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Retinoids as a potential treatment for experimental puromycin-induced nephrosis
V Moreno-Manzano1, F Mampaso, J C Sepúlveda-Muñoz
1Department of Physiology, University of Alcalá, E-28871 Alcalá de Henares, Madrid, Spain.
Abstract:
1 Puromycin aminonucleoside (PAN)-induced nephrosis is a model of human minimal change disease. In rats, PAN induces nephrotic-range proteinuria, renal epithelial cell (podocyte) damage, infiltration of mononuclear leukocytes, and apoptosis of several renal cell types. 2 Retinoic acid (RA) modulates a wide range of biological processes, such as inflammation and apoptosis. Since renal damage by PAN is characterized by inflammatory infiltration and epithelial cell death, the effect of treatment with all-trans RA (tRA) was examined in the PAN nephrosis model and in the cultured differentiated podocyte. 3 Treatment with tRA 4 days after PAN injection did not inhibit the proteinuria peak but reversed it significantly. However, treatment with tRA both before and 2 days after the injection of PAN protected the glomerular epithelial cells, diminishing the cellular edema and diffuseness of the foot process effacement. Preservation of the podocyte architecture correlated with the inhibition of proteinuria. The anti-inflammatory effect of tRA was evidenced by the inhibition of PAN-induced interstitial mononuclear cell infiltration and the decreased renal expression of two molecules involved in monocyte infiltration: fibronectin and monocyte chemoattractant protein-1. TUNEL assays showed that tRA inhibited the PAN-induced apoptosis of cultured differentiated mouse podocytes. 4 We conclude that tRA treatment may prevent proteinuria by protecting the podocytes from injury and diminishing the interstitial mononuclear infiltrate in the model of PAN nephrosis. Retinoids are a potential new treatment for kidney diseases characterized by proteinuria and mononuclear cell infiltration.
Insights
All-trans retinoic acid (tRA) protects against puromycin aminonucleoside (PAN)-induced nephrosis by preserving podocyte structure and reducing inflammation. This suggests retinoids may offer new therapeutic strategies for proteinuric kidney diseases.
Area of Science:
- Nephrology
- Molecular Biology
- Immunology
Background:
- Puromycin aminonucleoside (PAN)-induced nephrosis models human minimal change disease.
- PAN causes proteinuria, podocyte damage, inflammation, and apoptosis in rats.
- Retinoic acid (RA) influences inflammation and apoptosis, relevant to PAN nephrosis pathology.
Purpose of the Study:
- To investigate the therapeutic effect of all-trans retinoic acid (tRA) in a rat model of PAN-induced nephrosis.
- To evaluate tRA's impact on podocyte injury, proteinuria, and renal inflammation.
- To assess tRA's role in inhibiting apoptosis in cultured podocytes.
Main Methods:
- Administered tRA before and after PAN injection in rats.
- Assessed proteinuria, podocyte morphology, and interstitial mononuclear cell infiltration.
- Measured renal expression of fibronectin and monocyte chemoattractant protein-1.
- Utilized TUNEL assays to evaluate apoptosis in cultured podocytes.
Main Results:
- tRA treatment significantly reversed proteinuria when given after PAN.
- Early tRA administration (pre- and post-PAN) protected podocytes, reducing edema and foot process effacement.
- tRA decreased interstitial mononuclear cell infiltration and expression of fibronectin and MCP-1.
- tRA inhibited PAN-induced apoptosis in cultured podocytes.
Conclusions:
- tRA treatment protects podocytes and reduces inflammation in PAN nephrosis.
- tRA administration can prevent or reverse proteinuria in this model.
- Retinoids represent a potential therapeutic avenue for proteinuric kidney diseases involving mononuclear cell infiltration.
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