Artículo
Synthesis and Antichlamydial Activity of Molecules Based on Dysregulators of Cylindrical Proteases
Seleem, Mohamed A.; Rodrigues de Almeida, Nathalia; Chhonker, Yashpal Singh; Murry, Daryl J.; Guterres, Z. R.; Blocker, Amanda M; Kuwabara, Shiomi; Fisher, Derek J.; Leal, Emilse Soledad
; Martinefski, Manuela Romina
; Bollini, Mariela
; Monge, Maria Eugenia
; Ouellette, Scot; Conda-Sheridan, Martin
Fecha de publicación:
03/2020
Editorial:
American Chemical Society
Revista:
Journal of Medicinal Chemistry
ISSN:
0022-2623
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Chlamydia trachomatis is the most common sexually transmitted bacterial disease globally and the leading cause of infertility and preventable infectious blindness (trachoma) in the world. Unfortunately, there is no FDA-approved treatment specific for chlamydial infections. We recently reported two sulfonylpyridines that halt the growth of the pathogen. Herein, we present a SAR of the sulfonylpyridine molecule by introducing substituents on the aromatic regions. Biological evaluation studies showed that several analogues can impair the growth of C. trachomatis without affecting host cell viability. The compounds did not kill other bacteria, indicating selectivity for Chlamydia. The compounds presented mild toxicity toward mammalian cell lines. The compounds were found to be nonmutagenic in a Drosophila melanogaster assay and exhibited a promising stability in both plasma and gastric fluid. The presented results indicate this scaffold is a promising starting point for the development of selective antichlamydial drugs.
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Articulos(CIBION)
Articulos de CENTRO DE INVESTIGACIONES EN BIONANOCIENCIAS "ELIZABETH JARES ERIJMAN"
Articulos de CENTRO DE INVESTIGACIONES EN BIONANOCIENCIAS "ELIZABETH JARES ERIJMAN"
Citación
Seleem, Mohamed A.; Rodrigues de Almeida, Nathalia; Chhonker, Yashpal Singh; Murry, Daryl J.; Guterres, Z. R.; et al.; Synthesis and Antichlamydial Activity of Molecules Based on Dysregulators of Cylindrical Proteases; American Chemical Society; Journal of Medicinal Chemistry; 63; 8; 3-2020; 4370-4387
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