Cargando…
A Screening of the MMV Pandemic Response Box Reveals Epetraborole as A New Potent Inhibitor against Mycobacterium abscessus
Mycobacterium abscessus is the one of the most feared bacterial respiratory pathogens in the world. Unfortunately, there are many problems with the current M. abscessus therapies available. These problems include misdiagnoses, high drug resistance, poor long-term treatment outcomes, and high costs....
Autores principales: | , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8199016/ https://www.ncbi.nlm.nih.gov/pubmed/34073006 http://dx.doi.org/10.3390/ijms22115936 |
_version_ | 1783707276594380800 |
---|---|
author | Kim, Taeho Hanh, Bui-Thi-Bich Heo, Boeun Quang, Nguyenthanh Park, Yujin Shin, Jihyeon Jeon, Seunghyeon Park, June-Woo Samby, Kirandeep Jang, Jichan |
author_facet | Kim, Taeho Hanh, Bui-Thi-Bich Heo, Boeun Quang, Nguyenthanh Park, Yujin Shin, Jihyeon Jeon, Seunghyeon Park, June-Woo Samby, Kirandeep Jang, Jichan |
author_sort | Kim, Taeho |
collection | PubMed |
description | Mycobacterium abscessus is the one of the most feared bacterial respiratory pathogens in the world. Unfortunately, there are many problems with the current M. abscessus therapies available. These problems include misdiagnoses, high drug resistance, poor long-term treatment outcomes, and high costs. Until now, there have only been a few new compounds or drug formulations which are active against M. abscessus, and these are present in preclinical and clinical development only. With that in mind, new and more powerful anti-M. abscessus medicines need to be discovered and developed. In this study, we conducted an in vitro-dual screen against M. abscessus rough (R) and smooth (S) variants using a Pandemic Response Box and identified epetraborole as a new effective candidate for M. abscessus therapy. For further validation, epetraborole showed significant activity against the growth of the M. abscessus wild-type strain, three subspecies, drug-resistant strains and clinical isolates in vitro, while also inhibiting the growth of M. abscessus that reside in macrophages without cytotoxicity. Furthermore, the in vivo efficacy of epetraborole in the zebrafish infection model was greater than that of tigecycline. Thus, we concluded that epetraborole is a potential anti-M. abscessus candidate in the M. abscessus drug search. |
format | Online Article Text |
id | pubmed-8199016 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-81990162021-06-14 A Screening of the MMV Pandemic Response Box Reveals Epetraborole as A New Potent Inhibitor against Mycobacterium abscessus Kim, Taeho Hanh, Bui-Thi-Bich Heo, Boeun Quang, Nguyenthanh Park, Yujin Shin, Jihyeon Jeon, Seunghyeon Park, June-Woo Samby, Kirandeep Jang, Jichan Int J Mol Sci Article Mycobacterium abscessus is the one of the most feared bacterial respiratory pathogens in the world. Unfortunately, there are many problems with the current M. abscessus therapies available. These problems include misdiagnoses, high drug resistance, poor long-term treatment outcomes, and high costs. Until now, there have only been a few new compounds or drug formulations which are active against M. abscessus, and these are present in preclinical and clinical development only. With that in mind, new and more powerful anti-M. abscessus medicines need to be discovered and developed. In this study, we conducted an in vitro-dual screen against M. abscessus rough (R) and smooth (S) variants using a Pandemic Response Box and identified epetraborole as a new effective candidate for M. abscessus therapy. For further validation, epetraborole showed significant activity against the growth of the M. abscessus wild-type strain, three subspecies, drug-resistant strains and clinical isolates in vitro, while also inhibiting the growth of M. abscessus that reside in macrophages without cytotoxicity. Furthermore, the in vivo efficacy of epetraborole in the zebrafish infection model was greater than that of tigecycline. Thus, we concluded that epetraborole is a potential anti-M. abscessus candidate in the M. abscessus drug search. MDPI 2021-05-31 /pmc/articles/PMC8199016/ /pubmed/34073006 http://dx.doi.org/10.3390/ijms22115936 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Kim, Taeho Hanh, Bui-Thi-Bich Heo, Boeun Quang, Nguyenthanh Park, Yujin Shin, Jihyeon Jeon, Seunghyeon Park, June-Woo Samby, Kirandeep Jang, Jichan A Screening of the MMV Pandemic Response Box Reveals Epetraborole as A New Potent Inhibitor against Mycobacterium abscessus |
title | A Screening of the MMV Pandemic Response Box Reveals Epetraborole as A New Potent Inhibitor against Mycobacterium abscessus |
title_full | A Screening of the MMV Pandemic Response Box Reveals Epetraborole as A New Potent Inhibitor against Mycobacterium abscessus |
title_fullStr | A Screening of the MMV Pandemic Response Box Reveals Epetraborole as A New Potent Inhibitor against Mycobacterium abscessus |
title_full_unstemmed | A Screening of the MMV Pandemic Response Box Reveals Epetraborole as A New Potent Inhibitor against Mycobacterium abscessus |
title_short | A Screening of the MMV Pandemic Response Box Reveals Epetraborole as A New Potent Inhibitor against Mycobacterium abscessus |
title_sort | screening of the mmv pandemic response box reveals epetraborole as a new potent inhibitor against mycobacterium abscessus |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8199016/ https://www.ncbi.nlm.nih.gov/pubmed/34073006 http://dx.doi.org/10.3390/ijms22115936 |
work_keys_str_mv | AT kimtaeho ascreeningofthemmvpandemicresponseboxrevealsepetraboroleasanewpotentinhibitoragainstmycobacteriumabscessus AT hanhbuithibich ascreeningofthemmvpandemicresponseboxrevealsepetraboroleasanewpotentinhibitoragainstmycobacteriumabscessus AT heoboeun ascreeningofthemmvpandemicresponseboxrevealsepetraboroleasanewpotentinhibitoragainstmycobacteriumabscessus AT quangnguyenthanh ascreeningofthemmvpandemicresponseboxrevealsepetraboroleasanewpotentinhibitoragainstmycobacteriumabscessus AT parkyujin ascreeningofthemmvpandemicresponseboxrevealsepetraboroleasanewpotentinhibitoragainstmycobacteriumabscessus AT shinjihyeon ascreeningofthemmvpandemicresponseboxrevealsepetraboroleasanewpotentinhibitoragainstmycobacteriumabscessus AT jeonseunghyeon ascreeningofthemmvpandemicresponseboxrevealsepetraboroleasanewpotentinhibitoragainstmycobacteriumabscessus AT parkjunewoo ascreeningofthemmvpandemicresponseboxrevealsepetraboroleasanewpotentinhibitoragainstmycobacteriumabscessus AT sambykirandeep ascreeningofthemmvpandemicresponseboxrevealsepetraboroleasanewpotentinhibitoragainstmycobacteriumabscessus AT jangjichan ascreeningofthemmvpandemicresponseboxrevealsepetraboroleasanewpotentinhibitoragainstmycobacteriumabscessus AT kimtaeho screeningofthemmvpandemicresponseboxrevealsepetraboroleasanewpotentinhibitoragainstmycobacteriumabscessus AT hanhbuithibich screeningofthemmvpandemicresponseboxrevealsepetraboroleasanewpotentinhibitoragainstmycobacteriumabscessus AT heoboeun screeningofthemmvpandemicresponseboxrevealsepetraboroleasanewpotentinhibitoragainstmycobacteriumabscessus AT quangnguyenthanh screeningofthemmvpandemicresponseboxrevealsepetraboroleasanewpotentinhibitoragainstmycobacteriumabscessus AT parkyujin screeningofthemmvpandemicresponseboxrevealsepetraboroleasanewpotentinhibitoragainstmycobacteriumabscessus AT shinjihyeon screeningofthemmvpandemicresponseboxrevealsepetraboroleasanewpotentinhibitoragainstmycobacteriumabscessus AT jeonseunghyeon screeningofthemmvpandemicresponseboxrevealsepetraboroleasanewpotentinhibitoragainstmycobacteriumabscessus AT parkjunewoo screeningofthemmvpandemicresponseboxrevealsepetraboroleasanewpotentinhibitoragainstmycobacteriumabscessus AT sambykirandeep screeningofthemmvpandemicresponseboxrevealsepetraboroleasanewpotentinhibitoragainstmycobacteriumabscessus AT jangjichan screeningofthemmvpandemicresponseboxrevealsepetraboroleasanewpotentinhibitoragainstmycobacteriumabscessus |