A library of 32 novel glycoconjugate thiourea-bridged benzene sulfonamides have been synthesized from the reaction of glycosyl isothiocyanates with a panel of simple benzene sulfonamides comprising either a free amine or hydrazide. All compounds were investigated for their ability to inhibit the enzymatic activity of five human carbonic anhydrase (hCA) isozymes: hCA I, II and membrane-associated isozymes IX, XII and XIV. A physicochemical feature of the free sugar thioureido glycoconjugates was high water solubility (> 20 mg/mL), as well many of these compounds exhibited a desirable potency and CA isozyme selectivity profile. From this library several inhibitors displayed excellent potency-selectivity profiles for transmembrane anchored CAs over off-target CA I and II. These molecules provide potential dual-acting candidates for the development of inhibitors that target the extracellular CAs (IX, XII and XIV)-either directly as free sugars (membrane impermeable) or indirectly as acetylated prodrugs, becoming free sugars upon esterase hydrolysis.

Design and synthesis of thiourea compounds that inhibit transmembrane anchored carbonic anhydrases / J. Moeker;K. Teruya;S. Rossit;B. L. Wilkinson;M. Lopez;L. F. Bornaghi;A. Innocenti;C. T. Supuran;S. Poulsen. - In: BIOORGANIC & MEDICINAL CHEMISTRY. - ISSN 0968-0896. - STAMPA. - 20:(2012), pp. 2392-2404. [10.1016/j.bmc.2012.01.052]

Design and synthesis of thiourea compounds that inhibit transmembrane anchored carbonic anhydrases.

SUPURAN, CLAUDIU TRANDAFIR;
2012

Abstract

A library of 32 novel glycoconjugate thiourea-bridged benzene sulfonamides have been synthesized from the reaction of glycosyl isothiocyanates with a panel of simple benzene sulfonamides comprising either a free amine or hydrazide. All compounds were investigated for their ability to inhibit the enzymatic activity of five human carbonic anhydrase (hCA) isozymes: hCA I, II and membrane-associated isozymes IX, XII and XIV. A physicochemical feature of the free sugar thioureido glycoconjugates was high water solubility (> 20 mg/mL), as well many of these compounds exhibited a desirable potency and CA isozyme selectivity profile. From this library several inhibitors displayed excellent potency-selectivity profiles for transmembrane anchored CAs over off-target CA I and II. These molecules provide potential dual-acting candidates for the development of inhibitors that target the extracellular CAs (IX, XII and XIV)-either directly as free sugars (membrane impermeable) or indirectly as acetylated prodrugs, becoming free sugars upon esterase hydrolysis.
2012
20
2392
2404
J. Moeker;K. Teruya;S. Rossit;B. L. Wilkinson;M. Lopez;L. F. Bornaghi;A. Innocenti;C. T. Supuran;S. Poulsen
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/776366
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