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Published on: May 10, 2024
Peroxisome Proliferator-Activated Receptor Alpha Stimulation Preserves Renal Tight Junction Components in a Rat Model
Lorena Rosas-Martínez1,2, Rafael Rodríguez-Muñoz2, María Del Carmen Namorado-Tonix2
1Department of Pharmacology, National Institute of Cardiology Ignacio Chávez, Juan Badiano No. 1, Col. Seccion XVI, Tlalpan, Mexico City 14080, Mexico.
Abstract:
Chronic hyperglycemia results in morphological and functional alterations of the kidney and microvascular damage, leading to diabetic nephropathy (DN). Since DN progresses to irreversible renal damage, it is important to elucidate a pharmacological strategy aimed for treating DN in the early stage. Here, we used the type 2 diabetic rat model to induce DN and show a nephroprotective effect following the stimulation of PPAR-α, which stabilized renal tight junction components claudin-2, claudin-5, and claudin-16. At 14 weeks old, streptozotocin-induced DN, evidenced by elevated creatinine clearance, proteinuria, and electrolyte excretion, was followed by an elevation in oxidative stress and increasing MMP activities affecting the integrity of claudin-2 and claudin-5. Treatment with a PPAR-α agonists decreased glucose levels in diabetic rats. In addition, we found that the expressions of CLDN-5 in glomeruli, CLDN-2 in proximal tubules, and CLDN-16 in the thick ascending limb of the loop of Henle were increased after treatment. As a result, renal function improved, while the oxidative stress and enzymatic activity of MMP-2 and MMP-9 decreased. In conclusion, PPAR-α stimulation prevented the decrease in claudins through a mechanism involving a correction of hyperglycemia, decreasing it in kidney oxidative stress and MMP-2 and MMP-9 activities, showing a promising nephroprotective action in the early stage of DN.
Insights
Stimulating PPAR-alpha protects kidneys in early diabetic nephropathy by correcting hyperglycemia and reducing oxidative stress. This approach stabilizes crucial proteins, improving kidney function and preventing irreversible damage.
Area of Science:
- Nephrology
- Endocrinology
- Pharmacology
Background:
- Diabetic nephropathy (DN) involves kidney damage from chronic hyperglycemia.
- Early intervention is crucial to prevent irreversible renal damage.
- PPAR-alpha stimulation shows potential for nephroprotection.
Purpose of the Study:
- To investigate the nephroprotective effects of PPAR-alpha stimulation in early diabetic nephropathy.
- To elucidate the mechanisms underlying PPAR-alpha's action on renal tight junctions and oxidative stress.
Main Methods:
- Induced type 2 diabetic nephropathy in a rat model using streptozotocin.
- Administered PPAR-alpha agonists to diabetic rats.
- Assessed renal function, oxidative stress markers, matrix metalloproteinase (MMP) activity, and claudin expression.
Main Results:
- PPAR-alpha agonist treatment reduced glucose levels and oxidative stress.
- MMP-2 and MMP-9 activities decreased significantly.
- Expression of claudins (CLDN-5, CLDN-2, CLDN-16) was restored in specific kidney segments.
- Renal function markers improved, indicating nephroprotection.
Conclusions:
- PPAR-alpha stimulation offers a promising therapeutic strategy for early-stage diabetic nephropathy.
- The mechanism involves correcting hyperglycemia, reducing oxidative stress and MMP activity, and stabilizing renal claudins.
- This highlights the potential of targeting PPAR-alpha for preventing DN progression.
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