney Injury III: Clinical Manifestations

