Multicomponent synthesis, biological evaluation and molecular docking of new spiro-oxindole derivatives
A new series of spiro-oxindoles that were identified based upon their ability to inhibit methionine tRNA synthase (PDB ID: 1PFV) and glucosamine-6-phosphate synthase (PDB ID: 1JXA) enzymes in virtual screening was synthesized by a three-component 1,3-dipolar cycloaddition method. The reaction procee...
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doaj-82e23c9f723e4c4384cd9cbfed31e3362020-11-24T23:18:13ZengTaylor & Francis GroupJournal of Taibah University for Science1658-36552017-11-0111610081018Multicomponent synthesis, biological evaluation and molecular docking of new spiro-oxindole derivativesM. Sapnakumari0B. Narayana1K.S. Shashidhara2B.K. Sarojini3Department of Studies in Chemistry, Mangalore University, Mangalagangotri, Mangalore 574 199, Karnataka, IndiaDepartment of Studies in Chemistry, Mangalore University, Mangalagangotri, Mangalore 574 199, Karnataka, India; Corresponding author. Fax: +91 824 2287367.Department of Genetics and Plant Breedings, Agricultural College, Hassan, University of Agricultural Sciences, 573 225 Bangalore, Karnataka, IndiaDepartment of Industrial Chemistry, Mangalore University, Mangalagangotri, 574 199 Karnataka, IndiaA new series of spiro-oxindoles that were identified based upon their ability to inhibit methionine tRNA synthase (PDB ID: 1PFV) and glucosamine-6-phosphate synthase (PDB ID: 1JXA) enzymes in virtual screening was synthesized by a three-component 1,3-dipolar cycloaddition method. The reaction proceeds through the formation of azomethine ylides generated in situ by the decarboxylative condensation of isatin and amino acids with dipolarophile chalcones. These compounds are active against Staphylococcus aureus, Escherichia coli, Aspergillus niger and Aspergillus flavus, supporting the in silico screening. In addition, their antitubercular activity was assessed using the MABA method. The compounds 3â²-[(4-fluorophenyl)carbonyl]-4â²-phenylspiro[indole-3,2â²-pyrrolidin]-2(1H)-one 3a, 4â²-(4-bromophenyl)-3â²-[(4-fluorophenyl)carbonyl]-5â²-(hydroxymethyl) spiro[indole-3,2â²-pyrrolidin]-2(1H)-one 3e and 4â²-(4-chlorophenyl)-3â²-[(4-fluorophenyl)carbonyl]-5â²-(2-methylpropyl)spiro[indole-3,2â²-pyrrolidin]-2(1H)-one 3g are potent molecules with MIC of 0.8 μg/mL. In the DPPH radical scavenging assay, compounds 4â²-(4-chlorophenyl)-3â²-[(4-fluorophenyl)carbonyl]spiro[indole-3,2â²-pyrrolidin]-2(1H)-one 3b, 4â²-(4-chlorophenyl)-3â²-[(4-fluorophenyl)carbonyl]-5â²-(hydroxymethyl)spiro[indole-3,2â²-pyrrolidin]-2(1H)-one 3d and 4â²-(4-bromophenyl)-3â²-[(4-fluorophenyl)carbonyl]-5â²-(hydroxymethyl)spiro[indole-3,2â²-pyrrolidin]-2(1H)-one 3e exhibited significant radical scavenging capacity. Keywords: Chalcone, Spiro-oxindole, Azomethine ylide, Antimicrobial activity, Molecular dockinghttp://www.sciencedirect.com/science/article/pii/S1658365517300675 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
M. Sapnakumari B. Narayana K.S. Shashidhara B.K. Sarojini |
spellingShingle |
M. Sapnakumari B. Narayana K.S. Shashidhara B.K. Sarojini Multicomponent synthesis, biological evaluation and molecular docking of new spiro-oxindole derivatives Journal of Taibah University for Science |
author_facet |
M. Sapnakumari B. Narayana K.S. Shashidhara B.K. Sarojini |
author_sort |
M. Sapnakumari |
title |
Multicomponent synthesis, biological evaluation and molecular docking of new spiro-oxindole derivatives |
title_short |
Multicomponent synthesis, biological evaluation and molecular docking of new spiro-oxindole derivatives |
title_full |
Multicomponent synthesis, biological evaluation and molecular docking of new spiro-oxindole derivatives |
title_fullStr |
Multicomponent synthesis, biological evaluation and molecular docking of new spiro-oxindole derivatives |
title_full_unstemmed |
Multicomponent synthesis, biological evaluation and molecular docking of new spiro-oxindole derivatives |
title_sort |
multicomponent synthesis, biological evaluation and molecular docking of new spiro-oxindole derivatives |
publisher |
Taylor & Francis Group |
series |
Journal of Taibah University for Science |
issn |
1658-3655 |
publishDate |
2017-11-01 |
description |
A new series of spiro-oxindoles that were identified based upon their ability to inhibit methionine tRNA synthase (PDB ID: 1PFV) and glucosamine-6-phosphate synthase (PDB ID: 1JXA) enzymes in virtual screening was synthesized by a three-component 1,3-dipolar cycloaddition method. The reaction proceeds through the formation of azomethine ylides generated in situ by the decarboxylative condensation of isatin and amino acids with dipolarophile chalcones. These compounds are active against Staphylococcus aureus, Escherichia coli, Aspergillus niger and Aspergillus flavus, supporting the in silico screening. In addition, their antitubercular activity was assessed using the MABA method. The compounds 3â²-[(4-fluorophenyl)carbonyl]-4â²-phenylspiro[indole-3,2â²-pyrrolidin]-2(1H)-one 3a, 4â²-(4-bromophenyl)-3â²-[(4-fluorophenyl)carbonyl]-5â²-(hydroxymethyl) spiro[indole-3,2â²-pyrrolidin]-2(1H)-one 3e and 4â²-(4-chlorophenyl)-3â²-[(4-fluorophenyl)carbonyl]-5â²-(2-methylpropyl)spiro[indole-3,2â²-pyrrolidin]-2(1H)-one 3g are potent molecules with MIC of 0.8 μg/mL. In the DPPH radical scavenging assay, compounds 4â²-(4-chlorophenyl)-3â²-[(4-fluorophenyl)carbonyl]spiro[indole-3,2â²-pyrrolidin]-2(1H)-one 3b, 4â²-(4-chlorophenyl)-3â²-[(4-fluorophenyl)carbonyl]-5â²-(hydroxymethyl)spiro[indole-3,2â²-pyrrolidin]-2(1H)-one 3d and 4â²-(4-bromophenyl)-3â²-[(4-fluorophenyl)carbonyl]-5â²-(hydroxymethyl)spiro[indole-3,2â²-pyrrolidin]-2(1H)-one 3e exhibited significant radical scavenging capacity. Keywords: Chalcone, Spiro-oxindole, Azomethine ylide, Antimicrobial activity, Molecular docking |
url |
http://www.sciencedirect.com/science/article/pii/S1658365517300675 |
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