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Protective effect of magnesium on renal function in STZ-induced diabetic rats
Mohammad Reza Parvizi1, Mohsen Parviz1, Seyed Mohammad Tavangar2
1Department of Physiology, School of Medicine, Tehran University of Medical Sciences, Tehran, Iran.
Background:
Diabetic nephropathy is a serious complication of T1D (type one diabetes mellitus). Persistent hyperglycemia and subsequent hypomagnesemia is believed to develop kidney damage by activation of oxidative stress. We conducted this study to investigate the renoprotective effect of magnesium sulfate (MgSO4) on renal histopathology and oxidative stress in diabetic rats.
Methods:
The study included 70 male rats. The animals were divided into seven groups: control (CRL), control receiving MgSO4 (CRL + Mg1 & CRL + Mg8), diabetic (DM1 & DM8) and diabetic receiving MgSO4 (DM + Mg1 & DM + Mg8). Rats were given 20 mg/kg (i.p) Streptozocin (STZ) for 5 consecutive days in (MLD) multiple low doses to induce T1D. At day 10 treatment groups were received MgSO4 (10 g/l) in drinking water, for 1 or 8 weeks. The blood glucose, BUN and creatinine levels were measured. Renal tissue levels of malondialdehyde (MDA) were measured by thiobarbituric acid (TBA) method to evaluate the oxidative stress. Renal histopathology was done using H & E staining method.
Results:
Treatment with MgSO4 significantly decreased the blood glucose in DM + Mg1 and DM + Mg8 groups as compared with DM1 and DM8. Magnesium treatment also decreased serum BUN and tissue level of MDA significantly in both short and long term treatment. The body weight loss and kidney weight to body weight ratio was improved by MgSO4. Histological results showed there were no differences between DM and DM + Mg groups.
Conclusion:
Our findings showed that diabetic nephropathy is associated with high blood glucose level and oxidative stress (significant increase in MDA level). The renal dysfunction and oxidative stress can be improved by magnesium sulfate administration. It is suggested that protection against development of diabetic nephropathy by MgSO4 treatment involves changes in the blood glucose and oxidative stress.
Insights
Magnesium sulfate (MgSO4) treatment improved kidney function and reduced oxidative stress in diabetic rats with type one diabetes mellitus. This suggests MgSO4 may protect against diabetic nephropathy by managing blood glucose and oxidative stress.
Area of Science:
- Nephrology
- Endocrinology
- Biochemistry
Background:
- Diabetic nephropathy is a severe complication of type one diabetes mellitus (T1D).
- Persistent hyperglycemia and hypomagnesemia contribute to kidney damage via oxidative stress.
- This study investigated the renoprotective effects of magnesium sulfate (MgSO4) in a rat model.
Purpose of the Study:
- To evaluate the renoprotective effect of magnesium sulfate (MgSO4) on renal histopathology and oxidative stress in diabetic rats.
- To assess the impact of MgSO4 on blood glucose, BUN, creatinine, and malondialdehyde (MDA) levels.
- To examine the histological changes in renal tissue following MgSO4 treatment.
Main Methods:
- Seventy male rats were divided into control and diabetic groups, with some receiving MgSO4 treatment.
- Type one diabetes mellitus was induced using multiple low doses of Streptozocin (STZ).
- Blood glucose, BUN, creatinine, and renal MDA levels were measured; renal histopathology was assessed using H&E staining.
Main Results:
- MgSO4 treatment significantly decreased blood glucose, BUN, and MDA levels in diabetic rats.
- Both short-term (1 week) and long-term (8 weeks) MgSO4 administration showed beneficial effects.
- MgSO4 improved body weight loss and kidney weight-to-body weight ratio, though no significant histological differences were observed between diabetic and treated diabetic groups.
Conclusions:
- Diabetic nephropathy is linked to hyperglycemia and increased oxidative stress (elevated MDA).
- Magnesium sulfate administration can improve renal dysfunction and reduce oxidative stress in diabetic rats.
- MgSO4 treatment may protect against diabetic nephropathy by influencing blood glucose levels and oxidative stress pathways.
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