Comparative effects of pravastatin and rosuvastatin on carbohydrate metabolism in an experimental diabetic rat model

Author:

Kaya Hacer Kayhan1ORCID,Demirtas Berjan2ORCID,Yokus Beran3ORCID,Kesim Dilek Aygün4ORCID,Tasdemir Ezel5ORCID,Sermet Abdurrahman1ORCID

Affiliation:

1. Department of Physiology, Dicle University , Faculty of Medicine Diyarbakır , Turkey

2. Plant and Animal Production Department , Equine and Training Program , Vocational School of Veterinary Medicine, İstanbul University-Cerahpaşa , İstanbul , Turkey

3. Department of Biochemistry Faculty of Veterinary Medicine Dicle University Diyarbakır Turkey

4. Department of Physical Medicine and Rehabilitation, Dicle University , Faculty of Medicine Diyarbakır , Turkey

5. Department of Internal Medicine Medicalpark Hospitals , Antalya Turkey

Abstract

Abstract Statin treatment may increase the risk of diabetes; there is insufficient data on how statins affect glucose regulation and glycemic control and the effects of statins on liver enzymes related to carbohydrate metabolism have not been fully studied. Therefore, we aimed to compare the effects of the statin derivatives, pravastatin, and rosuvastatin, on carbohydrate metabolism in an experimental diabetic rat model. Female Wistar albino rats were used and diabetes was induced by intraperitoneal injection of streptozotocin. Thereafter, 10 and 20 mg kg−1 day−1 doses of both pravastatin and rosuvastatin were administered by oral gavage to the diabetic rats for 8 weeks. At the end of the experiment, body masses, the levels of fasting blood glucose, serum insulin, insulin resistance (HOMA-IR), liver glycogen, and liver enzymes related to carbohydrate metabolism were measured. Both doses of pravastatin significantly in creased the body mass in diabetic rats, however, rosuvastatin, especially at the dose of 20 mg kg−1 day−1 reduced the body mass signi ficantly. Pravastatin, especially at a dose of 20 mg kg−1 day−1, caused significant increases in liver glycogen synthase and glucose 6-phosphate dehydrogenase levels but significant decreases in the levels of glycogen phosphorylase, lactate dehydrogenase, and glucose-6-phosphatase. Hence, pravastatin partially ameliorated the adverse changes in liver enzymes caused by diabetes and, especially at the dose of 20 mg kg−1 day−1, reduced the fasting blood glucose level and increased the liver glycogen content. However, rosuvastatin, especially at the dose of 20 mg kg−1 day−1, significantly reduced the liver glycogen synthase and pyruvate kinase levels, but increased the glycogen phosphorylase level in diabetic rats. Rosuvastatin, 20 mg kg−1 day−1 dose, caused significant decreases in the body mass and the liver glycogen content of diabetic rats. It can be concluded that pravastatin, especially at the dose of 20 mg kg−1 day−1 is more effective in ameliorating the negative effects of diabetes by modulating carbohydrate metabolism.

Publisher

Walter de Gruyter GmbH

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