Spironolactone prevents diabetic nephropathy through an anti-inflammatory mechanism in type 2 diabetic rats
Sang-Youb Han1, Cy-Hyun Kim, Han-Seong Kim
1Department of Internal Medicine, Korea University Ansan Hospital, 516 Kojan-Dong, Ansan City, Kyungki-Do 425-020, Korea.
Abstract:
Aldosterone induces myocardial fibrosis and vascular inflammation via proinflammatory and profibrotic cytokines. The effect of spironolactone on renal inflammation and renal function was investigated in type 2 diabetic rats. For define the molecular mechanism of spironolactone, the effect of spironolactone on the synthesis of monocyte chemotactic peptide-1 (MCP-1) and its upstream transcription factor, NF-kappaB, was evaluated in cultured mesangial cells and proximal tubular cells. There were no changes in blood glucose concentration or BP after spironolactone treatment. Spironolactone treatment significantly reduced urinary albumin excretion and ameliorated glomerulosclerosis. Urinary levels of MCP-1 were significantly increased concurrently with renal expression of MCP-1, macrophage migration inhibitory factor, and macrophage infiltration. Spironolactone treatment significantly inhibited urinary excretion of MCP-1 as well as renal MCP-1 and migration inhibitory factor expression and macrophage infiltration. In addition, aldosterone induced upregulation of MCP-1 expression and NF-kappaB transcriptional activity in cultured cells, and spironolactone reduced both NF-kappaB activation and MCP-1 synthesis. Furthermore, NF-kappaB inhibition abolished aldosterone-induced MCP-1 production. Overall, these findings suggest that aldosterone-induced NF-kappaB activation leads to activation of proinflammatory cytokines, ultimately leading to renal injury in this model. These data suggest that mineralocorticoid blockade may be a potential therapeutic target in diabetic nephropathy.
Insights
Spironolactone reduces kidney inflammation and injury in diabetic rats by blocking aldosterone-induced activation of NF-kappaB and monocyte chemotactic peptide-1 (MCP-1). This suggests mineralocorticoid blockade is a potential therapy for diabetic nephropathy.
Area of Science:
- Nephrology
- Endocrinology
- Molecular Biology
Background:
- Aldosterone contributes to kidney damage through inflammation and fibrosis.
- Diabetic nephropathy is a major complication of type 2 diabetes, characterized by renal injury.
Purpose of the Study:
- To investigate the effects of spironolactone on renal inflammation and function in type 2 diabetic rats.
- To elucidate the molecular mechanisms underlying spironolactone's action on aldosterone-induced renal injury.
Main Methods:
- Type 2 diabetic rats were treated with spironolactone.
- Renal function, albuminuria, and glomerulosclerosis were assessed.
- Levels of monocyte chemotactic peptide-1 (MCP-1) and NF-kappaB activation were evaluated in vivo and in cultured renal cells.
Main Results:
- Spironolactone treatment reduced urinary albumin excretion and glomerulosclerosis without altering blood glucose or blood pressure.
- Spironolactone inhibited MCP-1 synthesis and NF-kappaB activation, key mediators of inflammation.
- Aldosterone-induced renal MCP-1 upregulation and NF-kappaB activation were reversed by spironolactone.
Conclusions:
- Aldosterone promotes renal inflammation and injury in type 2 diabetes via NF-kappaB and MCP-1.
- Spironolactone ameliorates diabetic nephropathy by inhibiting the aldosterone-NF-kappaB-MCP-1 pathway.
- Mineralocorticoid receptor blockade represents a promising therapeutic strategy for diabetic nephropathy.
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