Gold Nanoparticle-Bioconjugated Aminoguanidine Inhibits Glycation Reaction: An In Vivo Study in a Diabetic Animal Model

Author:

Ahmad Saheem1ORCID,Khan Mohd. Sajid23,Alouffi Sultan14ORCID,Khan Saif5,Khan Mahvish6,Akashah Rihab1,Faisal Mohammad7ORCID,Shahab Uzma8ORCID

Affiliation:

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

2. Department of Biosciences, Integral University, Lucknow, India

3. Department of Biochemistry, Faculty of Life Sciences, Aligarh Muslim University, Aligarh 202002, India

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

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

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

7. Department of Botany and Microbiology, College of Science, King Saud University, Saudi Arabia

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

Abstract

Proteins undergo glycation resulting in the generation of advanced glycation end products (AGEs) that play a central role in the onset and advancement of diabetes-associated secondary complications. Aminoguanidine (AG) acts as an antiglycating agent by inhibiting AGE generation by blocking reactive carbonyl species (RCS) like, methylglyoxal (MGO). Previous studies on antiglycating behavior of AG gave promising results in the treatment of diabetes-associated microvascular complications, but it was discontinued as it was found to be toxic at high concentrations (>10 mmol/L). The current article aims at glycation inhibition by conjugating gold nanoparticles (Gnp) with less concentration of AG (0.5-1.0 mmol/L). The HPLC results showed that AG-Gnp fairly hampers the formation of glycation adducts. Moreover, the in vivo studies revealed AG-Gnp mediated inhibition in the production of total-AGEs and - N ε -(carboxymethyl)lysine (CML) in the diabetic rat model. This inhibition was found to be directly correlated with the antioxidant parameters, blood glucose, insulin, and glycosylated hemoglobin levels. Furthermore, the histopathology of AG-Gnp-treated rats showed good recovery in the damaged pancreatic tissue as compared to diabetic rats. We propose that this approach might increase the efficacy of AG at relatively low concentrations to avoid toxicity and might facilitate to overcome the hazardous actions of antiglycating drugs.

Funder

University of Hail

Publisher

Hindawi Limited

Subject

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

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