Physicochemical Characterization of In Vitro LDL Glycation and Its Inhibition by Ellagic Acid (EA): An In Vivo Approach to Inhibit Diabetes in Experimental Animals

Author:

Ahmad Saheem1ORCID,Alouffi Sultan12ORCID,Khan Saif3,Khan Mahvish4,Akasha Rihab1,Ashraf Jalaluddin Mohammad5,Farhan Mohd6,Shahab Uzma7,Khan Mohd Yasir8ORCID

Affiliation:

1. Department of Clinical Laboratory Sciences, College of Applied Medical Sciences, University of Hail, Saudi Arabia

2. Molecular Diagnostic & Personalized Therapeutic Unit, University of Hail, Saudi Arabia

3. Department of Basic Dental and Medical Sciences, College of Dentistry, University of Hail, Ha’il 2440, Saudi Arabia

4. Department of Biology, College of Science, University of Hail, Ha’il 2440, Saudi Arabia

5. Department of Clinical Biochemistry, College Applied Medical Sciences, Jazan University, Jazan 45142, Saudi Arabia

6. Department of Basic Sciences, King Faisal University, P.O. Box 400, Al-Ahsa 31982, Saudi Arabia

7. Department of Biotechnology, Khwaja Moinuddin Chishti Language University, Sitapur-Hardoi Bypass Road, Lucknow 226013, India

8. Department of Biotechnology, School of Applied & Life Science (SALS), Uttaranchal University, Dehradun, 248007 Uttarakhand, India

Abstract

Hundreds of millions of people around the globe are afflicted by diabetes mellitus. The alteration in glucose fixation process might result into hyperglycaemia and could affect the circulating plasma proteins to undergo nonenzymatic glycation reaction. If it is unchecked, it may lead to diabetes with increase in advanced glycation end products (AGEs). Therefore, the present study was designed to inhibit the diabetes and glycation by using natural antioxidant “ellagic acid” (EA). In this study, we explored the antidiabetes and antiglycation potential of EA in both in vitro (EA at micromolar concentration) and in vivo systems. The EA concentrations of 10 and 20 mg kg-1B.W./day were administered orally for 25 days to alloxan-induced diabetic rats, a week after confirmation of stable diabetes in animals. Intriguingly, EA supplementation in diabetic rats reversed the increase in fasting blood sugar (FBS) and hemoglobin A1c (HbA1c) level. EA also showed an inhibitory role against glycation intermediates including dicarbonyls, as well as AGEs, investigated in a glycation mixture with in vitro and in vivo animal plasma samples. Additionally, EA treatment resulted in inhibition of lipid peroxidation-mediated malondialdehyde (MDA) and conjugated dienes (CD). Furthermore, EA exhibited an antioxidant property, increased the level of plasma glutathione (GSH), and also helped to decrease histological changes evaluated by histoimmunostaining of animal kidney tissues. The results from our investigation clearly indicates the antiglycative property of EA, suggesting EA as an adequate inhibitor of glycation and diabetes, which can be investigated further in preclinical settings for the treatment and management of diabetes-associated complications.

Funder

University of Hail

Publisher

Hindawi Limited

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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