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Study of Structure–Activity Relationships of the Marine Alkaloid Fascaplysin and Its Derivatives as Potent Anticancer Agents

Marine alkaloid fascaplysin and its derivatives are known to exhibit promising anticancer properties in vitro and in vivo. However, toxicity of these molecules to non-cancer cells was identified as a main limitation for their clinical use. Here, for the very first time, we synthesized a library of f...

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Autores principales: Zhidkov, Maxim E., Kaune, Moritz, Kantemirov, Alexey V., Smirnova, Polina A., Spirin, Pavel V., Sidorova, Maria A., Stadnik, Sergey A., Shyrokova, Elena Y., Kaluzhny, Dmitry N., Tryapkin, Oleg A., Busenbender, Tobias, Hauschild, Jessica, Rohlfing, Tina, Prassolov, Vladimir S., Bokemeyer, Carsten, Graefen, Markus, von Amsberg, Gunhild, Dyshlovoy, Sergey A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8949187/
https://www.ncbi.nlm.nih.gov/pubmed/35323484
http://dx.doi.org/10.3390/md20030185
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author Zhidkov, Maxim E.
Kaune, Moritz
Kantemirov, Alexey V.
Smirnova, Polina A.
Spirin, Pavel V.
Sidorova, Maria A.
Stadnik, Sergey A.
Shyrokova, Elena Y.
Kaluzhny, Dmitry N.
Tryapkin, Oleg A.
Busenbender, Tobias
Hauschild, Jessica
Rohlfing, Tina
Prassolov, Vladimir S.
Bokemeyer, Carsten
Graefen, Markus
von Amsberg, Gunhild
Dyshlovoy, Sergey A.
author_facet Zhidkov, Maxim E.
Kaune, Moritz
Kantemirov, Alexey V.
Smirnova, Polina A.
Spirin, Pavel V.
Sidorova, Maria A.
Stadnik, Sergey A.
Shyrokova, Elena Y.
Kaluzhny, Dmitry N.
Tryapkin, Oleg A.
Busenbender, Tobias
Hauschild, Jessica
Rohlfing, Tina
Prassolov, Vladimir S.
Bokemeyer, Carsten
Graefen, Markus
von Amsberg, Gunhild
Dyshlovoy, Sergey A.
author_sort Zhidkov, Maxim E.
collection PubMed
description Marine alkaloid fascaplysin and its derivatives are known to exhibit promising anticancer properties in vitro and in vivo. However, toxicity of these molecules to non-cancer cells was identified as a main limitation for their clinical use. Here, for the very first time, we synthesized a library of fascaplysin derivatives covering all possible substituent introduction sites, i.e., cycles A, C and E of the 12H-pyrido[1-2-a:3,4-b’]diindole system. Their selectivity towards human prostate cancer versus non-cancer cells, as well as the effects on cellular metabolism, membrane integrity, cell cycle progression, apoptosis induction and their ability to intercalate into DNA were investigated. A pronounced selectivity for cancer cells was observed for the family of di- and trisubstituted halogen derivatives (modification of cycles A and E), while a modification of cycle C resulted in a stronger activity in therapy-resistant PC-3 cells. Among others, 3,10-dibromofascaplysin exhibited the highest selectivity, presumably due to the cytostatic effects executed via the targeting of cellular metabolism. Moreover, an introduction of radical substituents at C-9, C-10 or C-10 plus C-3 resulted in a notable reduction in DNA intercalating activity and improved selectivity. Taken together, our research contributes to understanding the structure–activity relationships of fascaplysin alkaloids and defines further directions of the structural optimization.
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spelling pubmed-89491872022-03-26 Study of Structure–Activity Relationships of the Marine Alkaloid Fascaplysin and Its Derivatives as Potent Anticancer Agents Zhidkov, Maxim E. Kaune, Moritz Kantemirov, Alexey V. Smirnova, Polina A. Spirin, Pavel V. Sidorova, Maria A. Stadnik, Sergey A. Shyrokova, Elena Y. Kaluzhny, Dmitry N. Tryapkin, Oleg A. Busenbender, Tobias Hauschild, Jessica Rohlfing, Tina Prassolov, Vladimir S. Bokemeyer, Carsten Graefen, Markus von Amsberg, Gunhild Dyshlovoy, Sergey A. Mar Drugs Article Marine alkaloid fascaplysin and its derivatives are known to exhibit promising anticancer properties in vitro and in vivo. However, toxicity of these molecules to non-cancer cells was identified as a main limitation for their clinical use. Here, for the very first time, we synthesized a library of fascaplysin derivatives covering all possible substituent introduction sites, i.e., cycles A, C and E of the 12H-pyrido[1-2-a:3,4-b’]diindole system. Their selectivity towards human prostate cancer versus non-cancer cells, as well as the effects on cellular metabolism, membrane integrity, cell cycle progression, apoptosis induction and their ability to intercalate into DNA were investigated. A pronounced selectivity for cancer cells was observed for the family of di- and trisubstituted halogen derivatives (modification of cycles A and E), while a modification of cycle C resulted in a stronger activity in therapy-resistant PC-3 cells. Among others, 3,10-dibromofascaplysin exhibited the highest selectivity, presumably due to the cytostatic effects executed via the targeting of cellular metabolism. Moreover, an introduction of radical substituents at C-9, C-10 or C-10 plus C-3 resulted in a notable reduction in DNA intercalating activity and improved selectivity. Taken together, our research contributes to understanding the structure–activity relationships of fascaplysin alkaloids and defines further directions of the structural optimization. MDPI 2022-03-02 /pmc/articles/PMC8949187/ /pubmed/35323484 http://dx.doi.org/10.3390/md20030185 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
Zhidkov, Maxim E.
Kaune, Moritz
Kantemirov, Alexey V.
Smirnova, Polina A.
Spirin, Pavel V.
Sidorova, Maria A.
Stadnik, Sergey A.
Shyrokova, Elena Y.
Kaluzhny, Dmitry N.
Tryapkin, Oleg A.
Busenbender, Tobias
Hauschild, Jessica
Rohlfing, Tina
Prassolov, Vladimir S.
Bokemeyer, Carsten
Graefen, Markus
von Amsberg, Gunhild
Dyshlovoy, Sergey A.
Study of Structure–Activity Relationships of the Marine Alkaloid Fascaplysin and Its Derivatives as Potent Anticancer Agents
title Study of Structure–Activity Relationships of the Marine Alkaloid Fascaplysin and Its Derivatives as Potent Anticancer Agents
title_full Study of Structure–Activity Relationships of the Marine Alkaloid Fascaplysin and Its Derivatives as Potent Anticancer Agents
title_fullStr Study of Structure–Activity Relationships of the Marine Alkaloid Fascaplysin and Its Derivatives as Potent Anticancer Agents
title_full_unstemmed Study of Structure–Activity Relationships of the Marine Alkaloid Fascaplysin and Its Derivatives as Potent Anticancer Agents
title_short Study of Structure–Activity Relationships of the Marine Alkaloid Fascaplysin and Its Derivatives as Potent Anticancer Agents
title_sort study of structure–activity relationships of the marine alkaloid fascaplysin and its derivatives as potent anticancer agents
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8949187/
https://www.ncbi.nlm.nih.gov/pubmed/35323484
http://dx.doi.org/10.3390/md20030185
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