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Unselective inhibition of endothelin receptors reduces renal dysfunction in experimental diabetes
A Benigni1, V Colosio, C Brena
1Mario Negri Institute for Pharmacological Research, Ospedali Riuniti di Bergamo, Italy.
Abstract:
Chronic nephropathies are associated with enhanced renal synthesis of endothelin (ET)-1. A recent study demonstrated that an ET(A) receptor antagonist given to diabetic rats at the moment of disease induction prevented the development of renal injury. Here we investigated whether an unselective ET(A)/ET(B) receptor antagonist, PD 142,893, was renoprotective when given to streptozotocin diabetic rats when animals were already proteinuric. The effect of PD 142,893 was compared with that of an ACE inhibitor, lisinopril, known to retard progressive renal disease in experimental and human diabetes. PD 142,893 normalized systemic blood pressure, reduced urinary protein and albumin excretion, and ameliorated renal blood flow in diabetic rats, but it did not affect such parameters in control rats. Lisinopril had a renoprotective effect comparable to PD 142,893, although lisinopril controlled systemic blood pressure better. Northern blot analysis of ET-1 mRNA revealed upregulation of ET-1 gene in the diabetic kidney. Similar results were obtained by in situ hybridization in glomeruli and tubuli of diabetic rats. Both treatments remarkably attenuated exaggerated renal ET-1 gene expression. These data suggest that ET-1 is a contributory mediator of kidney damage in diabetes and indicate that ET receptor antagonists may represent a new therapeutic mean for treatment of progressive diabetic nephropathy.
Insights
Endothelin-1 (ET-1) contributes to diabetic kidney disease. Blocking ET-1 receptors with PD 142,893 protected against kidney damage in diabetic rats, suggesting a new therapeutic approach.
Area of Science:
- Nephrology
- Endocrinology
- Pharmacology
Background:
- Chronic kidney diseases involve increased endothelin-1 (ET-1) production.
- ET-1 receptor antagonists may prevent diabetic nephropathy development.
Purpose of the Study:
- To investigate the renoprotective effects of an unselective ET(A)/ET(B) receptor antagonist, PD 142,893, in established proteinuric diabetic rats.
- To compare PD 142,893 with an angiotensin-converting enzyme (ACE) inhibitor, lisinopril.
Main Methods:
- Administered PD 142,893 or lisinopril to streptozotocin-induced diabetic rats with proteinuria.
- Assessed systemic blood pressure, urinary protein and albumin excretion, and renal blood flow.
- Analyzed ET-1 gene expression in kidneys using Northern blot and in situ hybridization.
Main Results:
- PD 142,893 normalized blood pressure, reduced proteinuria, and improved renal blood flow in diabetic rats.
- Lisinopril showed comparable renoprotection but better blood pressure control.
- Both treatments significantly reduced elevated renal ET-1 gene expression in diabetic kidneys.
Conclusions:
- ET-1 plays a role in mediating kidney damage in diabetic nephropathy.
- ET receptor antagonists show potential as a novel therapeutic strategy for progressive diabetic kidney disease.