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Conventional and Microwave-Assisted Synthesis, Antitubercular Activity, and Molecular Docking Studies of Pyrazole and Oxadiazole Hybrids

[Image: see text] Microwave-assisted organic reaction enhancement (MORE) has become more important in synthetic organic chemistry for efficient resource utilization. In this study, we synthesized bioactive compounds using both traditional and microwave methods. Microwave-assisted synthesis takes les...

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Autores principales: Desai, Nisheeth C., Bhatt, Kandarp, Monapara, Jahnvi, Pandit, Unnat, Khedkar, Vijay M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8552481/
https://www.ncbi.nlm.nih.gov/pubmed/34723024
http://dx.doi.org/10.1021/acsomega.1c04411
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author Desai, Nisheeth C.
Bhatt, Kandarp
Monapara, Jahnvi
Pandit, Unnat
Khedkar, Vijay M.
author_facet Desai, Nisheeth C.
Bhatt, Kandarp
Monapara, Jahnvi
Pandit, Unnat
Khedkar, Vijay M.
author_sort Desai, Nisheeth C.
collection PubMed
description [Image: see text] Microwave-assisted organic reaction enhancement (MORE) has become more important in synthetic organic chemistry for efficient resource utilization. In this study, we synthesized bioactive compounds using both traditional and microwave methods. Microwave-assisted synthesis takes less time and produces higher yields and quality than conventional approaches. We reported the synthesis of N′-(1-(2-(3-(4-chlorophenyl)-1-phenyl-1H-pyrazol-4-yl)-5-phenyl-1,3,4-oxadiazol-3(2H)-yl)ethylidene) substituted hydrazides (4a–t). We also tested them against two strains: M. tuberculosis H(37)Ra and M. bovis BCG. Against M. tuberculosis H(37)Ra, the compounds 4e, 4h, 4k, 4p, and 4s were the most effective. Compounds 4f, 4g, and 4s showed significant activity against M. bovis BCG. The structures of newly synthesized molecules were determined using spectral methods. Furthermore, molecular docking investigations into the active site of mycobacterial InhA yielded well-clustered solutions for these compounds’ binding modalities producing a binding affinity in the range of −10.366 to −8.037. Theoretical results were in good accord with the observed experimental values. The docking score of compound 4e was −10.366, and the Glide energy was −66.459 kcal/mol.
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spelling pubmed-85524812021-10-29 Conventional and Microwave-Assisted Synthesis, Antitubercular Activity, and Molecular Docking Studies of Pyrazole and Oxadiazole Hybrids Desai, Nisheeth C. Bhatt, Kandarp Monapara, Jahnvi Pandit, Unnat Khedkar, Vijay M. ACS Omega [Image: see text] Microwave-assisted organic reaction enhancement (MORE) has become more important in synthetic organic chemistry for efficient resource utilization. In this study, we synthesized bioactive compounds using both traditional and microwave methods. Microwave-assisted synthesis takes less time and produces higher yields and quality than conventional approaches. We reported the synthesis of N′-(1-(2-(3-(4-chlorophenyl)-1-phenyl-1H-pyrazol-4-yl)-5-phenyl-1,3,4-oxadiazol-3(2H)-yl)ethylidene) substituted hydrazides (4a–t). We also tested them against two strains: M. tuberculosis H(37)Ra and M. bovis BCG. Against M. tuberculosis H(37)Ra, the compounds 4e, 4h, 4k, 4p, and 4s were the most effective. Compounds 4f, 4g, and 4s showed significant activity against M. bovis BCG. The structures of newly synthesized molecules were determined using spectral methods. Furthermore, molecular docking investigations into the active site of mycobacterial InhA yielded well-clustered solutions for these compounds’ binding modalities producing a binding affinity in the range of −10.366 to −8.037. Theoretical results were in good accord with the observed experimental values. The docking score of compound 4e was −10.366, and the Glide energy was −66.459 kcal/mol. American Chemical Society 2021-10-11 /pmc/articles/PMC8552481/ /pubmed/34723024 http://dx.doi.org/10.1021/acsomega.1c04411 Text en © 2021 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Desai, Nisheeth C.
Bhatt, Kandarp
Monapara, Jahnvi
Pandit, Unnat
Khedkar, Vijay M.
Conventional and Microwave-Assisted Synthesis, Antitubercular Activity, and Molecular Docking Studies of Pyrazole and Oxadiazole Hybrids
title Conventional and Microwave-Assisted Synthesis, Antitubercular Activity, and Molecular Docking Studies of Pyrazole and Oxadiazole Hybrids
title_full Conventional and Microwave-Assisted Synthesis, Antitubercular Activity, and Molecular Docking Studies of Pyrazole and Oxadiazole Hybrids
title_fullStr Conventional and Microwave-Assisted Synthesis, Antitubercular Activity, and Molecular Docking Studies of Pyrazole and Oxadiazole Hybrids
title_full_unstemmed Conventional and Microwave-Assisted Synthesis, Antitubercular Activity, and Molecular Docking Studies of Pyrazole and Oxadiazole Hybrids
title_short Conventional and Microwave-Assisted Synthesis, Antitubercular Activity, and Molecular Docking Studies of Pyrazole and Oxadiazole Hybrids
title_sort conventional and microwave-assisted synthesis, antitubercular activity, and molecular docking studies of pyrazole and oxadiazole hybrids
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8552481/
https://www.ncbi.nlm.nih.gov/pubmed/34723024
http://dx.doi.org/10.1021/acsomega.1c04411
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