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System for Efficacy and Cytotoxicity Screening of Inhibitors Targeting Intracellular Mycobacterium tuberculosis
Published on: April 5, 2017
Activity of trifluoperazine against replicating, non-replicating and drug resistant M. tuberculosis
Meeta J Advani1, Imran Siddiqui, Pawan Sharma
1Department of Biochemistry, Sri Venkateswara College, University of Delhi South Campus, New Delhi, India.
Abstract:
Trifluoperazine, a known calmodulin antagonist, belongs to a class of phenothiazine compounds that have multiple sites of action in mycobacteria including lipid synthesis, DNA processes, protein synthesis and respiration. The objective of this study is to evaluate the potential of TFP to be used as a lead molecule for development of novel TB drugs by showing its efficacy on multiple drug resistant (MDR) Mycobacterium tuberculosis (M.tb) and non-replicating dormant M.tb. Wild type and MDR M.tb were treated with TFP under different growth conditions of stress like low pH, starvation, presence of nitric oxide and in THP-1 infection model. Perturbation in growth kinetics of bacilli at different concentrations of TFP was checked to determine the MIC of TFP for active as well as dormant bacilli. Results show that TFP is able to significantly reduce the actively replicating as well as non-replicating bacillary load. It has also shown inhibitory effect on the growth of MDR M.tb. TFP has shown enhanced activity against intracellular bacilli, presumably because phenothiazines are known to get accumulated in macrophages. This concentration was, otherwise, found to be non-toxic to macrophage in vitro. Our results show that TFP has the potential to be an effective killer of both actively growing and non-replicating bacilli including MDR TB. Further evaluation and in vivo studies with Trifluoperazine can finally help us know the feasibility of this compound to be used as either a lead compound for development of new TB drugs or as an adjunct in the current TB chemotherapy.
Insights
Trifluoperazine (TFP) shows promise as a novel drug candidate against tuberculosis (TB). This compound effectively reduces both active and dormant Mycobacterium tuberculosis (M.tb) loads, including multi-drug resistant strains.
Area of Science:
- Microbiology
- Pharmacology
- Infectious Diseases
Background:
- Trifluoperazine (TFP) is a phenothiazine compound with known calmodulin antagonist properties.
- Phenothiazines exhibit multiple mechanisms of action against mycobacteria, affecting lipid synthesis, DNA processes, protein synthesis, and respiration.
Purpose of the Study:
- To evaluate Trifluoperazine (TFP) as a potential lead molecule for novel tuberculosis (TB) drug development.
- To assess the efficacy of TFP against multi-drug resistant (MDR) Mycobacterium tuberculosis (M.tb) and dormant M.tb.
Main Methods:
- Wild type and MDR M.tb strains were treated with TFP under various stress conditions (low pH, starvation, nitric oxide) and in a THP-1 infection model.
- Growth kinetics were analyzed to determine the minimum inhibitory concentration (MIC) of TFP for both active and dormant bacilli.
- In vitro macrophage toxicity was assessed.
Main Results:
- TFP significantly reduced both actively replicating and non-replicating M.tb bacillary loads.
- TFP demonstrated inhibitory effects on the growth of MDR M.tb.
- Enhanced activity was observed against intracellular bacilli, with no observed toxicity to macrophages at effective concentrations.
Conclusions:
- Trifluoperazine (TFP) exhibits potential as an effective agent against both actively growing and dormant M.tb, including MDR strains.
- TFP could serve as a lead compound for new TB drugs or as an adjunct therapy.
- Further in vivo studies are warranted to determine the feasibility of TFP in TB chemotherapy.
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