Synthesis and Characterization of Novel 1,3‐Diaryltriazene‐Substituted Sulfaguanidine Derivatives as Selective Carbonic Anhydrase Inhibitors: Biological Evaluation, in Silico ADME/T and Molecular Docking Study

Author:

Akocak Suleyman1ORCID,Lolak Nebih1,Duran Hatice Esra2,Işık Mesut3,Türkeş Cüneyt4,Durgun Mustafa5,Beydemir Şükrü67

Affiliation:

1. Department of Pharmaceutical Chemistry Faculty of Pharmacy Adıyaman University Adıyaman 02040 Turkey

2. Department of Medical Biochemistry Faculty of Medicine Kafkas University Kars 36100 Turkey

3. Department of Bioengineering Faculty of Engineering Bilecik Şeyh Edebali University Bilecik 11230 Turkey

4. Department of Biochemistry Faculty of Pharmacy Erzincan Binali Yıldırım University Erzincan 24002 Turkey

5. Department of Chemistry Faculty of Arts and Sciences Harran University Şanlıurfa 63290 Turkey

6. Department of Biochemistry Faculty of Pharmacy Anadolu University Eskişehir 26470 Turkey

7. Bilecik Şeyh Edebali University Bilecik 11230 Turkey

Abstract

AbstractSulfonamide compounds known as human carbonic anhydrase (hCA) inhibitors are used in the treatment of many diseases such as epilepsy, antibacterial, glaucoma, various diseases. 1,3‐diaryl‐substituted triazenes and sulfaguanidine are used for therapeutic purposes in many drug structures. Based on these two groups, the synthesis of new compounds is important. In the present study, the novel 1,3‐diaryltriazene‐substituted sulfaguanidine derivatives (SG1‐13) were synthesized and fully characterized by spectroscopic and analytic methods. Inhibitory effect of these compounds on the hCA I and hCA II was screened as in vitro. All the series of synthesized compounds have been identified as potential hCA isoenzymes inhibitory with KI values in the range of 6.44±0.74‐86.85±7.01 nM for hCA I and with KI values in the range of 8.16±0.40‐77.29±9.56 nM for hCA II. Moreover, the new series of compounds showed a more effective inhibition effect than the acetazolamide used as a reference. The possible binding positions of the compounds with a binding affinity to the hCA I and hCA II was demonstrated by in silico studies. In conclusion, compounds with varying degrees of affinity for hCA isoenzymes have been designed and as selective hCA inhibitors. These compounds may be potential alternative agents that can be used to treat or prevent diseases associated with glaucoma and hCA inhibition.

Publisher

Wiley

Subject

Molecular Biology,Molecular Medicine,General Chemistry,Biochemistry,General Medicine,Bioengineering

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