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Novel Approach to the Construction of Fused Indolizine Scaffolds: Synthesis of Rosettacin and the Aromathecin Family of Compounds

Camptothecin-like compounds are actively employed as anticancer drugs in clinical treatments. The aromathecin family of compounds, which contains the same indazolidine core structure as the camptothecin family of compounds, is also expected to display promising anticancer activity. Therefore, the de...

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Autores principales: Mizuno, Shohta, Nishiyama, Takashi, Endo, Mai, Sakoguchi, Koharu, Yoshiura, Takaki, Bessho, Hana, Motoyashiki, Toshio, Hatae, Noriyuki, Choshi, Tominari
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10222911/
https://www.ncbi.nlm.nih.gov/pubmed/37241799
http://dx.doi.org/10.3390/molecules28104059
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author Mizuno, Shohta
Nishiyama, Takashi
Endo, Mai
Sakoguchi, Koharu
Yoshiura, Takaki
Bessho, Hana
Motoyashiki, Toshio
Hatae, Noriyuki
Choshi, Tominari
author_facet Mizuno, Shohta
Nishiyama, Takashi
Endo, Mai
Sakoguchi, Koharu
Yoshiura, Takaki
Bessho, Hana
Motoyashiki, Toshio
Hatae, Noriyuki
Choshi, Tominari
author_sort Mizuno, Shohta
collection PubMed
description Camptothecin-like compounds are actively employed as anticancer drugs in clinical treatments. The aromathecin family of compounds, which contains the same indazolidine core structure as the camptothecin family of compounds, is also expected to display promising anticancer activity. Therefore, the development of a suitable and scalable synthetic method of aromathecin synthesis is of great research interest. In this study, we report the development of a new synthetic approach for constructing the pentacyclic scaffold of the aromathecin family by forming the indolizidine moiety after synthesizing the isoquinolone moiety. Thermal cyclization of 2-alkynylbenzaldehyde oxime to the isoquinoline N-oxide, followed by a Reissert–Henze-type reaction, forms the key strategy in this isoquinolone synthesis. Under the optimum reaction conditions for the Reissert–Henze-type reaction step, microwave irradiation-assisted heating of the purified N-oxide in acetic anhydride at 50 °C reduced the formation of the 4-acetoxyisoquinoline byproduct to deliver the desired isoquinolone at a 73% yield after just 3.5 h. The eight-step sequence employed afforded rosettacin (simplest member of the aromathecin family) at a 23.8% overall yield. The synthesis of rosettacin analogs was achieved by applying the developed strategy and may be generally applicable to the production of other fused indolizidine compounds.
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spelling pubmed-102229112023-05-28 Novel Approach to the Construction of Fused Indolizine Scaffolds: Synthesis of Rosettacin and the Aromathecin Family of Compounds Mizuno, Shohta Nishiyama, Takashi Endo, Mai Sakoguchi, Koharu Yoshiura, Takaki Bessho, Hana Motoyashiki, Toshio Hatae, Noriyuki Choshi, Tominari Molecules Article Camptothecin-like compounds are actively employed as anticancer drugs in clinical treatments. The aromathecin family of compounds, which contains the same indazolidine core structure as the camptothecin family of compounds, is also expected to display promising anticancer activity. Therefore, the development of a suitable and scalable synthetic method of aromathecin synthesis is of great research interest. In this study, we report the development of a new synthetic approach for constructing the pentacyclic scaffold of the aromathecin family by forming the indolizidine moiety after synthesizing the isoquinolone moiety. Thermal cyclization of 2-alkynylbenzaldehyde oxime to the isoquinoline N-oxide, followed by a Reissert–Henze-type reaction, forms the key strategy in this isoquinolone synthesis. Under the optimum reaction conditions for the Reissert–Henze-type reaction step, microwave irradiation-assisted heating of the purified N-oxide in acetic anhydride at 50 °C reduced the formation of the 4-acetoxyisoquinoline byproduct to deliver the desired isoquinolone at a 73% yield after just 3.5 h. The eight-step sequence employed afforded rosettacin (simplest member of the aromathecin family) at a 23.8% overall yield. The synthesis of rosettacin analogs was achieved by applying the developed strategy and may be generally applicable to the production of other fused indolizidine compounds. MDPI 2023-05-12 /pmc/articles/PMC10222911/ /pubmed/37241799 http://dx.doi.org/10.3390/molecules28104059 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mizuno, Shohta
Nishiyama, Takashi
Endo, Mai
Sakoguchi, Koharu
Yoshiura, Takaki
Bessho, Hana
Motoyashiki, Toshio
Hatae, Noriyuki
Choshi, Tominari
Novel Approach to the Construction of Fused Indolizine Scaffolds: Synthesis of Rosettacin and the Aromathecin Family of Compounds
title Novel Approach to the Construction of Fused Indolizine Scaffolds: Synthesis of Rosettacin and the Aromathecin Family of Compounds
title_full Novel Approach to the Construction of Fused Indolizine Scaffolds: Synthesis of Rosettacin and the Aromathecin Family of Compounds
title_fullStr Novel Approach to the Construction of Fused Indolizine Scaffolds: Synthesis of Rosettacin and the Aromathecin Family of Compounds
title_full_unstemmed Novel Approach to the Construction of Fused Indolizine Scaffolds: Synthesis of Rosettacin and the Aromathecin Family of Compounds
title_short Novel Approach to the Construction of Fused Indolizine Scaffolds: Synthesis of Rosettacin and the Aromathecin Family of Compounds
title_sort novel approach to the construction of fused indolizine scaffolds: synthesis of rosettacin and the aromathecin family of compounds
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10222911/
https://www.ncbi.nlm.nih.gov/pubmed/37241799
http://dx.doi.org/10.3390/molecules28104059
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