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Effect of Metaswitch® dietary supplement on anthropometric parameters, serum lipids, glucose level, oxidative stress and in vivo antioxidant properties in high fat diet-induced overweight Sprague Dawley rats - 20/04/22

Doi : 10.1016/j.biopha.2022.112892 
Benoit Banga N’guessan a, , Jessica Sarpongmaa Twumasi-Ankrah a, Seth Kwabena Amponsah b, Ismaila Adams a, Albert Kyei-Kankam Poakwah a, c, Charles Brown d, Michael Buenor Adinortey e, Joseph Adusei Sarkodie f, Ofosua Adi-Dako g, Isaac Julius Asiedu-Gyekye a, Regina Appiah-Opong h
a Department of Pharmacology and Toxicology, School of Pharmacy, College of Health Sciences, University of Ghana, PO Box LG 43 Legon, Accra, Ghana 
b Department of Medical Pharmacology, Medical School, College of Health Sciences, University of Ghana, Accra, Ghana 
c Department of Nutrition and Dietetics, School of Biomedical and Allied Health Sciences, College of Health Sciences, University of Ghana, Ghana 
d Department of Medical Laboratory Sciences, School of Biomedical and Allied Health Sciences, College of Health Sciences, University of Ghana, Ghana 
e Department of Biochemistry, School of Biological Sciences, University of Cape Coast, Ghana 
f Department of Pharmacognosy and Herbal Medicine, School of Pharmacy, College of Health Sciences, University of Ghana, PO Box LG 43 Legon, Accra, Ghana 
g Department of Pharmaceutics and Microbiology, School of Pharmacy, College of Health Sciences, University of Ghana, Ghana 
h Department of Clinical Pathology, Noguchi Memorial Institute for Medical Research, College of Health Sciences, University of Ghana, Ghana 

Corresponding author.

Abstract

Purpose

Obesity and overweight are metabolic disorders associated with oxidative stress, and risk factors for many chronic diseases. We sought to investigate the effects of Metaswitch dietary supplement on weight gain and associated acute metabolic alterations in a high-fat diet-induced overweight rat model.

Methods

Female Sprague Dawley (SD) rats were put into 6 groups. Control groups were fed normal (NCD) or high-fat diet (HFD). Treatment groups on HFD receieved 3 different daily doses of Metaswitch for 3 weeks. Another group on HFD received Slimrite® (phenylpropanolamine), a standard drug. Rats on HFD also received cyproheptadine to stimulate appetite. Food consumption and anthropometric parameters were determined weekly. Serum lipids, glucose level, hepatic lipid peroxidation, and antioxidant activity were used to assess overweight in rats.

Results

Food intake remained relatively constant among groups. Rats on HFD had significantly increased body weight compared to rats fed NCD. Metaswitch significantly prevented weight gain; this effect was greater or similar to rats administered Slimrite, but was not dose-dependant. No significant changes occurred in the levels of serum lipids and glucose among the groups. However, serum triglyceride (TG) was significantly increased. The TG/HDL-C ratio revealed significant metabolic alterations which was prevented by Metaswitch. Catalase activity was significantly decreased in the HFD untreated group but was restored in Metaswitch-treated groups.

Conclusions

A 3-week HFD regimen with cyproheptadine supplementation in female SD rats resulted in a significant increase in body weight and acute metabolic alterations. The aforementioned changes were found to have been prevented with the administration of Metaswitch.

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Graphical Abstract




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Highlights

A 3-week HFD regimen with cyproheptadine increased body weight of female rats.
Levels of serum lipids, oxidative stress and antioxidant enzymes were unchanged.
The triglyceride to HDL-C ratio revealed early metabolic dysfunction.
Metaswitch prevented anthropometric and early serum and liver metabolic changes.
Metaswitch exhibited dose-independent effects greater than or similar to Slimrite.

Il testo completo di questo articolo è disponibile in PDF.

Keywords : Overweight, Metaswitch®, Weight-loss, Serum lipids, Oxidative stress, Dietary supplement, Antioxidant systems, Sprague Dawley


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