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The method for producing 4-trifluoromethoxybenzyl substituted benzimidazolium salts is described in this article. The method is based on the reaction of 4-trifluoromethoxybenzyl substituent alkylating agent with 1-alkylbenzimidazole. This method yielded 1-(4-trifluoromethoxybenzyl)-3-alkylbenzimidazolium bromide salts. These benzimidazolium salts were characterized by using H-NMR, C-NMR, FT-IR spectroscopy, and elemental analysis techniques. The crystal structure of 1f was enlightened by single crystal X-ray diffraction studies. Also, the enzyme inhibition effects of the synthesised compounds were investigated. They demonstrated highly potent inhibition effect on acetylcholinesterase (AChE) and carbonic anhydrases (hCAs) (K values are in the range of 7.24±0.99 to 39.12±5.66 nM, 5.57±0.96 to 43.07±11.76 nM, and 4.38±0.43 to 18.68±3.60 nM for AChE, hCA I, and hCA II, respectively). In molecular docking study, the interactions of active compounds showing activity against AChE and hCAs enzymes were examined. The most active compound 1f has -10.90 kcal/mol binding energy value against AChE enzyme, and the potential structure compound 1e, which has activity against hCA I and hCA II enzymes, was -7.51 and -8.93 kcal/mol, respectively.
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http://dx.doi.org/10.1002/cbdv.202200257 | DOI Listing |
Future Med Chem
September 2025
Faculty of Medicine, Department of Medical Microbiology, Sivas Cumhuriyet University, Sivas, Türkiye.
Aims: Metal-N-heterocyclic carben (NHC) complexes have garnered significant attention from synthesis chemistry. Silver is well known for its broad-spectrum antimicrobial activity, and it exhibits their activities with different mechanisms. In this study, we combined these two important scaffolds, analyzed for possible antimicrobial and antibiofilm activity, and evaluated the interactions against DNA Gyrase, SarA, Human Serum Albumin, and DNA for getting insight into the antimicrobial and antibiofilm details.
View Article and Find Full Text PDFArch Biochem Biophys
August 2025
Clinical Laboratory Sciences Department, Turabah University College, Taif, 21944, Saudi Arabia.
Target based drug design is an important strategy that increases the selectivity, efficacy and safety of drug candidates. In this study we designed synthesis of benz-imidazolium salts (L1-L3) and selenium compounds (C1-C3) to investigate their enzyme inhibition potential and bioactivity. Successful synthesis was confirmed through analytical techniques like UV-Vis.
View Article and Find Full Text PDFBiochem Biophys Res Commun
September 2025
Suleyman Demirel University, Faculty of Pharmacy, Department of Basic Pharmaceutical Sciences, Isparta, 32260, Türkiye; Bahcesehir University, Faculty of Engineering and Natural Sciences, Istanbul, 34353, Türkiye. Electronic address:
In this study, benzimidazolium salts were designed and prepared in two steps. Synthesized compounds 3a and 3b were evaluated on human cancer cell lines (A549, HepG2, and MCF-7). IC values and selectivity indices were calculated.
View Article and Find Full Text PDFArch Pharm (Weinheim)
July 2025
Department of Chemistry, Faculty of Science, Eskişehir Technical University, Eskişehir, Türkiye.
Herein, the synthesis of 1-alkyl-5(6)-benzoyl-substituted benzimidazoles and their 1,3-bisalkylbenzimidazolium halide salts are presented and evaluated for some metabolic enzyme inhibition. All compounds were characterized using various spectroscopic techniques. Single-crystal XRD analysis was performed to determine the molecular structure of two compounds.
View Article and Find Full Text PDFEur J Med Chem
October 2025
Department of Chemistry, Durban University of Technology, P.O Box 1334, Durban, 4000, South Africa.
Studies have shown that the physicochemical properties of five-membered heterocyclic azolium compounds directly affect their biological activity as therapeutic drugs (spectrum of activity and potency) and the associated pharmacokinetic, pharmacologic, and toxicological profiles of the compounds. Hence, this review focused on the influence of N-functionalisation at the wingtip of such compounds, mainly the diazolium and the triazolium-based salts. The contribution of the N-donor groups to the overall biological efficacy of the azolium compounds and the ensuing structure-activity mechanisms in their pharmacological applications are comprehensively discussed.
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