Abstract
Aldose reductase (ALR2), one of the metabolically important enzymes, catalyzes the formation of sorbitol from glucose in the polyol pathway. ALR2 inhibition is required to prevent diabetic complications. In the present study, the novel bis-hydrazone compounds bearing isovanillin moiety (GY1-12) were synthesized, and various chromatographic methods were applied to purify the ALR2 enzyme. Afterward, the inhibitory effect of the synthesized compounds on the ALR2 was screened in vitro. All the novel bis-hydrazones demonstrated activity in nanomolar levels as AR inhibitors with IC50 and KI values in the range of 12.55–35.04 nM, and 13.38–88.21 nM, respectively. Compounds GY-11, GY-7, and GY-5 against ALR2 were identified as the highly potent inhibitors, respectively, and were superior to the standard drug, epalrestat. Moreover, a comprehensive ligand-receptor interactions prediction was performed using ADME-Tox, Glide XP, and MM-GBSA modules of Schrödinger Small-Molecule Drug Discovery Suite to elucidate the novel bis-hydrazone derivatives, potential binding modes versus the ALR2. As a result, these compounds with ALR2 inhibitory effects may be potential alternative agents that can be used to treat or prevent diabetic complications.
| Original language | English |
|---|---|
| Article number | 105473 |
| Journal | Bioorganic Chemistry |
| Volume | 117 |
| DOIs | |
| Publication status | Published - Dec 2021 |
Bibliographical note
Publisher Copyright:© 2021 Elsevier Inc.
Funding
This work was supported by the Istanbul Technical University Grants Commission for a research grant (Project No: 33467) and the Research Fund of Anadolu University (grant number 2102S003). The authors thank Dr. Yeliz Demir and Oya Büyükemir for their kind help suggestions during the preparation of the manuscript.
| Funders | Funder number |
|---|---|
| Istanbul Technical University Grants Commission | 33467 |
| Anadolu Üniversitesi | 2102S003 |
Keywords
- ADME-Tox
- Aldose reductase
- Bis-hydrazones
- Epalrestat
- In silico study