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Diversity-Oriented Synthesis Catalyzed by Diethylaminosulfur-Trifluoride—Preparation of New Antitumor Ecdysteroid Derivatives

Fluorine represents a privileged building block in pharmaceutical chemistry. Diethylaminosulfur-trifluoride (DAST) is a reagent commonly used for replacement of alcoholic hydroxyl groups with fluorine and is also known to catalyze water elimination and cyclic Beckmann-rearrangement type reactions. I...

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Autores principales: Vágvölgyi, Máté, Kocsis, Endre, Nové, Márta, Szemerédi, Nikoletta, Spengler, Gabriella, Kele, Zoltán, Berkecz, Róbert, Gáti, Tamás, Tóth, Gábor, Hunyadi, Attila
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8998355/
https://www.ncbi.nlm.nih.gov/pubmed/35408806
http://dx.doi.org/10.3390/ijms23073447
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author Vágvölgyi, Máté
Kocsis, Endre
Nové, Márta
Szemerédi, Nikoletta
Spengler, Gabriella
Kele, Zoltán
Berkecz, Róbert
Gáti, Tamás
Tóth, Gábor
Hunyadi, Attila
author_facet Vágvölgyi, Máté
Kocsis, Endre
Nové, Márta
Szemerédi, Nikoletta
Spengler, Gabriella
Kele, Zoltán
Berkecz, Róbert
Gáti, Tamás
Tóth, Gábor
Hunyadi, Attila
author_sort Vágvölgyi, Máté
collection PubMed
description Fluorine represents a privileged building block in pharmaceutical chemistry. Diethylaminosulfur-trifluoride (DAST) is a reagent commonly used for replacement of alcoholic hydroxyl groups with fluorine and is also known to catalyze water elimination and cyclic Beckmann-rearrangement type reactions. In this work we aimed to use DAST for diversity-oriented semisynthetic transformation of natural products bearing multiple hydroxyl groups to prepare new bioactive compounds. Four ecdysteroids, including a new constituent of Cyanotis arachnoidea, were selected as starting materials for DAST-catalyzed transformations. The newly prepared compounds represented combinations of various structural changes DAST was known to catalyze, and a unique cyclopropane ring closure that was found for the first time. Several compounds demonstrated in vitro antitumor properties. A new 17-N-acetylecdysteroid (13) exerted potent antiproliferative activity and no cytotoxicity on drug susceptible and multi-drug resistant mouse T-cell lymphoma cells. Further, compound 13 acted in significant synergism with doxorubicin without detectable direct ABCB1 inhibition. Our results demonstrate that DAST is a versatile tool for diversity-oriented synthesis to expand chemical space towards new bioactive compounds.
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spelling pubmed-89983552022-04-12 Diversity-Oriented Synthesis Catalyzed by Diethylaminosulfur-Trifluoride—Preparation of New Antitumor Ecdysteroid Derivatives Vágvölgyi, Máté Kocsis, Endre Nové, Márta Szemerédi, Nikoletta Spengler, Gabriella Kele, Zoltán Berkecz, Róbert Gáti, Tamás Tóth, Gábor Hunyadi, Attila Int J Mol Sci Article Fluorine represents a privileged building block in pharmaceutical chemistry. Diethylaminosulfur-trifluoride (DAST) is a reagent commonly used for replacement of alcoholic hydroxyl groups with fluorine and is also known to catalyze water elimination and cyclic Beckmann-rearrangement type reactions. In this work we aimed to use DAST for diversity-oriented semisynthetic transformation of natural products bearing multiple hydroxyl groups to prepare new bioactive compounds. Four ecdysteroids, including a new constituent of Cyanotis arachnoidea, were selected as starting materials for DAST-catalyzed transformations. The newly prepared compounds represented combinations of various structural changes DAST was known to catalyze, and a unique cyclopropane ring closure that was found for the first time. Several compounds demonstrated in vitro antitumor properties. A new 17-N-acetylecdysteroid (13) exerted potent antiproliferative activity and no cytotoxicity on drug susceptible and multi-drug resistant mouse T-cell lymphoma cells. Further, compound 13 acted in significant synergism with doxorubicin without detectable direct ABCB1 inhibition. Our results demonstrate that DAST is a versatile tool for diversity-oriented synthesis to expand chemical space towards new bioactive compounds. MDPI 2022-03-22 /pmc/articles/PMC8998355/ /pubmed/35408806 http://dx.doi.org/10.3390/ijms23073447 Text en © 2022 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
Vágvölgyi, Máté
Kocsis, Endre
Nové, Márta
Szemerédi, Nikoletta
Spengler, Gabriella
Kele, Zoltán
Berkecz, Róbert
Gáti, Tamás
Tóth, Gábor
Hunyadi, Attila
Diversity-Oriented Synthesis Catalyzed by Diethylaminosulfur-Trifluoride—Preparation of New Antitumor Ecdysteroid Derivatives
title Diversity-Oriented Synthesis Catalyzed by Diethylaminosulfur-Trifluoride—Preparation of New Antitumor Ecdysteroid Derivatives
title_full Diversity-Oriented Synthesis Catalyzed by Diethylaminosulfur-Trifluoride—Preparation of New Antitumor Ecdysteroid Derivatives
title_fullStr Diversity-Oriented Synthesis Catalyzed by Diethylaminosulfur-Trifluoride—Preparation of New Antitumor Ecdysteroid Derivatives
title_full_unstemmed Diversity-Oriented Synthesis Catalyzed by Diethylaminosulfur-Trifluoride—Preparation of New Antitumor Ecdysteroid Derivatives
title_short Diversity-Oriented Synthesis Catalyzed by Diethylaminosulfur-Trifluoride—Preparation of New Antitumor Ecdysteroid Derivatives
title_sort diversity-oriented synthesis catalyzed by diethylaminosulfur-trifluoride—preparation of new antitumor ecdysteroid derivatives
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8998355/
https://www.ncbi.nlm.nih.gov/pubmed/35408806
http://dx.doi.org/10.3390/ijms23073447
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