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Sulfonamides incorporating ketene N,S-acetal bioisosteres as potent carbonic anhydrase and acetylcholinesterase inhibitors

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dc.date.accessioned 2021-06-08T09:11:16Z
dc.date.available 2021-06-08T09:11:16Z
dc.date.issued 2020
dc.identifier.issn 0365-6233
dc.identifier.uri https://hdl.handle.net/20.500.12619/95805
dc.description Research Fund of Erzincan Binali Yildirim University, Grant/Award Number: FBA-2017-501; Research Fund of Anadolu University, Grant/Award Number: 1610S681; Research Fund of Sakarya University, Grant/Award Number: 2016-02-04-018
dc.description Bu yayının lisans anlaşması koşulları tam metin açık erişimine izin vermemektedir.
dc.description.abstract In this study, 15 novel compounds in a series of sulfonamide-based ketenes (7a-o) were synthesized and characterized using Fourier-transform infrared spectroscopy, nuclear magnetic resonance spectroscopy, and mass spectrometry. All compounds were tested for their ability to inhibit the human carbonic anhydrase (hCA) isoforms I and II, and acetylcholinesterase (AChE). The halogen-appended compounds, 7g, 7o, and 7i, exhibited the highest hCA I/II and AChE inhibition, with the K-I values in the low nanomolar range (K-I = 9.01 +/- 0.08, 7.41 +/- 0.03, and 7.37 +/- 0.31 nM, respectively), as compared with their corresponding parent 2-[2,2-dicyano-1-(phenylamino)vinylthio]-N-(4-sulfamoylphenyl)acetamide analogs 7a-o. Besides, derivatives 7c and 7e selectively inhibited the isoform hCA I, whereas compounds 7m and 7n selectively inhibited isoform hCA II. These findings indicated that all compounds can inhibit metabolic dysfunctions, such as edema, epilepsy, glaucoma, and Alzheimer's disease, by specifically targeting both the hCA isoforms and AChE expression. Herein, also the interactions between ligands and receptors were highlighted through in silico molecular docking studies. The molecular mechanics-generalized Born surface area method was utilized to compute the binding free energy and the energy contribution of the critical residues in the active site was estimated. All these results would help us to perfectly understand the relationship between activity and structural characteristics of derivatives and to further improve newly and highly effective analogs targeting hCA and AChE.
dc.description.sponsorship Research Fund of Erzincan Binali Yildirim University [FBA-2017-501]; Research Fund of Anadolu UniversityAnadolu University [1610S681]; Research Fund of Sakarya UniversitySakarya University [2016-02-04-018]
dc.language English
dc.language.iso eng
dc.publisher WILEY-V C H VERLAG GMBH
dc.relation.isversionof 10.1002/ardp.201900383
dc.rights info:eu-repo/semantics/closedAccess
dc.subject IN-VITRO
dc.subject DRUG DISCOVERY
dc.subject DERIVATIVES
dc.subject HYDROCHLORIDE
dc.subject FLUORESCENCE
dc.subject CHEMISTRY
dc.subject AGONISTS
dc.subject BINDING
dc.subject PROFILE
dc.subject DESIGN
dc.title Sulfonamides incorporating ketene N,S-acetal bioisosteres as potent carbonic anhydrase and acetylcholinesterase inhibitors
dc.type Article
dc.contributor.authorID Demir, Yeliz/0000-0003-3216-1098
dc.contributor.authorID Turkes, Cuneyt/0000-0002-2932-2789
dc.contributor.authorID KUFREVIOGLU, Omer Irfan/0000-0002-1877-3154
dc.identifier.volume 353
dc.relation.journal ARCHIV DER PHARMAZIE
dc.identifier.issue 6
dc.identifier.doi 10.1002/ardp.201900383
dc.identifier.eissn 1521-4184
dc.contributor.author Istrefi, Qendresa
dc.contributor.author Turkes, Cuneyt
dc.contributor.author Arslan, Mustafa
dc.contributor.author Demir, Yeliz
dc.contributor.author Nixha, Arleta R.
dc.contributor.author Beydemir, Sukru
dc.contributor.author Kufrevioglu, Omer, I
dc.relation.publicationcategory Makale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanı
dc.identifier.pmıd 32285537


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