Cargando…

A Novel Tool to Identify Bactericidal Compounds against Vulnerable Targets in Drug-Tolerant M. tuberculosis found in Caseum

Caseous necrosis is a hallmark of tuberculosis (TB) pathology and creates a niche for drug-tolerant persisters within the host. Cavitary TB and high bacterial burden in caseum require longer treatment duration. An in vitro model that recapitulates the major features of Mycobacterium tuberculosis (Mt...

Descripción completa

Detalles Bibliográficos
Autores principales: Sarathy, Jansy P., Xie, Min, Jones, Richard M., Chang, Adrienne, Osiecki, Paulina, Weiner, Danielle, Tsao, Wen-Shan, Dougher, Maureen, Blanc, Landry, Fotouhi, Nader, Via, Laura E., Barry, Clifton E., De Vlaminck, Iwijn, Sherman, David R., Dartois, Véronique A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10127596/
https://www.ncbi.nlm.nih.gov/pubmed/37017524
http://dx.doi.org/10.1128/mbio.00598-23
_version_ 1785030490525270016
author Sarathy, Jansy P.
Xie, Min
Jones, Richard M.
Chang, Adrienne
Osiecki, Paulina
Weiner, Danielle
Tsao, Wen-Shan
Dougher, Maureen
Blanc, Landry
Fotouhi, Nader
Via, Laura E.
Barry, Clifton E.
De Vlaminck, Iwijn
Sherman, David R.
Dartois, Véronique A.
author_facet Sarathy, Jansy P.
Xie, Min
Jones, Richard M.
Chang, Adrienne
Osiecki, Paulina
Weiner, Danielle
Tsao, Wen-Shan
Dougher, Maureen
Blanc, Landry
Fotouhi, Nader
Via, Laura E.
Barry, Clifton E.
De Vlaminck, Iwijn
Sherman, David R.
Dartois, Véronique A.
author_sort Sarathy, Jansy P.
collection PubMed
description Caseous necrosis is a hallmark of tuberculosis (TB) pathology and creates a niche for drug-tolerant persisters within the host. Cavitary TB and high bacterial burden in caseum require longer treatment duration. An in vitro model that recapitulates the major features of Mycobacterium tuberculosis (Mtb) in caseum would accelerate the identification of compounds with treatment-shortening potential. We have developed a caseum surrogate model consisting of lysed and denatured foamy macrophages. Upon inoculation of Mtb from replicating cultures, the pathogen adapts to the lipid-rich matrix and gradually adopts a nonreplicating state. We determined that the lipid composition of ex vivo caseum and the surrogate matrix are similar. We also observed that Mtb in caseum surrogate accumulates intracellular lipophilic inclusions (ILI), a distinctive characteristic of quiescent and drug-tolerant Mtb. Expression profiling of a representative gene subset revealed common signatures between the models. Comparison of Mtb drug susceptibility in caseum and caseum surrogate revealed that both populations are similarly tolerant to a panel of TB drugs. By screening drug candidates in the surrogate model, we determined that the bedaquiline analogs TBAJ876 and TBAJ587, currently in clinical development, exhibit superior bactericidal against caseum-resident Mtb, both alone and as substitutions for bedaquiline in the bedaquiline-pretomanid-linezolid regimen approved for the treatment of multidrug-resistant TB. In summary, we have developed a physiologically relevant nonreplicating persistence model that reflects the distinct metabolic and drug-tolerant state of Mtb in caseum.
format Online
Article
Text
id pubmed-10127596
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher American Society for Microbiology
record_format MEDLINE/PubMed
spelling pubmed-101275962023-04-26 A Novel Tool to Identify Bactericidal Compounds against Vulnerable Targets in Drug-Tolerant M. tuberculosis found in Caseum Sarathy, Jansy P. Xie, Min Jones, Richard M. Chang, Adrienne Osiecki, Paulina Weiner, Danielle Tsao, Wen-Shan Dougher, Maureen Blanc, Landry Fotouhi, Nader Via, Laura E. Barry, Clifton E. De Vlaminck, Iwijn Sherman, David R. Dartois, Véronique A. mBio Research Article Caseous necrosis is a hallmark of tuberculosis (TB) pathology and creates a niche for drug-tolerant persisters within the host. Cavitary TB and high bacterial burden in caseum require longer treatment duration. An in vitro model that recapitulates the major features of Mycobacterium tuberculosis (Mtb) in caseum would accelerate the identification of compounds with treatment-shortening potential. We have developed a caseum surrogate model consisting of lysed and denatured foamy macrophages. Upon inoculation of Mtb from replicating cultures, the pathogen adapts to the lipid-rich matrix and gradually adopts a nonreplicating state. We determined that the lipid composition of ex vivo caseum and the surrogate matrix are similar. We also observed that Mtb in caseum surrogate accumulates intracellular lipophilic inclusions (ILI), a distinctive characteristic of quiescent and drug-tolerant Mtb. Expression profiling of a representative gene subset revealed common signatures between the models. Comparison of Mtb drug susceptibility in caseum and caseum surrogate revealed that both populations are similarly tolerant to a panel of TB drugs. By screening drug candidates in the surrogate model, we determined that the bedaquiline analogs TBAJ876 and TBAJ587, currently in clinical development, exhibit superior bactericidal against caseum-resident Mtb, both alone and as substitutions for bedaquiline in the bedaquiline-pretomanid-linezolid regimen approved for the treatment of multidrug-resistant TB. In summary, we have developed a physiologically relevant nonreplicating persistence model that reflects the distinct metabolic and drug-tolerant state of Mtb in caseum. American Society for Microbiology 2023-04-05 /pmc/articles/PMC10127596/ /pubmed/37017524 http://dx.doi.org/10.1128/mbio.00598-23 Text en https://doi.org/10.1128/AuthorWarrantyLicense.v1This is a work of the U.S. Government and is not subject to copyright protection in the United States. Foreign copyrights may apply.
spellingShingle Research Article
Sarathy, Jansy P.
Xie, Min
Jones, Richard M.
Chang, Adrienne
Osiecki, Paulina
Weiner, Danielle
Tsao, Wen-Shan
Dougher, Maureen
Blanc, Landry
Fotouhi, Nader
Via, Laura E.
Barry, Clifton E.
De Vlaminck, Iwijn
Sherman, David R.
Dartois, Véronique A.
A Novel Tool to Identify Bactericidal Compounds against Vulnerable Targets in Drug-Tolerant M. tuberculosis found in Caseum
title A Novel Tool to Identify Bactericidal Compounds against Vulnerable Targets in Drug-Tolerant M. tuberculosis found in Caseum
title_full A Novel Tool to Identify Bactericidal Compounds against Vulnerable Targets in Drug-Tolerant M. tuberculosis found in Caseum
title_fullStr A Novel Tool to Identify Bactericidal Compounds against Vulnerable Targets in Drug-Tolerant M. tuberculosis found in Caseum
title_full_unstemmed A Novel Tool to Identify Bactericidal Compounds against Vulnerable Targets in Drug-Tolerant M. tuberculosis found in Caseum
title_short A Novel Tool to Identify Bactericidal Compounds against Vulnerable Targets in Drug-Tolerant M. tuberculosis found in Caseum
title_sort novel tool to identify bactericidal compounds against vulnerable targets in drug-tolerant m. tuberculosis found in caseum
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10127596/
https://www.ncbi.nlm.nih.gov/pubmed/37017524
http://dx.doi.org/10.1128/mbio.00598-23
work_keys_str_mv AT sarathyjansyp anoveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT xiemin anoveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT jonesrichardm anoveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT changadrienne anoveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT osieckipaulina anoveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT weinerdanielle anoveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT tsaowenshan anoveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT doughermaureen anoveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT blanclandry anoveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT fotouhinader anoveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT vialaurae anoveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT barrycliftone anoveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT devlaminckiwijn anoveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT shermandavidr anoveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT dartoisveroniquea anoveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT sarathyjansyp noveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT xiemin noveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT jonesrichardm noveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT changadrienne noveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT osieckipaulina noveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT weinerdanielle noveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT tsaowenshan noveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT doughermaureen noveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT blanclandry noveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT fotouhinader noveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT vialaurae noveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT barrycliftone noveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT devlaminckiwijn noveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT shermandavidr noveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum
AT dartoisveroniquea noveltooltoidentifybactericidalcompoundsagainstvulnerabletargetsindrugtolerantmtuberculosisfoundincaseum