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Synthesis and HPLC-ECD Study of Cytostatic Condensed O,N-Heterocycles Obtained from 3-Aminoflavanones

Racemic chiral O,N-heterocycles containing 2-arylchroman or 2-aryl-2H-chromene subunit condensed with morpholine, thiazole, or pyrrole moieties at the C-3-C-4 bond were synthesized with various substitution patterns of the aryl group by the cyclization of cis- or trans-3-aminoflavanone analogues. Th...

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Autores principales: Szappanos, Ádám, Mándi, Attila, Gulácsi, Katalin, Lisztes, Erika, Tóth, Balázs István, Bíró, Tamás, Kónya-Ábrahám, Anita, Kiss-Szikszai, Attila, Bényei, Attila, Antus, Sándor, Kurtán, Tibor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7593906/
https://www.ncbi.nlm.nih.gov/pubmed/33092128
http://dx.doi.org/10.3390/biom10101462
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author Szappanos, Ádám
Mándi, Attila
Gulácsi, Katalin
Lisztes, Erika
Tóth, Balázs István
Bíró, Tamás
Kónya-Ábrahám, Anita
Kiss-Szikszai, Attila
Bényei, Attila
Antus, Sándor
Kurtán, Tibor
author_facet Szappanos, Ádám
Mándi, Attila
Gulácsi, Katalin
Lisztes, Erika
Tóth, Balázs István
Bíró, Tamás
Kónya-Ábrahám, Anita
Kiss-Szikszai, Attila
Bényei, Attila
Antus, Sándor
Kurtán, Tibor
author_sort Szappanos, Ádám
collection PubMed
description Racemic chiral O,N-heterocycles containing 2-arylchroman or 2-aryl-2H-chromene subunit condensed with morpholine, thiazole, or pyrrole moieties at the C-3-C-4 bond were synthesized with various substitution patterns of the aryl group by the cyclization of cis- or trans-3-aminoflavanone analogues. The 3-aminoflavanone precursors were obtained in a Neber rearrangement of oxime tosylates of flavanones, which provided the trans diastereomer as the major product and enabled the isolation of both the cis- and trans-diastereomers. The cis- and trans-aminoflavanones were utilized to prepare three diastereomers of 5-aryl-chromeno[4,3-b][1,4]oxazines. Antiproliferative activity of the condensed heterocycles and precursors was evaluated against A2780 and WM35 cancer cell lines. For a 3-(N-chloroacetylamino)-flavan-4-ol derivative, showing structural analogy with acyclic acid ceramidase inhibitors, 0.15 μM, 3.50 μM, and 6.06 μM IC(50) values were measured against A2780, WM35, and HaCat cell lines, and apoptotic mechanism was confirmed. Low micromolar IC(50) values down to 2.14 μM were identified for the thiazole- and pyrrole-condensed 2H-chromene derivatives. Enantiomers of the condensed heterocycles were separated by HPLC using chiral stationary phase, HPLC-ECD spectra were recorded and TDDFT-ECD calculations were performed to determine the absolute configuration and solution conformation. Characteristic ECD transitions of the separated enantiomers were correlated with the absolute configuration and effect of substitution pattern on the HPLC elution order was determined.
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spelling pubmed-75939062020-10-30 Synthesis and HPLC-ECD Study of Cytostatic Condensed O,N-Heterocycles Obtained from 3-Aminoflavanones Szappanos, Ádám Mándi, Attila Gulácsi, Katalin Lisztes, Erika Tóth, Balázs István Bíró, Tamás Kónya-Ábrahám, Anita Kiss-Szikszai, Attila Bényei, Attila Antus, Sándor Kurtán, Tibor Biomolecules Article Racemic chiral O,N-heterocycles containing 2-arylchroman or 2-aryl-2H-chromene subunit condensed with morpholine, thiazole, or pyrrole moieties at the C-3-C-4 bond were synthesized with various substitution patterns of the aryl group by the cyclization of cis- or trans-3-aminoflavanone analogues. The 3-aminoflavanone precursors were obtained in a Neber rearrangement of oxime tosylates of flavanones, which provided the trans diastereomer as the major product and enabled the isolation of both the cis- and trans-diastereomers. The cis- and trans-aminoflavanones were utilized to prepare three diastereomers of 5-aryl-chromeno[4,3-b][1,4]oxazines. Antiproliferative activity of the condensed heterocycles and precursors was evaluated against A2780 and WM35 cancer cell lines. For a 3-(N-chloroacetylamino)-flavan-4-ol derivative, showing structural analogy with acyclic acid ceramidase inhibitors, 0.15 μM, 3.50 μM, and 6.06 μM IC(50) values were measured against A2780, WM35, and HaCat cell lines, and apoptotic mechanism was confirmed. Low micromolar IC(50) values down to 2.14 μM were identified for the thiazole- and pyrrole-condensed 2H-chromene derivatives. Enantiomers of the condensed heterocycles were separated by HPLC using chiral stationary phase, HPLC-ECD spectra were recorded and TDDFT-ECD calculations were performed to determine the absolute configuration and solution conformation. Characteristic ECD transitions of the separated enantiomers were correlated with the absolute configuration and effect of substitution pattern on the HPLC elution order was determined. MDPI 2020-10-20 /pmc/articles/PMC7593906/ /pubmed/33092128 http://dx.doi.org/10.3390/biom10101462 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Szappanos, Ádám
Mándi, Attila
Gulácsi, Katalin
Lisztes, Erika
Tóth, Balázs István
Bíró, Tamás
Kónya-Ábrahám, Anita
Kiss-Szikszai, Attila
Bényei, Attila
Antus, Sándor
Kurtán, Tibor
Synthesis and HPLC-ECD Study of Cytostatic Condensed O,N-Heterocycles Obtained from 3-Aminoflavanones
title Synthesis and HPLC-ECD Study of Cytostatic Condensed O,N-Heterocycles Obtained from 3-Aminoflavanones
title_full Synthesis and HPLC-ECD Study of Cytostatic Condensed O,N-Heterocycles Obtained from 3-Aminoflavanones
title_fullStr Synthesis and HPLC-ECD Study of Cytostatic Condensed O,N-Heterocycles Obtained from 3-Aminoflavanones
title_full_unstemmed Synthesis and HPLC-ECD Study of Cytostatic Condensed O,N-Heterocycles Obtained from 3-Aminoflavanones
title_short Synthesis and HPLC-ECD Study of Cytostatic Condensed O,N-Heterocycles Obtained from 3-Aminoflavanones
title_sort synthesis and hplc-ecd study of cytostatic condensed o,n-heterocycles obtained from 3-aminoflavanones
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7593906/
https://www.ncbi.nlm.nih.gov/pubmed/33092128
http://dx.doi.org/10.3390/biom10101462
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