Inhibition Studies on Human and Mycobacterial Carbonic Anhydrases with N-((4-Sulfamoylphenyl)carbamothioyl) Amides

Author:

Abdoli Morteza1ORCID,Bonardi Alessandro23ORCID,Paoletti Niccolò23ORCID,Aspatwar Ashok4ORCID,Parkkila Seppo45ORCID,Gratteri Paola3ORCID,Supuran Claudiu T.2ORCID,Žalubovskis Raivis16ORCID

Affiliation:

1. Institute of Technology of Organic Chemistry, Faculty of Materials Science and Applied Chemistry, Riga Technical University, LV-1048 Riga, Latvia

2. Neurofarba Department, Universitàdegli Studi di Firenze, 50019 Florence, Italy

3. Laboratory of Molecular Modeling Cheminformatics & QSAR, Neurofarba Department, Università degli Studi di Firenze, 50019 Florence, Italy

4. Faculty of Medicine and Health Technology, Tampere University, 33520 Tampere, Finland

5. Fimlab Ltd., Tampere University Hospital, 33520 Tampere, Finland

6. Latvian Institute of Organic Synthesis, LV-1006 Riga, Latvia

Abstract

A library of structurally diverse N-((4-sulfamoylphenyl)carbamothioyl) amides was synthesized by selective acylation of easily accessible 4-thioureidobenzenesulfonamide with various aliphatic, benzylic, vinylic and aromatic acyl chlorides under mild conditions. Inhibition of three α-class cytosolic human (h) carbonic anhydrases (CAs) (EC 4.2.1.1); that is, hCA I, hCA II and hCA VII and three bacterial β-CAs from Mycobacterium tuberculosis (MtCA1-MtCA3) with these sulfonamides was thereafter investigated in vitro and in silico. Many of the evaluated compounds displayed better inhibition against hCA I (KI = 13.3–87.6 nM), hCA II (KI = 5.3–384.3 nM), and hCA VII (KI = 1.1–13.5 nM) compared with acetazolamide (AAZ) as the control drug (KI values of 250, 12.5 and 2.5 nM, respectively, against hCA I, hCA II and hCA VII). The mycobacterial enzymes MtCA1 and MtCA2 were also effectively inhibited by these compounds. MtCA3 was, on the other hand, poorly inhibited by the sulfonamides reported here. The most sensitive mycobacterial enzyme to these inhibitors was MtCA2 in which 10 of the 12 evaluated compounds showed KIs (KI, the inhibitor constant) in the low nanomolar range.

Funder

European Regional Development Fund

Publisher

MDPI AG

Subject

Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science

Reference75 articles.

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