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Evaluating New Compounds to Treat Burkholderia pseudomallei Infections
Brittany N Ross1, Julia N Myers1, Laura A Muruato2
1Department of Microbiology and Immunology, University of Texas Medical Branch, Galveston, TX, United States.
Abstract:
Burkholderia pseudomallei is the causative agent of melioidosis, a disease that requires long-term treatment regimens with no assurance of bacterial clearance. Clinical isolates are intrinsically resistant to most antibiotics and in recent years, isolates have been collected that display resistance to frontline drugs. With the expanding global burden of B. pseudomallei, there is a need to identify new compounds or improve current treatments to reduce risk of relapse. Using the Pathogen Box generated by Medicines for Malaria Venture, we screened a library of 400 compounds for bacteriostatic or bactericidal activity against B. pseudomallei K96243 and identified seven compounds that exhibited inhibitory effects. New compounds found to have function against B. pseudomallei were auranofin, rifampicin, miltefosine, MMV688179, and MMV688271. An additional two compounds currently used to treat melioidosis, doxycycline and levofloxacin, were also identified in the screen. We determined that the minimal inhibitory concentrations (MIC) for levofloxacin, doxycycline, and MMV688271 were below 12 μg/ml for 5 strains of B. pseudomallei. To assess persister frequency, bacteria were exposed to 100x MIC of each compound. Auranofin, MMV688179, and MMV688271 reduced the bacterial population to an average of 4.53 × 10-6% compared to ceftazidime, which corresponds to 25.1% survival. Overall, our data demonstrates that auranofin, MMV688197, and MMV688271 have the potential to become repurposed drugs for treating melioidosis infections and the first evidence that alternative therapeutics can reduce B. pseudomallei persistence.
Insights
Researchers screened 400 compounds against Burkholderia pseudomallei, identifying auranofin, MMV688179, and MMV688271 as potential new treatments for melioidosis, reducing bacterial persistence.
Area of Science:
- Microbiology
- Infectious Diseases
- Drug Discovery
Background:
- Melioidosis, caused by Burkholderia pseudomallei, requires prolonged treatment with limited success due to intrinsic antibiotic resistance.
- Increasing global melioidosis cases necessitate novel therapeutic strategies to prevent relapses.
Purpose of the Study:
- To identify novel compounds with activity against Burkholderia pseudomallei.
- To evaluate the potential of existing and new compounds for treating melioidosis and reducing bacterial persistence.
Main Methods:
- Screening of 400 compounds from the Pathogen Box for bacteriostatic or bactericidal activity against B. pseudomallei.
- Determination of minimal inhibitory concentrations (MIC) for identified compounds.
- Assessment of persister frequency reduction upon exposure to 100x MIC of selected compounds.
Main Results:
- Seven compounds, including auranofin, rifampicin, miltefosine, MMV688179, MMV688271, doxycycline, and levofloxacin, showed inhibitory effects.
- Levofloxacin, doxycycline, and MMV688271 exhibited MICs below 12 μg/ml across five B. pseudomallei strains.
- Auranofin, MMV688179, and MMV688271 significantly reduced bacterial populations, demonstrating potent anti-persistence activity.
Conclusions:
- Auranofin, MMV688179, and MMV688271 show promise as repurposed drugs for melioidosis treatment.
- These compounds offer a potential strategy to reduce Burkholderia pseudomallei persistence, addressing a key challenge in melioidosis therapy.
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