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System for Efficacy and Cytotoxicity Screening of Inhibitors Targeting Intracellular Mycobacterium tuberculosis
Published on: April 5, 2017
Modulating mycobacterial envelope integrity for antibiotic synergy with benzothiazoles
Eva Habjan1, Alexander Lepioshkin2, Vicky Charitou1
1Department of Medical Microbiology and Infection Prevention, Amsterdam UMC, Location VU Medical Center, Amsterdam, Netherlands.
New benzothiazole compounds enhance the permeability of the tuberculosis bacterium
Area of Science:
- Microbiology
- Medicinal Chemistry
- Drug Discovery
Background:
- Mycobacteria possess an impermeable cell envelope, contributing to intrinsic antibiotic resistance.
- Developing new tuberculosis drugs is challenging due to this resistance mechanism.
Purpose of the Study:
- To develop novel benzothiazole compounds that increase mycobacterial cell envelope permeability.
- To identify new therapeutic strategies against Mycobacterium tuberculosis by targeting cell envelope defenses.
Main Methods:
- Screening of benzothiazole compounds for their ability to enhance membrane permeability (ethidium bromide uptake).
- Testing compound efficacy in Mycobacterium marinum-zebrafish embryo and Mycobacterium tuberculosis-infected macrophage models.
- Investigating drug synergy with existing antibiotics like vancomycin and rifampicin.
- Identifying the molecular target of lead compounds through resistance mutant analysis.
Main Results:
- The initial compound BT-08 enhanced membrane permeability and showed efficacy in infection models.
- BT-08 demonstrated synergistic effects with vancomycin and rifampicin.
- Optimized compound BT-37 exhibited improved potency and non-toxicity, maintaining synergy with rifampicin.
- MMAR_0407 (Rv0164) was identified as the molecular target of BT-37, crucial for its activity and synergy.
Conclusions:
- Novel benzothiazole derivatives (BT-08, BT-37) effectively increase mycobacterial cell envelope permeability.
- These compounds exhibit synergistic activity with existing antibiotics, offering a potential strategy to overcome drug resistance.
- Identification of MMAR_0407 as a novel drug target provides new avenues for tuberculosis treatment development.
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