Inhibition of Aldose Reductase by Novel Phytocompounds: A Heuristic Approach to Treating Diabetic Retinopathy

Author:

Julius Angeline1ORCID,Renuka Remya Rajan1ORCID,Hopper Waheeta2ORCID,Babu Raghu P.3ORCID,Rajendran Sharmila4ORCID,Srinivasan Senthilkumari4,Dharmalingam Kuppamuthu5,Alanazi Amer M.6,Arokiyaraj Selvaraj7,Prasath S.8ORCID

Affiliation:

1. Centre for Materials Engineering and Regenerative Medicine, Bharath Institute of Higher Education and Research, Chennai 600126, India

2. Department of Biotechnology, School of Bioengineering, Faculty of Engineering and Technology, SRM Institute of Science and Technology, Chennai 603203, India

3. Department of Zoology, Madras Christian College, Affiliated to University of Madras, Chennai 600059, India

4. Department of Ocular Pharmacology, Aravind Medical Research Foundation, Dr. G. Venkataswamy Eye Research Institute, Madurai 625020, India

5. Department of Proteomics, Aravind Medical Research Foundation, Dr. G. Venkataswamy Eye Research Institute, Madurai 625020, India

6. Pharmaceutical Chemistry Department, College of Pharmacy, King Saud University, Riyadh 11451, Saudi Arabia

7. Department of Food Science and Biotechnology, Sejong University, Seoul, Republic of Korea

8. Department of Mechanical Engineering, College of Engineering and Technology, Mizan Tepi University, Tepi, Ethiopia

Abstract

Aldose reductase (ALR2) activation in the polyol pathway has been implicated as the primary mechanism for the progression of diabetic retinopathy. Most of the aldose reductase inhibitors (ARIs), used for the treatment of diabetic complications, were withdrawn due to ineffective treatment and adverse side effects caused by nonspecificity. Epalrestat, a carboxylic acid inhibitor, is the only ARI used for the treatment of diabetic neuropathy, though associated with minor side effects to 8% of the treated population. Our study exploited the interactions of Epalrestat-ALR2 crystal structure for the identification of specific phytocompounds that could inhibit human lens ALR2. 3D structures of plant compounds possessing antidiabetic property were retrieved from PubChem database for inhibition analysis, against human lens ALR2. Among the shortlisted compounds, Agnuside and Eupalitin-3-O-galactoside inhibited lens ALR2 with IC50 values of 22.4 nM and 27.3 nM, respectively, compared to the drug Epalrestat (98 nM), indicating high potency of these compounds as ALR2 inhibitors. IC50 concentration of the identified ARIs was validated in vitro using ARPE-19 cells. The in silico and in vitro approaches employed to identify and validate specific and potent ALR2 inhibitors resulted in the identification of phytocompounds with potency equal to or better than the ALR2 inhibiting drug, Epalrestat.

Funder

Bharath Institute of Higher Education and Research

Publisher

Hindawi Limited

Subject

Complementary and alternative medicine

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