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Semisynthetic Antimycobacterial C-3 Silicate and C-3/C-21 Ester Derivatives of Fusidic Acid: Pharmacological Evaluation and Stability Studies in Liver Microsomes, Rat Plasma, and Mycobacterium tuberculosis culture.
Njoroge, Mathew; Kaur, Gurminder; Espinoza-Moraga, Marlene; Wasuna, Antonina; Dziwornu, Godwin Akpeko; Seldon, Ronnett; Taylor, Dale; Okombo, John; Warner, Digby F; Chibale, Kelly.
Afiliación
  • Njoroge M; Department of Chemistry , University of Cape Town , Rondebosch 7701 , South Africa.
  • Kaur G; Department of Chemistry , University of Cape Town , Rondebosch 7701 , South Africa.
  • Espinoza-Moraga M; Department of Chemistry , University of Cape Town , Rondebosch 7701 , South Africa.
  • Wasuna A; Department of Chemistry , University of Cape Town , Rondebosch 7701 , South Africa.
  • Dziwornu GA; Department of Chemistry , University of Cape Town , Rondebosch 7701 , South Africa.
  • Seldon R; Institute of Infectious Disease and Molecular Medicine , University of Cape Town , Rondebosch 7701 , South Africa.
  • Taylor D; Drug Discovery and Development Centre (H3D) , University of Cape Town , Rondebosch 7701 , South Africa.
  • Okombo J; Drug Discovery and Development Centre (H3D) , University of Cape Town , Rondebosch 7701 , South Africa.
  • Warner DF; Department of Chemistry , University of Cape Town , Rondebosch 7701 , South Africa.
  • Chibale K; Institute of Infectious Disease and Molecular Medicine , University of Cape Town , Rondebosch 7701 , South Africa.
ACS Infect Dis ; 5(9): 1634-1644, 2019 09 13.
Article en En | MEDLINE | ID: mdl-31309823
ABSTRACT
Fusidic acid (FA), a natural product fusidane triterpene-based antibiotic with unique structural features, is active in vitro against Mycobacterium tuberculosis, the causative agent of tuberculosis (TB). While possessing good pharmacokinetics in man, FA is rapidly metabolized in rodents, thus complicating proof-of-concept studies in this model. Toward the repositioning of FA as an anti-TB agent, we herein describe the synthesis, activity, and metabolism of FA and semisynthesized ester derivatives in rat liver microsomes, rat plasma, and mycobacterial cell culture. FA and derivative molecules with a free C-3 OH underwent species-specific metabolism to the corresponding 3-OH epimer, 3-epifusidic acid (3-epiFA). FA was also metabolized in rat plasma to form FA lactone. These additional routes of metabolism may contribute to the more rapid clearance of FA observed in rodents. C-3 alkyl and aryl esters functioned as classic prodrugs of FA, being hydrolyzed to FA in microsomes, plasma, and Mycobacterium tuberculosis culture. In contrast, C-3 silicate esters and C-21 esters were inert to hydrolysis and so did not act as prodrugs. The antimycobacterial activity of the C-3 silicate esters was comparable to that of FA, and these compounds were stable in microsomes and plasma, identifying them as potential candidates for evaluation in a rodent model of tuberculosis.
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Texto completo: 1 Base de datos: MEDLINE Asunto principal: Silicatos / Ésteres / Ácido Fusídico / Mycobacterium tuberculosis Límite: Animals Idioma: En Revista: ACS Infect Dis Año: 2019 Tipo del documento: Article País de afiliación: Sudáfrica

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Silicatos / Ésteres / Ácido Fusídico / Mycobacterium tuberculosis Límite: Animals Idioma: En Revista: ACS Infect Dis Año: 2019 Tipo del documento: Article País de afiliación: Sudáfrica