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Therapeutic Methods and Therapies TCIM
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J Enzyme Inhib Med Chem ; 37(1): 51-61, 2022 Dec.
Article in English | MEDLINE | ID: mdl-34894972

ABSTRACT

Neisseria gonorrhoeae is a high-priority pathogen of concern due to the growing prevalence of resistance development against approved antibiotics. Herein, we report the anti-gonococcal activity of ethoxzolamide, the FDA-approved human carbonic anhydrase inhibitor. Ethoxzolamide displayed an MIC50, against a panel of N. gonorrhoeae isolates, of 0.125 µg/mL, 16-fold more potent than acetazolamide, although both molecules exhibited almost similar potency against the gonococcal carbonic anhydrase enzyme (NgCA) in vitro. Acetazolamide displayed an inhibition constant (Ki) versus NgCA of 74 nM, while Ethoxzolamide's Ki was estimated to 94 nM. Therefore, the increased anti-gonococcal potency of ethoxzolamide was attributed to its increased permeability in N. gonorrhoeae as compared to that of acetazolamide. Both drugs demonstrated bacteriostatic activity against N. gonorrhoeae, exhibited post-antibiotic effects up to 10 hours, and resistance was not observed against both. Taken together, these results indicate that acetazolamide and ethoxzolamide warrant further investigation for translation into effective anti-N. gonorrhoeae agents.


Subject(s)
Acetazolamide/pharmacology , Anti-Bacterial Agents/pharmacology , Carbonic Anhydrase Inhibitors/pharmacology , Carbonic Anhydrases/metabolism , Ethoxzolamide/pharmacology , Neisseria gonorrhoeae/drug effects , Acetazolamide/chemical synthesis , Acetazolamide/chemistry , Anti-Bacterial Agents/chemical synthesis , Anti-Bacterial Agents/chemistry , Carbonic Anhydrase Inhibitors/chemical synthesis , Carbonic Anhydrase Inhibitors/chemistry , Dose-Response Relationship, Drug , Ethoxzolamide/chemical synthesis , Ethoxzolamide/chemistry , Microbial Sensitivity Tests , Molecular Structure , Neisseria gonorrhoeae/enzymology , Structure-Activity Relationship , United States , United States Food and Drug Administration
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