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Cinnamoyl-Oxaborole Amides: Synthesis and Their in Vitro Biological Activity

Due to the increased interest in their application in the treatment of infectious diseases, boron-containing compounds have received a significant coverage in the literature. Herein, a small set of novel cinnamoly-oxaborole amides were synthesized and screened against nagana Trypanosoma brucei bruce...

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Autores principales: Gumbo, Maureen, Beteck, Richard M., Mandizvo, Tawanda, Seldon, Ronnett, Warner, Digby F., Hoppe, Heinrich C., Isaacs, Michelle, Laming, Dustin, Tam, Christina C., Cheng, Luisa W., Liu, Nicole, Land, Kirkwood M., Khanye, Setshaba D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6222898/
https://www.ncbi.nlm.nih.gov/pubmed/30111695
http://dx.doi.org/10.3390/molecules23082038
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author Gumbo, Maureen
Beteck, Richard M.
Mandizvo, Tawanda
Seldon, Ronnett
Warner, Digby F.
Hoppe, Heinrich C.
Isaacs, Michelle
Laming, Dustin
Tam, Christina C.
Cheng, Luisa W.
Liu, Nicole
Land, Kirkwood M.
Khanye, Setshaba D.
author_facet Gumbo, Maureen
Beteck, Richard M.
Mandizvo, Tawanda
Seldon, Ronnett
Warner, Digby F.
Hoppe, Heinrich C.
Isaacs, Michelle
Laming, Dustin
Tam, Christina C.
Cheng, Luisa W.
Liu, Nicole
Land, Kirkwood M.
Khanye, Setshaba D.
author_sort Gumbo, Maureen
collection PubMed
description Due to the increased interest in their application in the treatment of infectious diseases, boron-containing compounds have received a significant coverage in the literature. Herein, a small set of novel cinnamoly-oxaborole amides were synthesized and screened against nagana Trypanosoma brucei brucei for antitrypanosomal activity. Compound 5g emerged as a new hit with an in vitro IC(50) value of 0.086 μM against T. b. brucei without obvious inhibitory activity against HeLa cell lines. The same series was also screened against other human pathogens, including Mycobacterium tuberculosis, the causative agent of tuberculosis (TB), for which moderate to weak activity (10 to >125 μM) was observed. Similarly, these compounds exhibited moderate activity against the human protozoal pathogen Trichomonas vaginalis with no observed effect on common microbiome bacterial species. The cross-species inhibitory activity presents the possibility of these compounds serving as broad-spectrum antibiotics for these prevalent three human pathogens.
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spelling pubmed-62228982018-11-13 Cinnamoyl-Oxaborole Amides: Synthesis and Their in Vitro Biological Activity Gumbo, Maureen Beteck, Richard M. Mandizvo, Tawanda Seldon, Ronnett Warner, Digby F. Hoppe, Heinrich C. Isaacs, Michelle Laming, Dustin Tam, Christina C. Cheng, Luisa W. Liu, Nicole Land, Kirkwood M. Khanye, Setshaba D. Molecules Article Due to the increased interest in their application in the treatment of infectious diseases, boron-containing compounds have received a significant coverage in the literature. Herein, a small set of novel cinnamoly-oxaborole amides were synthesized and screened against nagana Trypanosoma brucei brucei for antitrypanosomal activity. Compound 5g emerged as a new hit with an in vitro IC(50) value of 0.086 μM against T. b. brucei without obvious inhibitory activity against HeLa cell lines. The same series was also screened against other human pathogens, including Mycobacterium tuberculosis, the causative agent of tuberculosis (TB), for which moderate to weak activity (10 to >125 μM) was observed. Similarly, these compounds exhibited moderate activity against the human protozoal pathogen Trichomonas vaginalis with no observed effect on common microbiome bacterial species. The cross-species inhibitory activity presents the possibility of these compounds serving as broad-spectrum antibiotics for these prevalent three human pathogens. MDPI 2018-08-15 /pmc/articles/PMC6222898/ /pubmed/30111695 http://dx.doi.org/10.3390/molecules23082038 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gumbo, Maureen
Beteck, Richard M.
Mandizvo, Tawanda
Seldon, Ronnett
Warner, Digby F.
Hoppe, Heinrich C.
Isaacs, Michelle
Laming, Dustin
Tam, Christina C.
Cheng, Luisa W.
Liu, Nicole
Land, Kirkwood M.
Khanye, Setshaba D.
Cinnamoyl-Oxaborole Amides: Synthesis and Their in Vitro Biological Activity
title Cinnamoyl-Oxaborole Amides: Synthesis and Their in Vitro Biological Activity
title_full Cinnamoyl-Oxaborole Amides: Synthesis and Their in Vitro Biological Activity
title_fullStr Cinnamoyl-Oxaborole Amides: Synthesis and Their in Vitro Biological Activity
title_full_unstemmed Cinnamoyl-Oxaborole Amides: Synthesis and Their in Vitro Biological Activity
title_short Cinnamoyl-Oxaborole Amides: Synthesis and Their in Vitro Biological Activity
title_sort cinnamoyl-oxaborole amides: synthesis and their in vitro biological activity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6222898/
https://www.ncbi.nlm.nih.gov/pubmed/30111695
http://dx.doi.org/10.3390/molecules23082038
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