In this study, hydrazine clubbed thiazole derivatives (3a-3j) were obtained by Hantzsch thiazole synthesis and characterized by MS, (1)H NMR, and (13)C NMR. The inhibitory potentials of the derivatives against diabetes-related enzymes such as aldose reductase (AR), α-glycosidase (α-GLY), and α-amylase (α-AMY) were experimentally determined, and the results were supported by molecular docking. The results showed that the derivatives (3a-3j) displayed varied degree of potential inhibitory activity, with K(I) values covering the following ranges: 5.47â±â0.53 to 23.89â±â1.46ânM for AR and 1.76â±â0.01 to 24.81â±â0.15âμM for α-GLY, and with IC(50) values 4.94-28.17âμM for α-AMY, as compared to standard epalrestat and acarbose (K(I): 34.53â±â2.52ânM for AR and 23.53â±â2.72âμM for α-GLY, respectively). The selective activity of these derivatives on antidiabetic enzymes may be important for the treatment of diabetes and may lead to the development of alternative new compounds for this purpose.
Discovery of Hydrazine Clubbed Thiazoles as Potential Antidiabetic Agents: Synthesis, Biological Evaluation, and Molecular Docking Studies.
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作者:Kaya Betül, Tahtacı Hakan, Ãiftçi Bilge, Duran Hatice Esra, Necip Adem, IÅık Mesut, Beydemir Åükrü
| 期刊: | Drug Development Research | 影响因子: | 4.200 |
| 时间: | 2025 | 起止号: | 2025 Feb;86(1):e70060 |
| doi: | 10.1002/ddr.70060 | ||
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