Development of novel isatin-nicotinohydrazide hybrids with potent activity against susceptible/resistant <i>Mycobacterium tuberculosis</i> and bronchitis causing-bacteria
Elsayed ZM, Eldehna WM, Abdel-Aziz MM, El Hassab MA, Elkaeed EB, Al-Warhi T, Abdel-Aziz HA, Abou-Seri SM, et al. (9 authors)
Journal of enzyme inhibition and medicinal chemistry · 2021-12
Abstract
Joining the global fight against Tuberculosis, the world's most deadly infectious disease, herein we present the design and synthesis of novel isatin-nicotinohydrazide hybrids ( 5a-m and 9a-c ) as promising anti-tubercular and antibacterial agents. The anti-tubercular activity of the target hybrids was evaluated against drug-susceptible M. tuberculosis strain (ATCC 27294) where hybrids 5d , 5g and 5h were found to be as potent as INH with MIC = 0.24 µg/mL, also the activity was evaluated against Isoniazid/Streptomycin resistant M. tuberculosis (ATCC 35823) where compounds 5g and 5h showed excellent activity (MIC = 3.9 µg/mL). Moreover, the target hybrids were examined against six bronchitis causing-bacteria. Most derivatives exhibited excellent antibacterial activity. K. pneumonia emerged as the most sensitive strain with MIC range: 0.49-7.81 µg/mL. Furthermore, a molecular docking study has proposed DprE1 as a probable enzymatic target for herein reported isatin-nicotinohydrazide hybrids, and explored the binding interactions within the vicinity of DprE1 active site.
MeSH terms
- Bordetella pertussis
- Klebsiella pneumoniae
- Haemophilus influenzae
- Mycobacterium tuberculosis
- Streptococcus pneumoniae
- Tuberculosis
- Bronchitis
- Hydrazines
- Isoniazid
- Isatin
- Alcohol Oxidoreductases
- Streptomycin
- Bacterial Proteins
- Anti-Bacterial Agents
- Microbial Sensitivity Tests
- Drug Resistance, Bacterial
- Binding Sites
- Protein Conformation
- Protein Binding
- Structure-Activity Relationship
- Drug Design
- Protein Interaction Domains and Motifs
- Molecular Docking Simulation
- Moraxella catarrhalis