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Assessment of Kidney Function in Mouse Models of Glomerular Disease
Published on: June 30, 2018
ACE-inhibitors but not endothelin receptor blockers prevent podocyte loss in early diabetic nephropathy
M-L Gross1, A El-Shakmak, A Szábó
1Department of Pathology, University of Heidelberg, Im Neuenheimer Feld, 69120 Heidelberg, Germany. Marie-Luise_Gross@med.uni-heidelberg.de
Aims/Hypothesis:
It was the aim of our study to investigate the influence of a selective ET-A receptor antagonist LU 135252 alone and in combination with the ACE-inhibitor, trandolapril on podocyte number and morphology in streptozotocin diabetic rats.
Methods:
Male Sprague-Dawley rats were injected with 65 mg streptozotocin i.v. and subsequently developed diabetes. Animals were left untreated or received daily either trandolapril (0.3 mg/kg body weight), LU 135252 (50 mg/kg body weight) or a combination of both. After 6 months the experiment was terminated. Glomerular geometry and cellularity were assessed by stereological techniques. Protein expression of TGF-beta, ET-1, PDGF-AB, fibronectin, desmin and alpha-smooth muscle cell actin was investigated by immunohistochemistry.
Results:
The mean number of podocytes per glomerulus was lower (86+/-17 vs. 138+/-25; p<0.05) and mean podocyte volume was higher in untreated diabetic animals than in non-diabetic controls. Only ACE-i alone and in combination, but not ET(A)-RB alone prevented loss of podocytes and podocyte hypertrophy. In diabetic rats, increased numbers of PCNA positive and p27(kip1) positive cells (mainly podocytes) were reduced by all treatments, but only ACE-i decreased numbers of desmin positive podocytes and tubulointerstitial expression of TGF-beta. Albuminuria was increased in untreated diabetes and was prevented only by ACE-i and combination treatment.
Conclusion/Interpretation:
Podocyte hypertrophy and degeneration is an early event in diabetic nephropathy leading to a loss of podocytes. Treatment with an ACE-i, but not with an ET(A)-RB, prevented the development of albuminuria as well as damage and loss of podocytes. The well known anti-proteinuric effect of ACE-i is presumably due at least in part to conservation of podocyte structure. Increased plasma endothelin-1 (ET-1) concentrations and urine excretion of ET-1 have been documented in patients with diabetes and proteinuria [1]. It has been shown that experimental diabetes mellitus increases renal ET-1 gene transcription [2]. To assess the relevance of the ET-system in the pathogenesis of renal structural changes in the model of the STZ-induced diabetic rat we compared the effect of an ET(A)-receptor specific antagonist with the well known beneficial effect of an ACE-i, especially on podocyte cell number and morphology.
Insights
Angiotensin-converting enzyme inhibitors (ACE-i) prevent podocyte loss and albuminuria in diabetic rats, unlike endothelin-A receptor blockers (ET(A)-RB). ACE-i preserves podocyte structure, mitigating diabetic nephropathy progression.
Area of Science:
- Nephrology
- Diabetology
- Pharmacology
Background:
- Diabetic nephropathy is characterized by podocyte hypertrophy, degeneration, and loss.
- Increased endothelin-1 (ET-1) is implicated in the pathogenesis of diabetic renal structural changes.
- Podocyte injury contributes to albuminuria and disease progression.
Purpose of the Study:
- To investigate the effects of a selective ET-A receptor antagonist (LU 135252) alone and with an ACE inhibitor (trandolapril) on podocyte number and morphology in diabetic rats.
- To compare the renoprotective effects of ET(A)-RB and ACE-i in experimental diabetes.
- To assess the role of the ET-system in diabetic nephropathy.
Main Methods:
- Streptozotocin-induced diabetic rats were treated with trandolapril, LU 135252, or a combination.
- Stereological techniques assessed glomerular geometry and cellularity.
- Immunohistochemistry evaluated protein expression (TGF-beta, ET-1, fibronectin, etc.) and cell proliferation (PCNA, p27kip1).
Main Results:
- Untreated diabetic rats showed reduced podocyte number and increased podocyte volume.
- ACE inhibitor, alone and in combination, prevented podocyte loss and hypertrophy; ET(A)-RB alone did not.
- ACE inhibitor treatment reduced desmin-positive podocytes and TGF-beta expression, and prevented albuminuria.
Conclusions:
- Podocyte damage and loss are early events in diabetic nephropathy.
- ACE inhibitors, but not ET(A)-RBs, prevent albuminuria and podocyte damage in this model.
- ACE inhibitors likely conserve podocyte structure, contributing to their anti-proteinuric effect.
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