Design, synthesis, biological evaluation and docking analysis of pyrrolidine-benzenesulfonamides as carbonic anhydrase or acetylcholinesterase inhibitors and antimicrobial agents

吡咯烷 乙酰胆碱酯酶 化学 对接(动物) 立体化学 抗菌剂 塔克林 碳酸酐酶 酶抑制 活动站点 阿切 生物化学 胆碱酯酶 组合化学 药理学 有机化学 生物 医学 护理部
作者
Samet Poyraz,H. Ali Döndaş,Cem Yamalı,Samet Belveren,Yeliz Demir,Sabriye Aydınoğlu,Naciye Yaktubay Döndaş,Tuğba Taşkın‐Tok,Senanur Taş,Mahmut Ülger,José M. Sansano
出处
期刊:Journal of Biomolecular Structure & Dynamics [Informa]
卷期号:42 (7): 3441-3458 被引量:16
标识
DOI:10.1080/07391102.2023.2214224
摘要

AbstractAbstractThe synthesis and biological assessment of novel multi-functionalized pyrrolidine-containing benzenesulfonamides were reported along with their antimicrobial, antifungal, CAs inhibition, and AChE inhibition as well as DNA-binding effects. The chemical structure of the compounds was elucidated by using FTIR, NMR, and HRMS. Compound 3b, which had Ki values of 17.61 ± 3.58 nM (hCA I) and 5.14 ± 0.61 nM (hCA II), was found the be the most potent CAs inhibitor. Compounds 6a and 6b showed remarkable AChE inhibition effects with Ki values 22.34 ± 4.53 nM and 27.21 ± 3.96 nM in comparison to tacrine. Compounds 6a–6c had moderate antituberculosis effect on M. tuberculosis with a MIC value of 15.62 μg/ml. Compounds had weaker antifungal and antibacterial activity in the range of MIC 500–62.5 μg/ml against standard bacterial and fungal strains. Besides these above, molecular docking studies were performed to examine and evaluate the interaction of the remarkable compounds (3b, 6a and 6b) against the current enzymes (CAs and AChE). Novel compounds gained interest in terms of enzyme inhibitory potencies. Therefore, the most potent enzyme inhibitors may be considered lead compounds to be modified for further research.Communicated by Ramaswamy H. SarmaKeywords: Acetylcholinesteraseantimicrobialbenzenesulfonamidecarbonic anhydrasemolecular dockingpyrazolepyrrolidines Disclosure statementNo potential conflict of interest was reported by the author(s).Additional informationFundingWe gratefully acknowledge financial support from Çukurova University (Projects No: TSA-2021-13814 and TSA-2021-13443).Correction StatementThis article has been corrected with minor changes. These changes do not impact the academic content of the article.
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