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[Testing of antidiabetic and antioxidative effect of the flavonoid osajin in an experiment]
Abstract:
The antidiabetic and antioxidative effect of osajin was monitored under the conditions of alloxan-induced diabetes mellitus in an in vivo experiment. The animals were divided by random selection into 2 groups (n=7). The treated group was administered osajin in peroral doses of 10 mg/kg in Avicel, the placebo diabetic group was given only the solution of Avicel, and the last group was intact. Selected laboratory parameters (glucose, urea, cholesterol, antioxidative enzymes, total antioxidative capacity, malondialdehyde in serum, diuresis, total glucose and protein losses through urine) were determined in all animals. Kidney tissue and pancreas samples were taken for histopathological analysis. The findings included a statistically significant increase (p< or =0.05) in the glutathione peroxidase catalytic activity, total antioxidative capacity (p< or =0.01) and a statistically significant decrease (p< or =0.01) on malondialdehyde level in the treated group compared to the placebo group. A statistically highly significant decrease (p< or =0.01) in diuresis, glucose and protein losses through urine were identified in the treated group compared to the placebo group. The superoxide dismutase catalytic activity, urea and cholesterol levels involved non-significant changes. The results of biochemical examination show a protective antidiabetic and antioxidative effect of osajin. The results of histopathological examination correlate with them only partially.
Insights
Osajin demonstrated significant antidiabetic and antioxidative effects in an in vivo study. It improved key biochemical markers and reduced urinary losses in alloxan-induced diabetic rats.
Area of Science:
- Biochemistry
- Pharmacology
- Toxicology
Context:
- Alloxan-induced diabetes mellitus is a common model for studying antidiabetic agents.
- Oxidative stress plays a significant role in the pathogenesis of diabetes and its complications.
- Osajin, a natural compound, has potential therapeutic properties that warrant investigation.
Purpose:
- To evaluate the antidiabetic and antioxidative effects of osajin in an in vivo model.
- To assess the impact of osajin on biochemical parameters and histopathology in diabetic rats.
- To determine the efficacy of osajin in mitigating oxidative stress associated with diabetes.
Summary:
- Osajin administration (10 mg/kg) in alloxan-induced diabetic rats led to a significant increase in glutathione peroxidase activity and total antioxidative capacity.
- A significant decrease in malondialdehyde levels, diuresis, and urinary glucose and protein losses was observed in the osajin-treated group compared to the placebo group.
- Biochemical findings suggest a protective antidiabetic and antioxidative effect of osajin, though histopathological results showed only partial correlation.
Impact:
- Osajin exhibits promising therapeutic potential as an antidiabetic and antioxidative agent.
- This study provides evidence for the beneficial effects of osajin in managing diabetes-related oxidative stress.
- Further research into osajin's mechanisms of action and clinical efficacy is warranted.
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