Efficacy of quabodepistat alone and in combination with delamanid and bedaquiline against Mycobacterium tuberculosis in an NHP model evaluated by [ 18 F] FDG PET/CT and bacterial burden

ABSTRACT Multidrug-resistant tuberculosis (MDR-TB) is challenging. Bedaquiline (B), delamanid (D), and pretomanid (P) are used in combination regimens with other anti-TB drugs for MDR-TB; however, agents with novel mechanisms of action are needed. DprE1 inhibitor quabodepistat (Q) was developed for combination use. In this study, Q alone or in combination with human-equivalent doses of D and/or B was evaluated in a marmoset TB model using in vivo imaging, with terminal bacterial counts from all lung lesions. Marmosets were infected with H37Rv Mycobacterium tuberculosis and allowed to develop the disease for 7 weeks. They were then administered a pre-treatment 18 F-fluorodeoxyglucose positron emission tomography/computed tomography (18F-FDG PET/CT) scan and randomized into seven treatment groups ( n = 5/group). At 2 weeks, the quabodepistat-treated groups showed a significant reduction in lesion volume compared to those without the agent in a post hoc analysis. After 2 months, the animals were euthanized, and the bacterial burden and histology were assessed. Marmosets treated with all agents showed reduced lung disease on PET/CT (>70%) compared to their pre-treatment disease volume. B reduced extrapulmonary bacteria more significantly than Q or D. Cavities and necrotic lesions from DBQ-treated animals had lower bacterial burdens than lesions treated with any of the single-agent or two-agent combinations. In a preliminary comparison, DBQ showed no statistically detectable difference from the standard-of-care regimen isoniazid-rifampicin-pyrazinamide-ethambutol (HRZE). Additionally, the activities of D and P monotherapies were similar in this model. The evaluation of these agents in the marmoset TB model supports further investigation of Q as a component of shorter TB regimens.

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Publication Details

Journal
Antimicrobial Agents and Chemotherapy
Published
2026-09-16
DOI
https://doi.org/10.1128/aac.00280-26
Primary Topic
Tuberculosis Research and Epidemiology
Type
article
Field-Weighted Citation Impact
0.00
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article

Efficacy of quabodepistat alone and in combination with delamanid and bedaquiline against Mycobacterium tuberculosis in an NHP model evaluated by [ 18 F] FDG PET/CT and bacterial burden

Laura E. Via, Clifton E. Barry, T. Greenstein, Matthew Zimmerman et al.
Antimicrobial Agents and Chemotherapy
Tuberculosis Research and Epidemiology
article

Efficacy of quabodepistat alone and in combination with delamanid and bedaquiline against Mycobacterium tuberculosis in an NHP model evaluated by [ 18 F] FDG PET/CT and bacterial burden

Laura E. Via, Clifton E. Barry, T. Greenstein, Matthew Zimmerman, Bree B. Aldridge, V. Dartois, Y. Liu, K. Gausi, J. D. Fleegle, D. Chadalavada, A. Vatthauer, A. M. Walker, F. Kaya, M. J. Woodcock, K. M. Repoli, B. Y. Sloan, H. I. M. Boshoff, M. K. Piazza, F. Gomez, J. Sarathy, A. Abdi, D. M. Weiner, O. Egbelowo
article en

Abstract

ABSTRACT Multidrug-resistant tuberculosis (MDR-TB) is challenging. Bedaquiline (B), delamanid (D), and pretomanid (P) are used in combination regimens with other anti-TB drugs for MDR-TB; however, agents with novel mechanisms of action are needed. DprE1 inhibitor quabodepistat (Q) was developed for combination use. In this study, Q alone or in combination with human-equivalent doses of D and/or B was evaluated in a marmoset TB model using in vivo imaging, with terminal bacterial counts from all lung lesions. Marmosets were infected with H37Rv Mycobacterium tuberculosis and allowed to develop the disease for 7 weeks. They were then administered a pre-treatment 18 F-fluorodeoxyglucose positron emission tomography/computed tomography (18F-FDG PET/CT) scan and randomized into seven treatment groups ( n = 5/group). At 2 weeks, the quabodepistat-treated groups showed a significant reduction in lesion volume compared to those without the agent in a post hoc analysis. After 2 months, the animals were euthanized, and the bacterial burden and histology were assessed. Marmosets treated with all agents showed reduced lung disease on PET/CT (>70%) compared to their pre-treatment disease volume. B reduced extrapulmonary bacteria more significantly than Q or D. Cavities and necrotic lesions from DBQ-treated animals had lower bacterial burdens than lesions treated with any of the single-agent or two-agent combinations. In a preliminary comparison, DBQ showed no statistically detectable difference from the standard-of-care regimen isoniazid-rifampicin-pyrazinamide-ethambutol (HRZE). Additionally, the activities of D and P monotherapies were similar in this model. The evaluation of these agents in the marmoset TB model supports further investigation of Q as a component of shorter TB regimens.

Antimicrobial Agents and Chemotherapy
Tufts University (US), University of Cape Town (ZA), National Institute of Allergy and Infectious Diseases (US), Wellcome Centre for Infectious Diseases Research in Africa (ZA), Otsuka Pharmaceutical (Spain) (ES), Office of Extramural Research (US), Hackensack Meridian Health (US), Center for Discovery (US)
Good health and well-being
Openalex Percentile: Top 11%
Tuberculosis Research and Epidemiology
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