Zehir Kırkbir, GamzeGültekin, ErgünKolcuoğlu, YakupBekircan, OlcayÇolak, Ahmet2024-12-112024-12-1120242365-6549http://dx.doi.org/10.1002/slct.202304002https://hdl.handle.net/11494/5178With the production of bacterial urease, bacteria can provide the best conditions for colonization and survival of the stomach in acidic environment. Due to this reproductive ability, H. pylori can cause various diseases such as cancer, urinary tract infections, and peptic ulcer in human metabolism. Consequently, the discovery of substances that can inhibit urease activity holds great promise for treating certain diseases. In this study, Schiff base derivatives of 1,2,4-triazole-3-thione were synthesized in good to excellent yields. The structures of the obtained compounds were elucidated using spectroscopic techniques, such as FT-IR, ¹H-NMR and ¹³C-NMR. The urease inhibitory activities of the obtained products were evaluated against the reference inhibitor thiourea. Out of these compounds, compound 6 c exhibited the highest inhibitory effectiveness, with an IC?? value of 0.0109 ?M against refenrence inhibitor (IC??=11 ?M). Kinetic studies revealed that compound 6 c acts as a non-competitive inhibitor. According to the results of the docking studies, compound 6 c exhibited the highest binding affinity (with the lowest ?G value as ?8.4 kcal/mol) and efficiently interacted with the enzyme as a potent inhibitor among all the molecules examined in the study.eninfo:eu-repo/semantics/embargoedAccess1,2,4-Triazole-3-ThioneADMEDockingInhibitionUreaseInvestigation of the properties of 1,2,4-triazole-3-thione schiff base derivatives by urease inhibition as therapeutic or agrochemical candidate moleculesArticle92610.1002/slct.202304002Q3Q3