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The Effects of Kefir on Kidney Tissues and Functions in Diabetic Rats
Mustafa Kahraman1, Yusuf Haydar Ertekin2, İlhan Satman3
1Istanbul School of Medicine, Department of Physiology, Istanbul University, Istanbul, Turkey. mkahraman17@gmail.com.
Abstract:
This study was designed to determine the protective effect of kefir on the oxidative damage, as well as histological and biochemical changes that occur in the kidney tissues of experimental diabetic rats. Forty rats were allocated into four groups as "healthy saline" (SF), "healthy kefir" (KF), and the same groups with experimentally induced diabetes (DSF and DKF). Diabetes was induced by administering 65 mg/kg single-dose streptozotocin. Oral kefir was given 10 ml/kg/day for 35 days to the rats in the groups KF and DKF. The same amount of saline was given to the groups SF and DSF. On the 36th day of the study, blood glucose, urea, and creatinine were measured besides glucose, creatinine, microalbuminuria, and sodium in the urine. Additionally, histological examination was performed on the kidney tissues. Blood glucose, creatinine, and urea levels were significantly lower in the DKF group compared with those of the DSF group (p < 0.001). Also, the creatinine level was significantly decreased (p < 0.001), and microalbuminuria was increased (p < 0.001) in the DKF group compared with that of the DSF group. Histologically, intermittent expansion in the renal glomeruli, reduction of cast formation in the tubules, and improvement in the renal epithelial tissues of the DKF group were observed. Kefir decreased the damage caused by diabetes. These results indicate that kefir supplementation may contribute to better control of oxidative stress, which is related to the improvement of renal functions, suggesting its use to slow down the progression of diabetic nephropathy.
Insights
Kefir supplementation in diabetic rats significantly reduced kidney damage by lowering blood glucose, creatinine, and urea levels. This suggests kefir may help manage oxidative stress and slow the progression of diabetic nephropathy.
Area of Science:
- Nephrology
- Diabetology
- Nutritional Science
Background:
- Diabetic nephropathy is a major complication of diabetes, characterized by kidney damage.
- Oxidative stress plays a significant role in the pathogenesis of diabetic nephropathy.
- Kefir, a fermented dairy product, possesses antioxidant properties.
Purpose of the Study:
- To investigate the protective effects of kefir on kidney damage in experimental diabetic rats.
- To evaluate the impact of kefir on oxidative stress and histological/biochemical changes in diabetic kidneys.
Main Methods:
- Induction of diabetes in rats using streptozotocin.
- Administration of kefir or saline to healthy and diabetic rats for 35 days.
- Measurement of blood and urine biochemical parameters (glucose, creatinine, urea, microalbuminuria).
- Histological examination of kidney tissues.
Main Results:
- Kefir supplementation significantly reduced blood glucose, creatinine, and urea levels in diabetic rats compared to controls.
- Histological analysis revealed improvements in renal glomeruli and tubules in kefir-treated diabetic rats.
- Kefir mitigated oxidative damage, suggesting a protective effect on kidney function.
Conclusions:
- Kefir supplementation demonstrates a protective effect against kidney damage in experimental diabetic rats.
- Kefir may help control oxidative stress and improve renal function in diabetic nephropathy.
- Kefir could be a potential adjunct therapy to slow the progression of diabetic kidney disease.
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