Publication:
Carbonic anhydrase inhibitory properties of novel benzylsulfamides using molecular modeling and experimental studies

dc.contributor.authorGöksu, Süleyman
dc.contributor.authorNaderi, Ali
dc.contributor.authorAkbaba, Yusuf
dc.contributor.authorKalın, Pınar
dc.contributor.authorAkıncıoğlu, Akın
dc.contributor.authorGülçın, İlhami
dc.contributor.authorDurdagi, Serdar
dc.contributor.authorSalmas, Ramin Ekhteiari
dc.contributor.institutionGöksu, Süleyman, Department of Chemistry, Atatürk Üniversitesi, Erzurum, Turkey
dc.contributor.institutionNaderi, Ali, Department of Chemistry, Atatürk Üniversitesi, Erzurum, Turkey
dc.contributor.institutionAkbaba, Yusuf, Department of Basic Sciences, Erzurum Technical University, Erzurum, Turkey
dc.contributor.institutionKalın, Pınar, Department of Chemistry, Atatürk Üniversitesi, Erzurum, Turkey
dc.contributor.institutionAkıncıoğlu, Akın, Central Research and Application Laboratory, Aǧrı İbrahim Çeçen Üniversitesi, Agri, Turkey
dc.contributor.institutionGülçın, İlhami, Department of Chemistry, Atatürk Üniversitesi, Erzurum, Turkey, Department of Zoology, College of Sciences, Riyadh, Saudi Arabia
dc.contributor.institutionDurdagi, Serdar, Department of Biophysics, Bahçeşehir Üniversitesi, Istanbul, Turkey
dc.contributor.institutionSalmas, Ramin Ekhteiari, Department of Chemistry, İstanbul Teknik Üniversitesi, Istanbul, Turkey
dc.date.accessioned2025-10-05T16:36:51Z
dc.date.issued2014
dc.description.abstractIn this study, a series of sulfamoyl carbamates and sulfamide derivatives were synthesized. Six commercially available benzyl amines and BnOH were reacted with chlorosulfonyl isocyanate (CSI) to give sulfamoyl carbamates. Pd-C catalyzed hydrogenolysis reactions of carbamates afforded sulfamides. The inhibition effects of novel benzylsulfamides on the carbonic anhydrase I, and II isoenzymes (CA I, and CA II) purified from fresh human blood red cells were determined by Sepharose-4B-L-Tyrosine-sulfanilamide affinity chromatography. In vitro studies were shown that all of novel synthesized benzylsulfamide analogs inhibited, concentration dependently, both hCA isoenzyme activities. The novel benzylsulfamide compounds investigated here exhibited nanomolar inhibition constants against the two isoenzymes. K<inf>i</inf> values were in the range of 28.48 ± 0.01-837.09 ± 0.19 nM and 112.01 ± 0.01-268.01 ± 0.22 nM for hCAI and hCA II isoenzymes, respectively. Molecular modeling approaches were also applied for studied compounds. © 2014 Elsevier Inc. All rights reserved. © 2014 Elsevier B.V., All rights reserved.
dc.identifier.doi10.1016/j.bioorg.2014.07.009
dc.identifier.endpage82
dc.identifier.issn00452068
dc.identifier.issn10902120
dc.identifier.pubmed25159522
dc.identifier.scopus2-s2.0-84907357107
dc.identifier.startpage75
dc.identifier.urihttps://doi.org/10.1016/j.bioorg.2014.07.009
dc.identifier.urihttps://hdl.handle.net/20.500.14719/13024
dc.identifier.volume56
dc.language.isoen
dc.publisherAcademic Press Inc. [email protected]
dc.relation.sourceBioorganic Chemistry
dc.subject.authorkeywordsBenzyl Amine
dc.subject.authorkeywordsCarbonic Anhydrase
dc.subject.authorkeywordsEnzyme Inhibition
dc.subject.authorkeywordsMolecular Modeling
dc.subject.authorkeywordsSulfamide
dc.subject.authorkeywordsSulfamoyl Carbamate
dc.subject.authorkeywordsBenzylsulfamide
dc.subject.authorkeywordsCarbon
dc.subject.authorkeywordsCarbonic Anhydrase I
dc.subject.authorkeywordsCarbonic Anhydrase Ii
dc.subject.authorkeywordsCarbonic Anhydrase Inhibitors
dc.subject.authorkeywordsIsoenzymes
dc.subject.authorkeywordsSulfonamides
dc.subject.authorkeywordsBenzyl N (2 Methoxybenzyl)sulfamoylcarbamate
dc.subject.authorkeywordsBenzyl N (2,4 Dimethoxybenzyl)sulfamoylcarbamate
dc.subject.authorkeywordsBenzyl N (3 Methoxybenzyl)sulfamoylcarbamate
dc.subject.authorkeywordsBenzyl N (3,4,5 Trimethoxybenzyl)sulfamoylcarbamate
dc.subject.authorkeywordsBenzyl N (3,5 Dimethoxybenzyl)sulfamoylcarbamate
dc.subject.authorkeywordsBenzyl N (4 Methoxybenzyl)sulfamoylcarbamate
dc.subject.authorkeywordsBenzylsulfamide
dc.subject.authorkeywordsCarbon
dc.subject.authorkeywordsCarbonate Dehydratase I
dc.subject.authorkeywordsCarbonate Dehydratase Ii
dc.subject.authorkeywordsCarbonate Dehydratase Inhibitor
dc.subject.authorkeywordsN (2 Methoxybenzyl)sulfamide
dc.subject.authorkeywordsN (3 Methoxybenzyl)sulfamide
dc.subject.authorkeywordsN (3,4,5 Trimethoxybenzyl)sulfamide
dc.subject.authorkeywordsN (3,5 Dimethoxybenzyl)sulfamide
dc.subject.authorkeywordsN (4 Methoxybenzyl)sulfamide
dc.subject.authorkeywordsUnclassified Drug
dc.subject.authorkeywordsIsoenzyme
dc.subject.authorkeywordsSulfonamide
dc.subject.authorkeywordsArticle
dc.subject.authorkeywordsControlled Study
dc.subject.authorkeywordsDrug Absorption
dc.subject.authorkeywordsEnzyme Inhibition
dc.subject.authorkeywordsErythrocyte
dc.subject.authorkeywordsHuman
dc.subject.authorkeywordsHuman Cell
dc.subject.authorkeywordsHydrogen Bond
dc.subject.authorkeywordsHydrogenolysis
dc.subject.authorkeywordsIn Vitro Study
dc.subject.authorkeywordsMolecular Model
dc.subject.authorkeywordsPriority Journal
dc.subject.authorkeywordsAntagonists And Inhibitors
dc.subject.authorkeywordsChemical Structure
dc.subject.authorkeywordsChemistry
dc.subject.authorkeywordsEnzymology
dc.subject.authorkeywordsIsolation And Purification
dc.subject.authorkeywordsMetabolism
dc.subject.authorkeywordsSynthesis
dc.subject.authorkeywordsCarbonic Anhydrase I
dc.subject.authorkeywordsCarbonic Anhydrase Ii
dc.subject.authorkeywordsCarbonic Anhydrase Inhibitors
dc.subject.authorkeywordsErythrocytes
dc.subject.authorkeywordsHumans
dc.subject.authorkeywordsIsoenzymes
dc.subject.authorkeywordsModels, Molecular
dc.subject.authorkeywordsMolecular Structure
dc.subject.authorkeywordsSulfonamides
dc.subject.indexkeywordsbenzyl n (2 methoxybenzyl)sulfamoylcarbamate
dc.subject.indexkeywordsbenzyl n (2,4 dimethoxybenzyl)sulfamoylcarbamate
dc.subject.indexkeywordsbenzyl n (3 methoxybenzyl)sulfamoylcarbamate
dc.subject.indexkeywordsbenzyl n (3,4,5 trimethoxybenzyl)sulfamoylcarbamate
dc.subject.indexkeywordsbenzyl n (3,5 dimethoxybenzyl)sulfamoylcarbamate
dc.subject.indexkeywordsbenzyl n (4 methoxybenzyl)sulfamoylcarbamate
dc.subject.indexkeywordsbenzylsulfamide
dc.subject.indexkeywordscarbon
dc.subject.indexkeywordscarbonate dehydratase I
dc.subject.indexkeywordscarbonate dehydratase II
dc.subject.indexkeywordscarbonate dehydratase inhibitor
dc.subject.indexkeywordsn (2 methoxybenzyl)sulfamide
dc.subject.indexkeywordsn (3 methoxybenzyl)sulfamide
dc.subject.indexkeywordsn (3,4,5 trimethoxybenzyl)sulfamide
dc.subject.indexkeywordsn (3,5 dimethoxybenzyl)sulfamide
dc.subject.indexkeywordsn (4 methoxybenzyl)sulfamide
dc.subject.indexkeywordsunclassified drug
dc.subject.indexkeywordsisoenzyme
dc.subject.indexkeywordssulfonamide
dc.subject.indexkeywordsarticle
dc.subject.indexkeywordscontrolled study
dc.subject.indexkeywordsdrug absorption
dc.subject.indexkeywordsenzyme inhibition
dc.subject.indexkeywordserythrocyte
dc.subject.indexkeywordshuman
dc.subject.indexkeywordshuman cell
dc.subject.indexkeywordshydrogen bond
dc.subject.indexkeywordshydrogenolysis
dc.subject.indexkeywordsin vitro study
dc.subject.indexkeywordsmolecular model
dc.subject.indexkeywordspriority journal
dc.subject.indexkeywordsantagonists and inhibitors
dc.subject.indexkeywordschemical structure
dc.subject.indexkeywordschemistry
dc.subject.indexkeywordsenzymology
dc.subject.indexkeywordsisolation and purification
dc.subject.indexkeywordsmetabolism
dc.subject.indexkeywordssynthesis
dc.subject.indexkeywordsCarbonic Anhydrase I
dc.subject.indexkeywordsCarbonic Anhydrase II
dc.subject.indexkeywordsCarbonic Anhydrase Inhibitors
dc.subject.indexkeywordsErythrocytes
dc.subject.indexkeywordsHumans
dc.subject.indexkeywordsIsoenzymes
dc.subject.indexkeywordsModels, Molecular
dc.subject.indexkeywordsMolecular Structure
dc.subject.indexkeywordsSulfonamides
dc.titleCarbonic anhydrase inhibitory properties of novel benzylsulfamides using molecular modeling and experimental studies
dc.typeArticle
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dspace.entity.typePublication
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