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Novel quercetin and apigenin-acetamide derivatives: design, synthesis, characterization, biological evaluation and molecular docking studies

Flavonoids exhibit essential but limited biological properties which can be enhanced through chemical modifications. In this study, we designed, synthesized, and characterized two novel flavonoid derivatives, quercetin penta-acetamide (1S3) and apigenin tri-acetamide (2S3). These compounds were conf...

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Autores principales: Isika, Daniel, Çeşme, Mustafa, Osonga, Francis J., Sadik, Omowunmi A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9055277/
https://www.ncbi.nlm.nih.gov/pubmed/35517443
http://dx.doi.org/10.1039/d0ra04559d
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author Isika, Daniel
Çeşme, Mustafa
Osonga, Francis J.
Sadik, Omowunmi A.
author_facet Isika, Daniel
Çeşme, Mustafa
Osonga, Francis J.
Sadik, Omowunmi A.
author_sort Isika, Daniel
collection PubMed
description Flavonoids exhibit essential but limited biological properties which can be enhanced through chemical modifications. In this study, we designed, synthesized, and characterized two novel flavonoid derivatives, quercetin penta-acetamide (1S3) and apigenin tri-acetamide (2S3). These compounds were confirmed using ((1)H, (13)C) NMR, UV-Vis, and FT-IR characterizations. Their interaction with fish sperm DNA (FS-DNA) at physiological pH was investigated by UV-Vis and fluorescence spectrophotometry. The binding constant (K(b)) for the UV-Vis experiment was found to be 1.43 ± 0.3 × 10(4) M(−1) for 1S3 and 2.08 ± 0.2 × 10(4) M(−1) for 2S3. The binding constants (K(SV)) for the fluorescence quenching experiment were 1.83 × 10(4) M(−1) and 1.96 × 10(4) M(−1) for 1S3 and 2S3, respectively. Based on molecular modeling and docking studies, the binding affinities were found to be −7.9 and −9.1 kcal mol(−1), for 1S3 and 2S3, respectively. The compound–DNA docked model correlated with our experimental results, and they are groove binders. Furthermore, mutagenicity potential was examined. 1S3 and its metabolites showed no mutagenic activity for both TA98 and TA100 strains. 2S3 did not show any mutagenic activity for the strain TA 98, while its metabolites were only active at high doses. Both 2S3 and its metabolites showed mutagenic activity in the TA100 strain.
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spelling pubmed-90552772022-05-04 Novel quercetin and apigenin-acetamide derivatives: design, synthesis, characterization, biological evaluation and molecular docking studies Isika, Daniel Çeşme, Mustafa Osonga, Francis J. Sadik, Omowunmi A. RSC Adv Chemistry Flavonoids exhibit essential but limited biological properties which can be enhanced through chemical modifications. In this study, we designed, synthesized, and characterized two novel flavonoid derivatives, quercetin penta-acetamide (1S3) and apigenin tri-acetamide (2S3). These compounds were confirmed using ((1)H, (13)C) NMR, UV-Vis, and FT-IR characterizations. Their interaction with fish sperm DNA (FS-DNA) at physiological pH was investigated by UV-Vis and fluorescence spectrophotometry. The binding constant (K(b)) for the UV-Vis experiment was found to be 1.43 ± 0.3 × 10(4) M(−1) for 1S3 and 2.08 ± 0.2 × 10(4) M(−1) for 2S3. The binding constants (K(SV)) for the fluorescence quenching experiment were 1.83 × 10(4) M(−1) and 1.96 × 10(4) M(−1) for 1S3 and 2S3, respectively. Based on molecular modeling and docking studies, the binding affinities were found to be −7.9 and −9.1 kcal mol(−1), for 1S3 and 2S3, respectively. The compound–DNA docked model correlated with our experimental results, and they are groove binders. Furthermore, mutagenicity potential was examined. 1S3 and its metabolites showed no mutagenic activity for both TA98 and TA100 strains. 2S3 did not show any mutagenic activity for the strain TA 98, while its metabolites were only active at high doses. Both 2S3 and its metabolites showed mutagenic activity in the TA100 strain. The Royal Society of Chemistry 2020-06-30 /pmc/articles/PMC9055277/ /pubmed/35517443 http://dx.doi.org/10.1039/d0ra04559d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Isika, Daniel
Çeşme, Mustafa
Osonga, Francis J.
Sadik, Omowunmi A.
Novel quercetin and apigenin-acetamide derivatives: design, synthesis, characterization, biological evaluation and molecular docking studies
title Novel quercetin and apigenin-acetamide derivatives: design, synthesis, characterization, biological evaluation and molecular docking studies
title_full Novel quercetin and apigenin-acetamide derivatives: design, synthesis, characterization, biological evaluation and molecular docking studies
title_fullStr Novel quercetin and apigenin-acetamide derivatives: design, synthesis, characterization, biological evaluation and molecular docking studies
title_full_unstemmed Novel quercetin and apigenin-acetamide derivatives: design, synthesis, characterization, biological evaluation and molecular docking studies
title_short Novel quercetin and apigenin-acetamide derivatives: design, synthesis, characterization, biological evaluation and molecular docking studies
title_sort novel quercetin and apigenin-acetamide derivatives: design, synthesis, characterization, biological evaluation and molecular docking studies
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9055277/
https://www.ncbi.nlm.nih.gov/pubmed/35517443
http://dx.doi.org/10.1039/d0ra04559d
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