Synthesis of water-soluble novel bioactive pyridine-based azo coumarin derivative and competitive cytotoxicity, DNA binding, BSA binding study, and in silico analysis with coumarin.

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dc.contributor.author Karan, Putul
dc.contributor.author Khatun, Amina
dc.contributor.author Pal, Jagannath
dc.contributor.author Chakarabarti, Sudipta
dc.contributor.author Ghosh, Avishek
dc.date.accessioned 2023-05-11T09:45:48Z
dc.date.available 2023-05-11T09:45:48Z
dc.date.issued 2023-04
dc.identifier.issn 0045-2068
dc.identifier.uri https://mcc-idr.l2c2academy.co.in/xmlui/handle/123456789/585
dc.description Journal Articles en_US
dc.description.abstract The diazo coupliling reaction of 3- amino pyridine with coumarin in water medium produces water soluble 6-[3- pyridyl]azocoumarin. The synthesised compound has been fully charecterised by IR, NMR, and Mass spectroscopy. The frontier molecular orbital calculations reveal that 6-[3-pyridyl]azocoumarin is more biologically and chemically active in comparison to coumarin. The cytotoxicity evaluation confirms that 6-[3-pyridyl]azocoumarin is more active than coumarin against human brain glioblastoma cell lines, LN-229 with IC50 value 9.09 μM (IC50 value for coumarin is 9.9 μM). The compound (I) has been synthesized by coupling of diazotized solution of 3-aminopyridine with coumarin in an aqueous medium at ~ pH 10. The structure of the compound (I) has been characterized using UV–vis, IR, NMR, and Mass spectral studies. Frontier molecular orbital calculations reveal that 6-[3-pyridyl]azocoumarin (I) is more active chemically and biologically in comparison to coumarin. IC50 value 9.09 and 9.9 μM of 6-[3-pyridyl]azocoumarin and coumarin respectively obtained in cytotoxicity evaluation confirms the enhanced activity of the synthesized compound against human brain glioblastoma cell lines, LN-229. The synthesized compound also shows strong binding interactions with DNA and BSA in comparison with coumarin. The DNA binding study shows groove binding interaction of the synthesized compound with CT-DNA. The nature of interaction, binding parameters and structural variations of BSA in the presence of the synthesized compound and coumarin have been evaluated using several usefull spectroscopy approaches such as UV –Vis, time resolved and stady state flurescence. The molecular docking interaction has been carried out to justify the experimental binding interaction with DNA and BSA. en_US
dc.language.iso en en_US
dc.publisher Elsevier: Bioorganic Chemistry en_US
dc.subject COUMARIN en_US
dc.subject AZO DERIVATIVE en_US
dc.subject AQUEOUS MEDIUM en_US
dc.subject CYTOTOXICITY en_US
dc.subject LN-229 en_US
dc.subject BSA BINDING en_US
dc.subject DNA BINDING en_US
dc.subject MOLECULAR DOCKING en_US
dc.title Synthesis of water-soluble novel bioactive pyridine-based azo coumarin derivative and competitive cytotoxicity, DNA binding, BSA binding study, and in silico analysis with coumarin. en_US
dc.type Article en_US


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