We have developed a modular high-throughput screening system for discovering novel compounds against Mycobacterium tuberculosis, targeting intracellular and in-broth growing bacteria as well as cytotoxicity against the mammalian host cell.
A subscription to JoVE is required to view this content. Sign in or start your free trial.
Method Article
We have developed a modular high-throughput screening system for discovering novel compounds against Mycobacterium tuberculosis, targeting intracellular and in-broth growing bacteria as well as cytotoxicity against the mammalian host cell.
Mycobacterium tuberculosis, the causative agent of tuberculosis (TB), is a leading cause of morbidity and mortality worldwide. With the increased spread of multi drug-resistant TB (MDR-TB), there is a real urgency to develop new therapeutic strategies against M. tuberculosis infections. Traditionally, compounds are evaluated based on their antibacterial activity under in vitro growth conditions in broth; however, results are often misleading for intracellular pathogens like M. tuberculosis since in-broth phenotypic screening conditions are significantly different from the actual disease conditions within the human body. Screening for inhibitors that work inside macrophages has been traditionally difficult due to the complexity, variability in infection, and slow replication rate of M. tuberculosis. In this study, we report a new approach to rapidly assess the effectiveness of compounds on the viability of M. tuberculosis in a macrophage infection model. Using a combination of a cytotoxicity assay and an in-broth M. tuberculosis viability assay, we were able to create a screening system that generates a comprehensive analysis of compounds of interest. This system is capable of producing quantitative data at a low cost that is within reach of most labs and yet is highly scalable to fit large industrial settings.
Mycobacterium tuberculosis, the causative agent of tuberculosis (TB), is a leading cause of morbidity and mortality worldwide. Drug-sensitive TB is a treatable disease that requires multiple antibiotics for a period of 6 months. Despite being a treatable disease, TB mortality was estimated to be 1.5 million in 20151. In the past 10 years, there have been increasing concerns over the prevalence of drug-resistant M. tuberculosis. Multidrug-resistant TB (MDR-TB) is defined as TB that is resistant to at least Isoniazid (INH) and Rifampicin (RMP), and most MDR-TB strains are also resistant to select second-line TB drugs, thus limit....
Access restricted. Please log in or start a trial to view this content.
1. Bacterial Strain and Growth Medium
Access restricted. Please log in or start a trial to view this content.
High-throughput intracellular screening using M. tuberculosis expressing the luciferase gene
Figure 2A and Table 1 contain the raw data collected by the luminometer, expressed in relative luminescent units (RLU), showing the effect of an increasing concentration of the TB drug rifampicin on M. tuberculosis inside THP-1 cells. Figure 2A is a scatter plot of the raw.......
Access restricted. Please log in or start a trial to view this content.
The goal of this study was to create a simple and cost-effective HTS method using a human intracellular infection model for M. tuberculosis. Tuberculosis is a human disease characterized by the infection of alveolar macrophages by M. tuberculosis. Due to biosafety issues, research involving biological models of both the bacterium and the host cells has been used in the past. However, it has been shown that the usage of surrogate bacteria and non-human models are poor predictors of hit-to-lead success in.......
Access restricted. Please log in or start a trial to view this content.
The authors declare no competing financial interests for this work.
This work was supported by BC Lung Association and Mitacs.
....Access restricted. Please log in or start a trial to view this content.
| Name | Company | Catalog Number | Comments |
|---|---|---|---|
| RPMI 1640 | Sigma-Aldrich | R5886 | |
| L-glutamine | Sigma-Aldrich | G7513 | |
| Fetal bovine serum (FBS) | Thermo Fisher Scientific | 12483020 | |
| Middlebrook 7H9 | Becton, Dickinson and Company | 271210 | |
| Tween80 | Fisher Scientific | T164 | |
| Albumin, Bovine pH7 | Affymetrix | 10857 | |
| Dextrose | Fisher Scientific | BP350 | |
| Sodium Chloride | Fisher Scientific | BP358 | |
| kanamycin sulfate | Fisher Scientific | BP906 | |
| PMA | Sigma-Aldrich | P8139 | |
| MTT | Sigma-Aldrich | M2128 | |
| N,N-Dimethylformamide (DMF) | Fisher Scientific | D131 | |
| 1 M Hydrocholoric acid (HCl) | Fisher Scientific | 351279212 | |
| Acetic acid | Fisher Scientific | 351269 | |
| SDS | Fisher Scientific | BP166 | |
| Resazurin | Alfa Aesar | B21187 | |
| DMSO | Sigma-Aldrich | D5879 | |
| Glycerol | Fisher Scientific | BP229 | |
| THP-1 | American Type Culture Collection | TIB-202 | |
| M. tuberculosis H37Rv | |||
| 96-well flat bottom white plate | Corning | 3917 | |
| 95-well flat bottom clear plate | Corning | 3595 | |
| Transparent plate sealer | Thermo Fisher Scientific | AB-0580 | |
| Spectrophotometer | Thermo Fisher Scientific | Biomate 3 | |
| Microplate spectrophotometer | Biotek | Epoch | |
| luminometer | Applied Biosystems | Tropix TR717 |
Access restricted. Please log in or start a trial to view this content.