Affiliation:
1. Department of Chemistry, School of Science Gitam deemed to be University Hyderabad campus Rudraram Hyderabad-502329 Telangana India
2. Department of Chemistry Institute of Aeronautical Engineering Dundigal, Hyderabad Telangana-500043 India
3. Department of Chemistry GITAM Institute of Science GITAM (Deemed to be University) Gandhi Nagar, Rushikonda, Visakhapatnam, Andhra Pradesh 530045 India
4. Centre for Chemical Sciences and Technology University College of Engineering, Science and Technology Hyderabad Jawaharlal Nehru Technological University Hyderabad Hyderabad Telangana-500085 India
5. A1Biochem Labs (India) Pvt LTD Pragathi Nagar, Kukatpally Hyderabad-500072 Telangana India
6. Department of Chemistry Geethanjali College of Engineering and Technology (Autonomous) Cheeryal Medchal-501301 Telangana India.
Abstract
AbstractA very interesting foundation for this study is the creation of new methods for modifying compounds with a 1,2,3‐triazole and chalcone scaffolds, as these compounds are significant in organic synthesis, particularly in the synthesis of bioactive organic compounds. To contribute to the development of an efficient method for the conversion of antimicrobial and antituberculosis heterocyclics, a novel series of cyclohepta pyridinone fused 1,2,3‐triazolyl chalcones were designed and synthesized. All the newly prepared scaffolds were characterized by FT‐IR, NMR (1H & 13C) and mass spectrometry. Among the tested compounds, hybrids 8b, 8d, and 8f exhibited exceptional antibacterial susceptibilities with zone of inhibition 27.84±0.04, 32.27±0.02, and 38.26±0.01 mm against the tested E. faecalis bacteria, whereas 8d had better antitubercular potency against M. tuberculosis H37Rv strain with MIC value 5.25 μg/mL, compared to Streptomycin [MIC=5.01 μg/mL]. All the synthesized compounds were initially assessed in silico against the targeted protein i. e., DprE1 that indicated compound 8d, 8f and 8h along with several other 1,2,3‐triazole compounds as possible inhibitors. Based on docking results, 8d showed that the amino acids His74(A), Lys76(A), Cys332(A), Asp331(A), Val307(A), Tyr357(A), Met226(A), Gln276(A), Gly75(A), Peo58(A), Leu259(A), and Lys309(A) exhibited highly stable binding to DprE1 receptor of Mycobacterium tuberculosis (PDB: 4G3 U). Moreover, these scaffolds physicochemical characteristics, filtration molecular properties, assessment of toxicity, and bioactivity scores were assessed in relation to ADME (absorption, distribution, metabolism, and excretion).
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