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Diosmin reduces calcium oxalate deposition and tissue degeneration in nephrolithiasis in rats: a stereological study
Ali Noorafshan1, Saied Karbalay-Doust, Fatemeh Karimi
1Histomorphometry and Stereology Research Center, Shiraz University of Medical Sciences, Shiraz, Iran.
Purpose:
Kidney stones (nephrolithiasis) are a widespread disease. Thus, blocking stone formation and finding new therapeutic methods is an important area of study. Diosmin (a major component of the bile) is known to have antioxidant as well as renoprotective effects. The present investigation aimed to evaluate the effect of diosmin on renal tissue protection in rats with ethylene glycol-induced nephrolithiasis.
Materials And Methods:
The rats were randomly divided into three groups. Group one (control) did not receive any treatments. In groups two and three, nephrolithiasis was induced by 2.5% (V/V) ethylene glycol + 2.5% (W/V) ammonium chloride (2 mL/d). The second and the third groups received distilled water or diosmin (80 mg/kg/d) by gavage for 21 days.
Results:
Stereological estimation of the renal structures revealed that the average volume of calcium oxalate (CaOx) in the nephrolithiasis+diosmin rats was -63% less than in the rats with untreated nephrolithiasis (p<0.01). The volume of the glomeruli, proximal and distal convoluted tubules, Henle's loop, collecting ducts, and vessels was reduced -32% to 58% after the induction of nephrolithiasis (p<0.001). In the nephrolithiasis+diosmin rats, on average, -70% to 96% of the glomeruli, proximal convoluted tubules, Henle's loop collecting ducts, and vessels remained intact (p<0.01). Degeneration of the cortical tissue was 5-fold that of the medulla. In the nephrolithiasis+diosmin rats, degeneration in the renal cortical tissue and medulla was reduced -70% and 44%, respectively, compared with that in the untreated nephrolithiasis group (p<0.01).
Conclusions:
Diosmin reduces CaOx deposition and the degeneration of glomeruli and tubules in a rat model of nephrolithiasis.
Insights
Diosmin significantly reduced calcium oxalate deposition and kidney tissue damage in a rat model of nephrolithiasis. This study highlights diosmin
Area of Science:
- Nephrology
- Pharmacology
- Biochemistry
Background:
- Kidney stones (nephrolithiasis) represent a significant global health concern.
- Identifying novel therapeutic strategies to prevent stone formation is crucial.
- Diosmin, a flavonoid, exhibits known antioxidant and renoprotective properties.
Purpose of the Study:
- To investigate the protective effects of diosmin against kidney damage in an experimental rat model of nephrolithiasis.
- To evaluate diosmin's impact on calcium oxalate deposition and renal tissue integrity.
Main Methods:
- Nephrolithiasis was induced in rats using ethylene glycol and ammonium chloride.
- Rats were divided into control, untreated nephrolithiasis, and diosmin-treated groups.
- Diosmin (80 mg/kg/d) was administered orally for 21 days, with subsequent stereological analysis of renal structures.
Main Results:
- Diosmin treatment reduced calcium oxalate deposition by 63% compared to untreated nephrolithiasis rats (p<0.01).
- Kidney damage, including reduced volume of glomeruli and tubules (-32% to -58%), was observed after nephrolithiasis induction (p<0.001).
- Diosmin treatment preserved renal structures, with 70%-96% remaining intact, and significantly reduced cortical and medullary degeneration.
Conclusions:
- Diosmin effectively mitigates calcium oxalate deposition in experimental nephrolithiasis.
- Diosmin demonstrates significant renoprotective effects by reducing glomerular and tubular degeneration.
- The findings suggest diosmin as a potential therapeutic agent for managing kidney stones.
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