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System for Efficacy and Cytotoxicity Screening of Inhibitors Targeting Intracellular Mycobacterium tuberculosis
Published on: April 5, 2017
Host Bioenergetic Parameters Reveal Cytotoxicity of Antituberculosis Drugs Undetected Using Conventional Viability
Bridgette M Cumming1, Zainab Baig1, Kelvin W Addicott1
1Africa Health Research Institute, University of KwaZulu-Natal, Durban, KwaZulu-Natal, South Africa.
Abstract:
High attrition rates in tuberculosis (TB) drug development have been largely attributed to safety, which is likely due to the use of endpoint assays measuring cell viability to detect drug cytotoxicity. In drug development for cancer, metabolic, and neurological disorders and for antibiotics, cytotoxicity is increasingly being assessed using extracellular flux (XF) analysis, which measures cellular bioenergetic metabolism in real time. Here, we adopt the XF platform to investigate the cytotoxicity of drugs currently used in TB treatment on the bioenergetic metabolism of HepG2 cells, THP-1 macrophages, and human monocyte-derived macrophages (hMDMs). We found that the XF analysis reveals earlier drug-induced effects on the cells' bioenergetic metabolism prior to cell death, measured by conventional viability assays. Furthermore, each cell type has a distinct response to drug treatment, suggesting that more than one cell type should be considered to examine cytotoxicity in TB drug development. Interestingly, chemically unrelated drugs with different modes of action on Mycobacterium tuberculosis have similar effects on the bioenergetic parameters of the cells, thus discouraging the prediction of potential cytotoxicity based on chemical structure and mode of action of new chemical entities. The clustering of the drug-induced effects on the hMDM bioenergetic parameters are reflected in the clustering of the effects of the drugs on cytokine production in hMDMs, demonstrating concurrence between the effects of the drugs on the metabolism and functioning of the macrophages. These findings can be used as a benchmark to establish XF analysis as a new tool to assay cytotoxicity in TB drug development.
Insights
Extracellular flux (XF) analysis detects early drug toxicity in tuberculosis drug development by measuring cellular metabolism. This method offers a more sensitive approach than traditional viability assays for assessing drug safety.
Area of Science:
- Drug Discovery
- Cellular Metabolism
- Tuberculosis Research
Background:
- High attrition rates in tuberculosis (TB) drug development are linked to safety concerns, often assessed by cell viability assays.
- Conventional assays may not detect early signs of drug-induced cytotoxicity, impacting TB drug development pipelines.
Purpose of the Study:
- To evaluate extracellular flux (XF) analysis for assessing the cytotoxicity of TB drugs.
- To investigate the impact of TB drugs on cellular bioenergetic metabolism in various cell types.
- To establish XF analysis as a novel tool for TB drug safety assessment.
Main Methods:
- Utilized XF analysis to measure real-time bioenergetic metabolism in HepG2 cells, THP-1 macrophages, and human monocyte-derived macrophages (hMDMs).
- Assessed cytotoxicity of existing TB drugs on cellular metabolism.
- Correlated metabolic changes with cytokine production in macrophages.
Main Results:
- XF analysis identified earlier drug-induced metabolic alterations preceding cell death compared to viability assays.
- Distinct cellular responses to TB drugs were observed across different cell types.
- Drug effects on macrophage bioenergetics correlated with their effects on cytokine production.
Conclusions:
- XF analysis provides a more sensitive and earlier detection of drug cytotoxicity in TB drug development.
- Considering multiple cell types is crucial for comprehensive cytotoxicity assessment in TB drug discovery.
- XF analysis shows promise as a benchmark tool for improving TB drug safety evaluations.
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