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[1,5]-Hydride Shift-Cyclization versus C(sp(2))-H Functionalization in the Knoevenagel-Cyclization Domino Reactions of 1,4- and 1,5-Benzoxazepines

Domino cyclization reactions of N-aryl-1,4- and 1,5-benzoxazepine derivatives involving [1,5]-hydride shift or C(sp(2))-H functionalization were investigated. Neuroprotective and acetylcholinesterase activities of the products were studied. Domino Knoevenagel-[1,5]-hydride shift-cyclization reaction...

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Autores principales: Szalóki Vargáné, Dóra, Tóth, László, Buglyó, Balázs, Kiss-Szikszai, Attila, Mándi, Attila, Mátyus, Péter, Antus, Sándor, Chen, Yinghan, Li, Dehai, Tao, Lingxue, Zhang, Haiyan, Kurtán, Tibor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7144003/
https://www.ncbi.nlm.nih.gov/pubmed/32168821
http://dx.doi.org/10.3390/molecules25061265
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author Szalóki Vargáné, Dóra
Tóth, László
Buglyó, Balázs
Kiss-Szikszai, Attila
Mándi, Attila
Mátyus, Péter
Antus, Sándor
Chen, Yinghan
Li, Dehai
Tao, Lingxue
Zhang, Haiyan
Kurtán, Tibor
author_facet Szalóki Vargáné, Dóra
Tóth, László
Buglyó, Balázs
Kiss-Szikszai, Attila
Mándi, Attila
Mátyus, Péter
Antus, Sándor
Chen, Yinghan
Li, Dehai
Tao, Lingxue
Zhang, Haiyan
Kurtán, Tibor
author_sort Szalóki Vargáné, Dóra
collection PubMed
description Domino cyclization reactions of N-aryl-1,4- and 1,5-benzoxazepine derivatives involving [1,5]-hydride shift or C(sp(2))-H functionalization were investigated. Neuroprotective and acetylcholinesterase activities of the products were studied. Domino Knoevenagel-[1,5]-hydride shift-cyclization reaction of N-aryl-1,4-benzoxazepine derivatives with 1,3-dicarbonyl reagents having active methylene group afforded the 1,2,8,9-tetrahydro-7bH-quinolino [1,2-d][1,4]benzoxazepine scaffold with different substitution pattern. The C(sp(3))-H activation step of the tertiary amine moiety occurred with complete regioselectivity and the 6-endo cyclization took place in a complete diastereoselective manner. In two cases, the enantiomers of the chiral condensed new 1,4-benzoxazepine systems were separated by chiral HPLC, HPLC-ECD spectra were recorded, and absolute configurations were determined by time-dependent density functional theory- electronic circular dichroism (TDDFT-ECD) calculations. In contrast, the analogue reaction of the regioisomeric N-aryl-1,5-benzoxazepine derivative did not follow the above mechanism but instead the Knoevenagel intermediate reacted in an S(E)Ar reaction [C(sp(2))-H functionalization] resulting in a condensed acridane derivative. The AChE inhibitory assays of the new derivatives revealed that the acridane derivative had a 6.98 μM IC(50) value.
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spelling pubmed-71440032020-04-13 [1,5]-Hydride Shift-Cyclization versus C(sp(2))-H Functionalization in the Knoevenagel-Cyclization Domino Reactions of 1,4- and 1,5-Benzoxazepines Szalóki Vargáné, Dóra Tóth, László Buglyó, Balázs Kiss-Szikszai, Attila Mándi, Attila Mátyus, Péter Antus, Sándor Chen, Yinghan Li, Dehai Tao, Lingxue Zhang, Haiyan Kurtán, Tibor Molecules Article Domino cyclization reactions of N-aryl-1,4- and 1,5-benzoxazepine derivatives involving [1,5]-hydride shift or C(sp(2))-H functionalization were investigated. Neuroprotective and acetylcholinesterase activities of the products were studied. Domino Knoevenagel-[1,5]-hydride shift-cyclization reaction of N-aryl-1,4-benzoxazepine derivatives with 1,3-dicarbonyl reagents having active methylene group afforded the 1,2,8,9-tetrahydro-7bH-quinolino [1,2-d][1,4]benzoxazepine scaffold with different substitution pattern. The C(sp(3))-H activation step of the tertiary amine moiety occurred with complete regioselectivity and the 6-endo cyclization took place in a complete diastereoselective manner. In two cases, the enantiomers of the chiral condensed new 1,4-benzoxazepine systems were separated by chiral HPLC, HPLC-ECD spectra were recorded, and absolute configurations were determined by time-dependent density functional theory- electronic circular dichroism (TDDFT-ECD) calculations. In contrast, the analogue reaction of the regioisomeric N-aryl-1,5-benzoxazepine derivative did not follow the above mechanism but instead the Knoevenagel intermediate reacted in an S(E)Ar reaction [C(sp(2))-H functionalization] resulting in a condensed acridane derivative. The AChE inhibitory assays of the new derivatives revealed that the acridane derivative had a 6.98 μM IC(50) value. MDPI 2020-03-11 /pmc/articles/PMC7144003/ /pubmed/32168821 http://dx.doi.org/10.3390/molecules25061265 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
Szalóki Vargáné, Dóra
Tóth, László
Buglyó, Balázs
Kiss-Szikszai, Attila
Mándi, Attila
Mátyus, Péter
Antus, Sándor
Chen, Yinghan
Li, Dehai
Tao, Lingxue
Zhang, Haiyan
Kurtán, Tibor
[1,5]-Hydride Shift-Cyclization versus C(sp(2))-H Functionalization in the Knoevenagel-Cyclization Domino Reactions of 1,4- and 1,5-Benzoxazepines
title [1,5]-Hydride Shift-Cyclization versus C(sp(2))-H Functionalization in the Knoevenagel-Cyclization Domino Reactions of 1,4- and 1,5-Benzoxazepines
title_full [1,5]-Hydride Shift-Cyclization versus C(sp(2))-H Functionalization in the Knoevenagel-Cyclization Domino Reactions of 1,4- and 1,5-Benzoxazepines
title_fullStr [1,5]-Hydride Shift-Cyclization versus C(sp(2))-H Functionalization in the Knoevenagel-Cyclization Domino Reactions of 1,4- and 1,5-Benzoxazepines
title_full_unstemmed [1,5]-Hydride Shift-Cyclization versus C(sp(2))-H Functionalization in the Knoevenagel-Cyclization Domino Reactions of 1,4- and 1,5-Benzoxazepines
title_short [1,5]-Hydride Shift-Cyclization versus C(sp(2))-H Functionalization in the Knoevenagel-Cyclization Domino Reactions of 1,4- and 1,5-Benzoxazepines
title_sort [1,5]-hydride shift-cyclization versus c(sp(2))-h functionalization in the knoevenagel-cyclization domino reactions of 1,4- and 1,5-benzoxazepines
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7144003/
https://www.ncbi.nlm.nih.gov/pubmed/32168821
http://dx.doi.org/10.3390/molecules25061265
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