Design, synthesis and antitubercular activity of novel N-(amino)piperazinyl benzothiazinones with improved safety
Wang A, Du N, Song H, Zhang Y, Zhong X, Wu J, Xue T, Liu M, et al. (11 authors)
European journal of medicinal chemistry · 2023-06
Abstract
Tuberculosis (TB), caused by Mycobacterium tuberculosis (MTB) remains a major global health problem and new therapeutic antitubercular agents are urgent needed. Among the novel antituberculosis drugs in the pipeline, Benzothiazinones (BTZs) are among the most potent antituberculosis agents against both drug-susceptible and multidrug-resistant (MDR) tuberculosis. Our group has focused on structural modifications of the side chain at C-2 position of the BTZ core and WAP-2101/2102 with excellent in vitro activity were discovered in our lab. However, the severe in vivo toxicity was observed during subsequent acute toxicity evaluation. Herein, a series of novel N-(amino)piperazinyl benzothiazinone derivatives were designed and synthesized as new anti-TB agents to reduce the in vivo toxicity. Our results show that majority of them exhibit the same potent or comparable activity against both MTB H 37 Rv and MDR-MTB strains (MIC: 4.00 - 50 > 500 mg/kg), suggesting it may serve as a promising lead compound for further antitubercular drug discovery.
MeSH terms
- Animals
- Mice
- Mycobacterium tuberculosis
- Tuberculosis
- Tuberculosis, Multidrug-Resistant
- Antitubercular Agents
- Microbial Sensitivity Tests
- Structure-Activity Relationship
- Drug Design
- Drug Discovery