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Emerging therapeutic targets in tuberculosis: post-genomic era
Shampa Khasnobis1, Vincent E Escuyer, Delphi Chatterjee
1Department of Microbiology, Colorado State University, Fort Collins, CO 80523, USA.
Abstract:
Every minute, somewhere in the world four people die from tuberculosis (TB), yet it has been nearly 40 years since a novel drug was introduced to treat this disease. The ever increasing number of TB cases together with the advent of multi-drug resistant (MDR) TB, has stimulated the search for novel anti-TB agents. An array of novel drug targets is provided by the mycobacterial cell wall, whose integrity is essential for bacterial viability. Over the years researchers have identified potential drug targets that are associated with the synthesis of various cell wall constituents. This classic approach, together with the unravelling of the Mycobacterium tuberculosis genome sequence, has placed TB drug research in an unprecedented position. An entire new set of genetic and bioinformatic tools for probing potential drug targets is now available. As therapies using first-line drugs like isoniazid (INH) or rifampin in combination with second-line drugs, like ethambutol (EMB) still continues, a number of substituted fluoroquinolones are being considered as the new generation of anti-TB drugs for their favourable pharmacokinetic profile and excellent oral bioavailability. In this review, the future of anti-TB drugs is discussed with reflection on the structure and biosynthesis of cell wall constituents that are potential drug targets. The importance and relevance of the M. tuberculosis genome sequence for the development of novel anti-TB drugs, have also been underscored.
Insights
Tuberculosis (TB) drug development is critical due to rising cases and drug resistance. Novel agents targeting the mycobacterial cell wall, informed by genome sequencing, offer new hope for effective TB treatment.
Area of Science:
- Microbiology
- Pharmacology
- Genomics
Background:
- Tuberculosis (TB) remains a global health crisis with limited new drug options in nearly 40 years.
- The rise of multi-drug resistant (MDR) TB necessitates urgent development of novel anti-TB agents.
- The mycobacterial cell wall presents a rich source of potential drug targets essential for bacterial survival.
Purpose of the Study:
- To review the future of anti-TB drug development.
- To discuss potential drug targets within the mycobacterial cell wall's structure and biosynthesis.
- To highlight the role of the Mycobacterium tuberculosis genome sequence in advancing TB drug research.
Main Methods:
- Review of existing literature on TB drug targets and development.
- Analysis of mycobacterial cell wall components and their biosynthetic pathways.
- Exploration of genetic and bioinformatic tools for target identification.
Main Results:
- The mycobacterial cell wall offers numerous targets for novel anti-TB therapies.
- The M. tuberculosis genome sequence provides a foundation for innovative drug discovery.
- Substituted fluoroquinolones show promise as next-generation anti-TB drugs due to favorable pharmacokinetics.
Conclusions:
- Targeting the mycobacterial cell wall is a viable strategy for developing new TB drugs.
- Genomic insights are crucial for accelerating the discovery of effective anti-TB treatments.
- Continued research into novel drug targets and agents like fluoroquinolones is essential to combat TB.