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Design, synthesis, and enzyme inhibition evaluation of some novel Mono- and Di-O-β-D-Glycopyranosyl Chalcone analogues with molecular docking studies

In this study, some novel mono- and di-O-β-D-glycopyranosyl chalcone analogs were designed, synthesized, and characterized. The chalcone derivatives were synthesized with good yields by base-catalyzed Claisen-Schmidt condensation in EtOH solution. Then these chalcones were reacted with TAGBr (2,3,4,...

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Autores principales: ÇELİK, Gonca, TATAR YILMAZ, Gizem, SAHİN, Hüseyin, BARUT, Burak, YAYLI, Nurettin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Scientific and Technological Research Council of Turkey (TUBITAK) 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10504015/
https://www.ncbi.nlm.nih.gov/pubmed/37720866
http://dx.doi.org/10.55730/1300-0527.3527
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author ÇELİK, Gonca
TATAR YILMAZ, Gizem
SAHİN, Hüseyin
BARUT, Burak
YAYLI, Nurettin
author_facet ÇELİK, Gonca
TATAR YILMAZ, Gizem
SAHİN, Hüseyin
BARUT, Burak
YAYLI, Nurettin
author_sort ÇELİK, Gonca
collection PubMed
description In this study, some novel mono- and di-O-β-D-glycopyranosyl chalcone analogs were designed, synthesized, and characterized. The chalcone derivatives were synthesized with good yields by base-catalyzed Claisen-Schmidt condensation in EtOH solution. Then these chalcones were reacted with TAGBr (2,3,4,6-tetra-O-acetyl-α-D-glucopyranosylbromide) in dry acetone under the anhydrous condition at 0–5 °C. Deacylated was carried out by the Zemplen’s method with NaOCH(3) in dry methanol results in substituted chalcone-O-glycosides (mono- and di-O-β-D-glycopyranosyl chalcone analogs). The chemical structures of all synthesized compounds were elucidated based on IR, NMR spectral data, and mass spectrometry. Further, the compounds (7a–c, 8a–c, 12a–c, 16a–c, and 17a–c) were tested for their enzyme inhibition activity against α-glycosidase, tyrosinase, and AChE with in vitro and in silico analysis. Amongst them, compounds 12a–c, 16a–c, and 17a–c displayed moderate or less enzyme inhibition activity against α-glycosidase while other compounds 7a–c and 8a–c) were not active. Remarkably interesting enzyme inhibition effects, with IC(50) values below 30.59 ± 0.30 μM were recorded with 7c (IC(50)=11.07 ± 0.55 μM) against tyrosinase.
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spelling pubmed-105040152023-09-16 Design, synthesis, and enzyme inhibition evaluation of some novel Mono- and Di-O-β-D-Glycopyranosyl Chalcone analogues with molecular docking studies ÇELİK, Gonca TATAR YILMAZ, Gizem SAHİN, Hüseyin BARUT, Burak YAYLI, Nurettin Turk J Chem Research Article In this study, some novel mono- and di-O-β-D-glycopyranosyl chalcone analogs were designed, synthesized, and characterized. The chalcone derivatives were synthesized with good yields by base-catalyzed Claisen-Schmidt condensation in EtOH solution. Then these chalcones were reacted with TAGBr (2,3,4,6-tetra-O-acetyl-α-D-glucopyranosylbromide) in dry acetone under the anhydrous condition at 0–5 °C. Deacylated was carried out by the Zemplen’s method with NaOCH(3) in dry methanol results in substituted chalcone-O-glycosides (mono- and di-O-β-D-glycopyranosyl chalcone analogs). The chemical structures of all synthesized compounds were elucidated based on IR, NMR spectral data, and mass spectrometry. Further, the compounds (7a–c, 8a–c, 12a–c, 16a–c, and 17a–c) were tested for their enzyme inhibition activity against α-glycosidase, tyrosinase, and AChE with in vitro and in silico analysis. Amongst them, compounds 12a–c, 16a–c, and 17a–c displayed moderate or less enzyme inhibition activity against α-glycosidase while other compounds 7a–c and 8a–c) were not active. Remarkably interesting enzyme inhibition effects, with IC(50) values below 30.59 ± 0.30 μM were recorded with 7c (IC(50)=11.07 ± 0.55 μM) against tyrosinase. Scientific and Technological Research Council of Turkey (TUBITAK) 2022-11-23 /pmc/articles/PMC10504015/ /pubmed/37720866 http://dx.doi.org/10.55730/1300-0527.3527 Text en © TÜBİTAK https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 International License.
spellingShingle Research Article
ÇELİK, Gonca
TATAR YILMAZ, Gizem
SAHİN, Hüseyin
BARUT, Burak
YAYLI, Nurettin
Design, synthesis, and enzyme inhibition evaluation of some novel Mono- and Di-O-β-D-Glycopyranosyl Chalcone analogues with molecular docking studies
title Design, synthesis, and enzyme inhibition evaluation of some novel Mono- and Di-O-β-D-Glycopyranosyl Chalcone analogues with molecular docking studies
title_full Design, synthesis, and enzyme inhibition evaluation of some novel Mono- and Di-O-β-D-Glycopyranosyl Chalcone analogues with molecular docking studies
title_fullStr Design, synthesis, and enzyme inhibition evaluation of some novel Mono- and Di-O-β-D-Glycopyranosyl Chalcone analogues with molecular docking studies
title_full_unstemmed Design, synthesis, and enzyme inhibition evaluation of some novel Mono- and Di-O-β-D-Glycopyranosyl Chalcone analogues with molecular docking studies
title_short Design, synthesis, and enzyme inhibition evaluation of some novel Mono- and Di-O-β-D-Glycopyranosyl Chalcone analogues with molecular docking studies
title_sort design, synthesis, and enzyme inhibition evaluation of some novel mono- and di-o-β-d-glycopyranosyl chalcone analogues with molecular docking studies
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10504015/
https://www.ncbi.nlm.nih.gov/pubmed/37720866
http://dx.doi.org/10.55730/1300-0527.3527
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