Lipid profile
Explore 2 research publications tagged with this keyword
Publications Tagged with "Lipid profile"
2 publications found
2026
1 publicationEffect of the aqueous extract of the Debarked roots of Rauvolfia vomitoria (EARv) AFZEL (Apocynaceae) a plant with antidiabetic potential on the lipid profile following daily administration for six months in albino Wistar rats
Diabetes, considered a major global public health issue, is often associated with dyslipidemia. Given the limitations of conventional treatments, people are showing increasing interest in medicinal plants. Thus, Rauvolfia vomitoria has several pharmacological properties, including antihypertensive and potentially antidiabetic effects. This study aims to evaluate the effect of repeated oral administration of EARv on the lipid profile over a six-month treatment period. Rauvolfia vomitoria roots were harvested, stripped of their bark, and then processed into an aqueous extract by maceration. Eighty healthy rats were divided into four groups (T, A, B, C) of 20 rats each, with 10 males and 10 females per group. Rats in group T received distilled water, while those in groups A, B, and C received EARv extract at doses of 500, 700 mg/kg body weight (b.w), and 1,000 mg/kg b. w, respectively, administered orally for six months at a rate of 2 mL/100 g b.w daily. Using serum from blood samples collected to measure total cholesterol, HDL cholesterol, and triglycerides. The results show that the aqueous extract of Rauvolfia vomitoria significantly reduced total cholesterol levels in a dose-dependent manner; it also led to an increase in HDL cholesterol levels and a significant reduction in triglycerides. EARv could represent an interesting therapeutic alternative for the management of diabetes and its metabolic complications. Keywords : Aqueous extract of debarked roots- Rauvolfia vomitoria- Lipid profile-Cholesterols -Triglycerides
2014
1 publicationProtective Effects of Ginger and Silymarin on Alloxan-Induced Diabetic Rats
There is a close link between hyperglycemia, oxidative stress and diabetic complication. This study was carried out to clarify the effect of ginger and silymarin, as beneficial in the treatment of diabetes. Forty adult male albino rats were used in this study divided into four groups of ten rats each: group 1 represent normal control group, group 2 diabetic groups induced by alloxan, group 3 was diabetic and received daily ginger, group 4 was diabetic and received daily silymarin. Alloxan-induced diabetic rats, showed a significant increase of plasma glucose, triglyceride, total cholesterol, LDL–cholesterol, malondialdehyde, nitric oxide and uric acid while HDL–cholesterol and insulin levels are significantly decreased. Glutathione peroxidase, catalase and superoxide dismutase activities were significantly decreased in homogenates of liver and kidney, while malondialdehyde levels were increased in tissue homogenates of liver and kidney. Plasma levels of glucose, triglyceride, cholesterol, LDL–cholesterol and uric acid were decreased significantly after treatment with silymarin or ginger, while HDL–cholesterol and insulin were increased. Nitric oxide levels were decreased significantly in rats treated with silymarin only. In liver homogenates of rats treated with silymarin or ginger, malondialdehyde were decreased significantly, and catalase increased significantly, while superoxide dismutase activities and glutathione peroxidase were increased significantly in liver and kidney after silymarin or ginger treatment. The effects of both agents may be useful in delaying the complicated effects of diabetes due to imbalance between free radicals Moreover; silymarin may be more powerful free radical scavenger than ginger.
