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System for Efficacy and Cytotoxicity Screening of Inhibitors Targeting Intracellular Mycobacterium tuberculosis
Published on: April 5, 2017
Assessment of tuberculosis drug efficacy using preclinical animal models and in vitro predictive techniques
Hazem F M Abdelaal1, Bryan J Berube1,2, Brendan K Podell3
1Seattle Children's Research Institute, Center for Global Infectious Disease Research, Seattle, WA, 98145, USA.
Abstract:
Tuberculosis (TB) killed approximately 1.3 million people in 2022 and remains a leading cause of death from the bacteria Mycobacterium tuberculosis (M.tb); this number of deaths was surpassed only by COVID-19, caused by the SARS-CoV-2 virus. The alarming emergence of multidrug-resistant (MDR) and extensively drug-resistant (XDR) M.tb strains presents an urgent need for effective new treatments. Our study aimed to determine the synergistic effects of antibiotic combinations against M.tb. Using a high-throughput in vitro checkerboard assay, we evaluated the interactions of Bedaquiline (BDQ) and other antibiotics including Capreomycin (CAP), Linezolid (LIN), and Sutezolid (SUT) against M.tb H37Rv. BDQ and CAP demonstrated in vitro enhanced effect, which prompted further investigation in vivo using the murine low dose aerosol (LDA) model. After aerosol challenge with M.tb, C57BL/6 mice were treated with BDQ, CAP, or their combination, starting 28 days post-infection. The antimicrobial treatment lasted four weeks, and the bacterial burden in lung and spleen tissues was assessed at the end of treatment. At 4 weeks post-treatment, a significant reduction in bacterial load was observed within the lungs and spleens of mice given BDQ alone or given as a BDQ/CAP combination compared to the untreated group. In contrast, CAP monotherapy led to an increase in bacterial load within the lung and no significant difference in bacterial burden in the spleen in comparison to the untreated mice. These results were confirmed in the guinea pig model of TB, where both BDQ and the BDQ/CAP combination treatment led to a decrease in bacterial burden in the lung and spleen, whereas CAP had no significant effect on bacterial burden at the 4-week post treatment timepoint. We next determined whether there may be differences in vitro with the BDQ/CAP combination against M.tb lineages 1, 2 and 4. We determined that in vitro enhanced effect was not observed in some representative strains of M.tb lineage 4, indicating variability in drug effectiveness across M.tb lineages. This research underscores the complexity of TB treatment and the critical need for innovative approaches to combat this global health threat.
Insights
The combination of Bedaquiline (BDQ) and Capreomycin (CAP) showed synergistic effects against tuberculosis (TB) in mouse and guinea pig models. While BDQ alone was effective, CAP monotherapy was not, highlighting the need for novel TB treatment strategies.
Area of Science:
- Microbiology
- Infectious Diseases
- Pharmacology
Background:
- Tuberculosis (TB) remains a significant global health threat, causing millions of deaths annually.
- The rise of multidrug-resistant (MDR) and extensively drug-resistant (XDR) strains necessitates the development of novel therapeutic strategies.
- Bedaquiline (BDQ) is a key drug in current TB treatment regimens.
Purpose of the Study:
- To investigate the synergistic effects of antibiotic combinations, specifically Bedaquiline (BDQ) with Capreomycin (CAP), Linezolid (LIN), and Sutezolid (SUT), against Mycobacterium tuberculosis (M.tb).
- To evaluate the efficacy of BDQ and CAP combination therapy in vivo using established animal models of TB.
Main Methods:
- A high-throughput in vitro checkerboard assay was employed to assess drug interactions against M.tb H37Rv.
- In vivo efficacy was tested in C57BL/6 mice and guinea pigs infected with M.tb, using low dose aerosol models.
- Treatment groups included BDQ alone, CAP alone, and a combination of BDQ and CAP, with bacterial burden assessed in lung and spleen tissues.
Main Results:
- In vitro studies indicated synergistic effects between BDQ and CAP against M.tb H37Rv.
- In vivo studies demonstrated that BDQ alone and the BDQ/CAP combination significantly reduced bacterial load in mice and guinea pigs.
- CAP monotherapy showed no significant reduction in bacterial burden in either animal model, and in some cases, increased lung bacterial load in mice.
- Variability in in vitro efficacy was observed across different M.tb lineages, particularly with the BDQ/CAP combination against lineage 4.
Conclusions:
- The combination of Bedaquiline and Capreomycin exhibits synergistic antimicrobial activity against tuberculosis.
- BDQ demonstrates significant efficacy in reducing M.tb burden in vivo, both as monotherapy and in combination with CAP.
- CAP monotherapy is not effective for TB treatment and may even be detrimental; its role in combination therapy requires further investigation.
- Drug effectiveness can vary across different M.tb lineages, emphasizing the need for tailored treatment approaches.
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