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Synthesis and Cytostatic Effect of 3’-deoxy-3’-C-Sulfanylmethyl Nucleoside Derivatives with d-xylo Configuration

A small library of 3’-deoxy-C3’-substituted xylofuranosyl-pyrimidine nucleoside analogues were prepared by photoinduced thiol-ene addition of various thiols, including normal and branched alkyl-, 2-hydroxyethyl, benzyl-, and sugar thiols, to 3’-exomethylene derivatives of 2’,5’-di-O-tert-butyldimeth...

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Autores principales: Bege, Miklós, Kiss, Alexandra, Kicsák, Máté, Bereczki, Ilona, Baksa, Viktória, Király, Gábor, Szemán-Nagy, Gábor, Szigeti, M. Zsuzsa, Herczegh, Pál, Borbás, Anikó
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6600393/
https://www.ncbi.nlm.nih.gov/pubmed/31185601
http://dx.doi.org/10.3390/molecules24112173
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author Bege, Miklós
Kiss, Alexandra
Kicsák, Máté
Bereczki, Ilona
Baksa, Viktória
Király, Gábor
Szemán-Nagy, Gábor
Szigeti, M. Zsuzsa
Herczegh, Pál
Borbás, Anikó
author_facet Bege, Miklós
Kiss, Alexandra
Kicsák, Máté
Bereczki, Ilona
Baksa, Viktória
Király, Gábor
Szemán-Nagy, Gábor
Szigeti, M. Zsuzsa
Herczegh, Pál
Borbás, Anikó
author_sort Bege, Miklós
collection PubMed
description A small library of 3’-deoxy-C3’-substituted xylofuranosyl-pyrimidine nucleoside analogues were prepared by photoinduced thiol-ene addition of various thiols, including normal and branched alkyl-, 2-hydroxyethyl, benzyl-, and sugar thiols, to 3’-exomethylene derivatives of 2’,5’-di-O-tert-butyldimethylsilyl-protected ribothymidine and uridine. The bioactivity of these derivatives was studied on tumorous SCC (mouse squamous carcinoma cell) and immortalized control HaCaT (human keratinocyte) cell lines. Several alkyl-substituted analogues elicited promising cytostatic activity in low micromolar concentrations with a slight selectivity toward tumor cells. Near-infrared live-cell imaging revealed SCC tumor cell-specific mitotic blockade via genotoxicity of analogue 10, bearing an n-butyl side chain. This analogue essentially affects the chromatin structure of SCC tumor cells, inducing a condensed nuclear material and micronuclei as also supported by fluorescent microscopy. The results highlight that thiol-ene chemistry represents an efficient strategy to discover novel nucleoside analogues with non-natural sugar structures as anticancer agents.
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spelling pubmed-66003932019-07-16 Synthesis and Cytostatic Effect of 3’-deoxy-3’-C-Sulfanylmethyl Nucleoside Derivatives with d-xylo Configuration Bege, Miklós Kiss, Alexandra Kicsák, Máté Bereczki, Ilona Baksa, Viktória Király, Gábor Szemán-Nagy, Gábor Szigeti, M. Zsuzsa Herczegh, Pál Borbás, Anikó Molecules Article A small library of 3’-deoxy-C3’-substituted xylofuranosyl-pyrimidine nucleoside analogues were prepared by photoinduced thiol-ene addition of various thiols, including normal and branched alkyl-, 2-hydroxyethyl, benzyl-, and sugar thiols, to 3’-exomethylene derivatives of 2’,5’-di-O-tert-butyldimethylsilyl-protected ribothymidine and uridine. The bioactivity of these derivatives was studied on tumorous SCC (mouse squamous carcinoma cell) and immortalized control HaCaT (human keratinocyte) cell lines. Several alkyl-substituted analogues elicited promising cytostatic activity in low micromolar concentrations with a slight selectivity toward tumor cells. Near-infrared live-cell imaging revealed SCC tumor cell-specific mitotic blockade via genotoxicity of analogue 10, bearing an n-butyl side chain. This analogue essentially affects the chromatin structure of SCC tumor cells, inducing a condensed nuclear material and micronuclei as also supported by fluorescent microscopy. The results highlight that thiol-ene chemistry represents an efficient strategy to discover novel nucleoside analogues with non-natural sugar structures as anticancer agents. MDPI 2019-06-10 /pmc/articles/PMC6600393/ /pubmed/31185601 http://dx.doi.org/10.3390/molecules24112173 Text en © 2019 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
Bege, Miklós
Kiss, Alexandra
Kicsák, Máté
Bereczki, Ilona
Baksa, Viktória
Király, Gábor
Szemán-Nagy, Gábor
Szigeti, M. Zsuzsa
Herczegh, Pál
Borbás, Anikó
Synthesis and Cytostatic Effect of 3’-deoxy-3’-C-Sulfanylmethyl Nucleoside Derivatives with d-xylo Configuration
title Synthesis and Cytostatic Effect of 3’-deoxy-3’-C-Sulfanylmethyl Nucleoside Derivatives with d-xylo Configuration
title_full Synthesis and Cytostatic Effect of 3’-deoxy-3’-C-Sulfanylmethyl Nucleoside Derivatives with d-xylo Configuration
title_fullStr Synthesis and Cytostatic Effect of 3’-deoxy-3’-C-Sulfanylmethyl Nucleoside Derivatives with d-xylo Configuration
title_full_unstemmed Synthesis and Cytostatic Effect of 3’-deoxy-3’-C-Sulfanylmethyl Nucleoside Derivatives with d-xylo Configuration
title_short Synthesis and Cytostatic Effect of 3’-deoxy-3’-C-Sulfanylmethyl Nucleoside Derivatives with d-xylo Configuration
title_sort synthesis and cytostatic effect of 3’-deoxy-3’-c-sulfanylmethyl nucleoside derivatives with d-xylo configuration
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6600393/
https://www.ncbi.nlm.nih.gov/pubmed/31185601
http://dx.doi.org/10.3390/molecules24112173
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