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Published on: November 7, 2017
Myeloid mineralocorticoid receptor activation contributes to progressive kidney disease
Louis L Huang1, David J Nikolic-Paterson1, Yingjie Han1
1Department of Nephrology and Monash University Department of Medicine, Monash Medical Centre, Clayton, Victoria, Australia, and.
Abstract:
Clinical and experimental studies have shown that mineralocorticoid receptor (MR) antagonists substantially reduce kidney injury. However, the specific cellular targets and mechanisms by which MR antagonists protect against kidney injury must be identified. We used conditional gene deletion of MR signaling in myeloid cells (MR(flox/flox) LysM(Cre) mice; MyMRKO) or podocytes (MR(flox/flox) Pod(Cre) mice; PodMRKO) to establish the role of MR in these cell types in the development of mouse GN. Accelerated anti-glomerular basement membrane GN was examined in groups of mice: MyMRKO, PodMRKO, wild-type (WT) littermates, and WT mice receiving eplerenone (100 mg/kg twice a day; EPL-treated). At day 15 of disease, WT mice had glomerular crescents (37%±5%), severe proteinuria, and a 6-fold increase in serum cystatin-C. MyMRKO, PodMRKO, and EPL-treated mice with GN displayed proteinuria similar to that in these disease controls. However, MyMRKO and EPL-treated groups had a 35% reduction in serum cystatin-C levels and reduced crescent numbers compared with WT mice, whereas PodMRKO mice were not protected. The protection observed in MyMRKO mice appeared to result predominantly from reduced recruitment of macrophages and neutrophils into the inflamed kidney. Suppression of kidney leukocyte accumulation in MyMRKO mice correlated with reductions in gene expression of proinflammatory molecules (TNF-α, inducible nitric oxide synthase, chemokine (C-C motif) ligand 2, matrix metalloproteinase-12), tubular damage, and renal fibrosis and was similar in EPL-treated mice. In conclusion, MR signaling in myeloid cells, but not podocytes, contributes to the progression of renal injury in mouse GN, and myeloid deficiency of MR provides protection similar to eplerenone in this disease.
Insights
Mineralocorticoid receptor (MR) signaling in myeloid cells, not podocytes, drives kidney injury in mouse glomerulonephritis (GN). Blocking MR in these cells protects kidneys, similar to MR antagonist drugs.
Area of Science:
- Nephrology
- Immunology
- Molecular Biology
Background:
- Mineralocorticoid receptor (MR) antagonists reduce kidney injury, but their specific cellular targets remain unclear.
- Understanding MR's role in different kidney cells is crucial for targeted therapies.
- Glomerulonephritis (GN) involves inflammation and progressive kidney damage.
Purpose of the Study:
- To determine the role of MR signaling in myeloid cells and podocytes in the development of mouse GN.
- To investigate the mechanisms by which MR antagonists protect against kidney injury in GN.
Main Methods:
- Conditional gene deletion of MR in myeloid cells (MyMRKO) or podocytes (PodMRKO) in mice.
- Induction of accelerated anti-glomerular basement membrane GN.
- Assessment of proteinuria, serum cystatin-C, glomerular crescent formation, and kidney inflammation markers.
Main Results:
- Myeloid cell MR deficiency (MyMRKO) and eplerenone treatment reduced kidney injury markers (cystatin-C, crescents) in GN mice.
- Podocyte MR deficiency (PodMRKO) did not provide protection against GN.
- Protection in MyMRKO mice was linked to reduced myeloid cell infiltration and lower expression of pro-inflammatory genes.
Conclusions:
- MR signaling in myeloid cells, not podocytes, significantly contributes to kidney injury progression in mouse GN.
- Targeting MR in myeloid cells offers a protective effect comparable to MR antagonist drugs like eplerenone.
- This highlights myeloid MR as a potential therapeutic target for treating GN and related kidney diseases.
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