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Development of new thiazolidine-2,4-dione hybrids as aldose reductase inhibitors endowed with antihyperglycaemic activity: design, synthesis, biological investigations, and in silico insights.


ABSTRACT: This research study describes the development of new small molecules based on 2,4-thiazolidinedione (2,4-TZD) and their aldose reductase (AR) inhibitory activities. The synthesis of 17 new derivatives of 2,4-TZDs hybrids was feasible by incorporating two known bioactive scaffolds, benzothiazole heterocycle, and nitro phenacyl moiety. The most active hybrid (8b) was found to inhibit AR in a non-competitive manner (0.16 µM), as confirmed by kinetic studies and molecular docking simulations. Furthermore, the in vivo experiments demonstrated that compound 8b had a significant hypoglycaemic effect in mice with hyperglycaemia induced by streptozotocin. Fifty milligrams per kilogram dose of 8b produced a marked decrease in blood glucose concentration, and a lower dose of 5 mg/kg demonstrated a noticeable antihyperglycaemic effect. These outcomes suggested that compound 8b may be used as a promising therapeutic agent for the treatment of diabetic complications.

SUBMITTER: Hamdi A 

PROVIDER: S-EPMC10361003 | biostudies-literature | 2023 Dec

REPOSITORIES: biostudies-literature

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Development of new thiazolidine-2,4-dione hybrids as aldose reductase inhibitors endowed with antihyperglycaemic activity: design, synthesis, biological investigations, and <i>in silico</i> insights.

Hamdi Abdelrahman A   Yaseen Muhammad M   Ewes Wafaa A WA   Bhat Mashooq Ahmad MA   Ziedan Noha I NI   El-Shafey Hamed W HW   Mohamed Ahmed A B AAB   Elnagar Mohamed R MR   Haikal Abdullah A   Othman Dina I A DIA   Elgazar Abdullah A AA   Abusabaa Ahmed H A AHA   Abdelrahman Kamal S KS   Soltan Osama M OM   Elbadawi Mostafa M MM  

Journal of enzyme inhibition and medicinal chemistry 20231201 1


This research study describes the development of new small molecules based on 2,4-thiazolidinedione (2,4-TZD) and their aldose reductase (AR) inhibitory activities. The synthesis of 17 new derivatives of 2,4-TZDs hybrids was feasible by incorporating two known bioactive scaffolds, benzothiazole heterocycle, and nitro phenacyl moiety. The most active hybrid (<b>8b</b>) was found to inhibit AR in a non-competitive manner (0.16 µM), as confirmed by kinetic studies and molecular docking simulations.  ...[more]

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