Related Experiment Video
Updated: Jun 1, 2026

Orthotopic Implantation and Peripheral Immune Cell Monitoring in the II-45 Syngeneic Rat Mesothelioma Model
Published on: October 2, 2015
T cell monitoring of chemotherapy in experimental rat tuberculosis
Damian Guang Foo1, Hui Chien Tay, Jie Yee Siew
1Novartis Institute for Tropical Diseases, Singapore, Singapore.
Abstract:
Mycobacterium tuberculosis is the causative agent of a pulmonary epidemic that is estimated to infect one-third of the world's population and that has an increased incidence of multidrug resistance. The evaluation of new chemical entities against M. tuberculosis is hampered by the lack of biological tools to help predict efficacy, from early drug development to clinical trials. As the rat is the animal species of choice in the pharmaceutical industry, we have developed a rat model of acute and chronic phases of M. tuberculosis infection for drug efficacy testing. In this model, we have evaluated the impact of tuberculosis drugs on T cell response using the enzyme-linked immunospot assay methodology. Infected rats treated with isoniazid (INH) or rifampin (RIF) responded to therapy, the potency of which was comparable to that seen in the mouse. Peripheral blood mononuclear cells from infected rats produced gamma interferon (IFN-γ) in response to RD-1 antigens, such as the 6-kDa early secretory antigen target (ESAT-6) and the 10-kDa culture filtrate protein (CFP-10). A decrease in IFN-γ spot-forming cells (SFCs) was consistently observed in response to drug treatment. In both the acute- and chronic-phase models, the T cell response was more sensitive to ESAT-6 than to CFP-10. The SFC count in response to ESAT-6 appears to be an indicator of bacterial killing in the rat. Collectively, our data suggest that the ESAT-6 response could be used as a potential surrogate of drug efficacy in the rat and that such a readout could help shorten drug testing during preclinical development.
Insights
A new rat model for tuberculosis drug testing shows that measuring T cell response to ESAT-6 antigen can predict treatment efficacy. This tool aids early drug development for Mycobacterium tuberculosis infections.
Area of Science:
- Tuberculosis research
- Infectious disease modeling
- Immunology
Background:
- Mycobacterium tuberculosis causes a global epidemic with increasing drug resistance.
- Predicting drug efficacy in early development requires better biological tools.
- Rats are a preferred animal model in the pharmaceutical industry.
Purpose of the Study:
- To develop and validate a rat model for Mycobacterium tuberculosis drug efficacy testing.
- To assess T cell responses as a surrogate marker for drug effectiveness.
- To evaluate the utility of specific antigens (ESAT-6, CFP-10) in monitoring treatment response.
Main Methods:
- Development of acute and chronic Mycobacterium tuberculosis infection models in rats.
- Administration of tuberculosis drugs (isoniazid, rifampin) to infected rats.
- Measurement of T cell response using enzyme-linked immunospot (ELISpot) assay, quantifying gamma interferon (IFN-γ) spot-forming cells (SFCs).
Main Results:
- Treated rats showed a decrease in IFN-γ SFCs, indicating therapeutic response.
- The T cell response to ESAT-6 was more sensitive than to CFP-10 in both acute and chronic models.
- ESAT-6 specific T cell response correlated with bacterial killing, suggesting its potential as a predictive marker.
Conclusions:
- The developed rat model effectively evaluates tuberculosis drug efficacy.
- ESAT-6 specific IFN-γ response can serve as a surrogate marker for drug efficacy in rats.
- This surrogate marker may accelerate preclinical drug testing for tuberculosis treatments.

