Literature DB >> 33038328

(4-Oxo-2-thioxothiazolidin-3-yl)acetic acids as potent and selective aldose reductase inhibitors.

Marta Kucerova-Chlupacova1, Dominika Halakova2, Magdalena Majekova3, Jakub Treml4, Milan Stefek5, Marta Soltesova Prnova6.   

Abstract

(4-Oxo-2-thioxothiazolidin-3-yl)acetic acids exhibit a wide range of pharmacological activities. Among them, the only derivative used in clinical practice is the aldose reductase inhibitor epalrestat. Structurally related compounds, [(5Z)-(5-arylalkylidene-4-oxo-2-thioxo-1,3-thiazolidin-3-yl)]acetic acid derivatives were prepared previously as potential antifungal agents. This study was aimed at the determination of aldose reductase inhibitory action of the compounds in comparison with epalrestat and evaluation of structure-activity relationships (SAR). The aldose reductase (ALR2) enzyme was isolated from the rat eye lenses, while aldehyde reductase (ALR1) was obtained from the kidneys. The compounds studied were found to be potent inhibitors of ALR2 with submicromolar IC50 values. (Z)-2-(5-(1-(5-butylpyrazin-2-yl)ethylidene)-4-oxo-2-thioxothiazolidin-3-yl)acetic acid (3) was identified as the most efficacious inhibitor (over five times more potent than epalrestat) with mixed-type inhibition. All the compounds also exhibited low antiproliferative (cytotoxic) activity to the HepG2 cell line. Molecular docking simulations of 3 into the binding site of the aldose reductase enzyme identified His110, Trp111, Tyr48, and Leu300 as the crucial interaction counterparts responsible for the high-affinity binding. The selectivity factor for 3 in relation to the structurally related ALR1 was comparable to that for epalrestat. SAR conclusions suggest possible modifications to improve further inhibition efficacy, selectivity, and biological availability in the group of rhodanine carboxylic acids.
Copyright © 2020 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  4-Oxo-2-thioxothiazolidin-3-yl)acetic acids; Aldose reductase inhibition; Cytotoxicity; Diabetes complication; Rhodanine acetic acid

Mesh:

Substances:

Year:  2020        PMID: 33038328     DOI: 10.1016/j.cbi.2020.109286

Source DB:  PubMed          Journal:  Chem Biol Interact        ISSN: 0009-2797            Impact factor:   5.192


  3 in total

1.  Identification of potent aldose reductase inhibitors as antidiabetic (Anti-hyperglycemic) agents using QSAR based virtual Screening, molecular Docking, MD simulation and MMGBSA approaches.

Authors:  Ravindra L Bakal; Rahul D Jawarkar; J V Manwar; Minal S Jaiswal; Arabinda Ghosh; Ajaykumar Gandhi; Magdi E A Zaki; Sami Al-Hussain; Abdul Samad; Vijay H Masand; Nobendu Mukerjee; Syed Nasir Abbas Bukhari; Praveen Sharma; Israa Lewaa
Journal:  Saudi Pharm J       Date:  2022-04-07       Impact factor: 4.562

2.  (5-Hydroxy-4-oxo-2-styryl-4H-pyridin-1-yl)-acetic Acid Derivatives as Multifunctional Aldose Reductase Inhibitors.

Authors:  Huan Chen; Xin Zhang; Xiaonan Zhang; Wenchao Liu; Yanqi Lei; Changjin Zhu; Bing Ma
Journal:  Molecules       Date:  2020-11-04       Impact factor: 4.411

3.  Non-acidic bifunctional benzothiazole-based thiazolidinones with antimicrobial and aldose reductase inhibitory activity as a promising therapeutic strategy for sepsis.

Authors:  Antonios Kousaxidis; Lucia Kovacikova; Ioannis Nicolaou; Milan Stefek; Athina Geronikaki
Journal:  Med Chem Res       Date:  2021-08-04       Impact factor: 2.351

  3 in total

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