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Structure–Activity Relationship of the Thiacalix[4]arenes Family with Sulfobetaine Fragments: Self-Assembly and Cytotoxic Effect against Cancer Cell Lines

Regulating the structure of macrocyclic host molecules and supramolecular assemblies is crucial because the structure–activity relationship often plays a role in governing the properties of these systems. Herein, we propose and develop an approach to the synthesis of the family of sulfobetaine funct...

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Autores principales: Yakimova, Luidmila, Kunafina, Aisylu, Nugmanova, Aigul, Padnya, Pavel, Voloshina, Alexandra, Petrov, Konstantin, Stoikov, Ivan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8879733/
https://www.ncbi.nlm.nih.gov/pubmed/35209152
http://dx.doi.org/10.3390/molecules27041364
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author Yakimova, Luidmila
Kunafina, Aisylu
Nugmanova, Aigul
Padnya, Pavel
Voloshina, Alexandra
Petrov, Konstantin
Stoikov, Ivan
author_facet Yakimova, Luidmila
Kunafina, Aisylu
Nugmanova, Aigul
Padnya, Pavel
Voloshina, Alexandra
Petrov, Konstantin
Stoikov, Ivan
author_sort Yakimova, Luidmila
collection PubMed
description Regulating the structure of macrocyclic host molecules and supramolecular assemblies is crucial because the structure–activity relationship often plays a role in governing the properties of these systems. Herein, we propose and develop an approach to the synthesis of the family of sulfobetaine functionalized thiacalix[4]arenes with regulation of the self-assembly and cytotoxic effect against cancer cell lines. The dynamic light scattering method showed that the synthesized macrocycles in cone, partial cone and 1,3-alternate conformations form submicron-sized particles with Ag(+) in water, but the particle size and polydispersity of the systems studied depend on the macrocycle conformation. Based on the results obtained by (1)H and (1)H-(1)H NOESY NMR spectroscopy and transmission electron microscopy for the macrocycles and their aggregates with Ag(+), a coordination scheme for the Ag(+) and different conformations of p-tert-butylthiacalix[4]arene functionalized with sulfobetaine fragments was proposed. The type of coordination determines the different shapes of the associates. Cytotoxic properties are shown to be controlled by the shape of associates, with the highest activity demonstrated by thiacalix[4]arenes in partial cone conformation. This complex partial cone/Ag(+) is two times higher than the reference drug imatinib mesylate. High selectivity against cervical carcinoma cell line indicates the prospect of their using as components of new anticancer system.
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spelling pubmed-88797332022-02-26 Structure–Activity Relationship of the Thiacalix[4]arenes Family with Sulfobetaine Fragments: Self-Assembly and Cytotoxic Effect against Cancer Cell Lines Yakimova, Luidmila Kunafina, Aisylu Nugmanova, Aigul Padnya, Pavel Voloshina, Alexandra Petrov, Konstantin Stoikov, Ivan Molecules Article Regulating the structure of macrocyclic host molecules and supramolecular assemblies is crucial because the structure–activity relationship often plays a role in governing the properties of these systems. Herein, we propose and develop an approach to the synthesis of the family of sulfobetaine functionalized thiacalix[4]arenes with regulation of the self-assembly and cytotoxic effect against cancer cell lines. The dynamic light scattering method showed that the synthesized macrocycles in cone, partial cone and 1,3-alternate conformations form submicron-sized particles with Ag(+) in water, but the particle size and polydispersity of the systems studied depend on the macrocycle conformation. Based on the results obtained by (1)H and (1)H-(1)H NOESY NMR spectroscopy and transmission electron microscopy for the macrocycles and their aggregates with Ag(+), a coordination scheme for the Ag(+) and different conformations of p-tert-butylthiacalix[4]arene functionalized with sulfobetaine fragments was proposed. The type of coordination determines the different shapes of the associates. Cytotoxic properties are shown to be controlled by the shape of associates, with the highest activity demonstrated by thiacalix[4]arenes in partial cone conformation. This complex partial cone/Ag(+) is two times higher than the reference drug imatinib mesylate. High selectivity against cervical carcinoma cell line indicates the prospect of their using as components of new anticancer system. MDPI 2022-02-17 /pmc/articles/PMC8879733/ /pubmed/35209152 http://dx.doi.org/10.3390/molecules27041364 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
Yakimova, Luidmila
Kunafina, Aisylu
Nugmanova, Aigul
Padnya, Pavel
Voloshina, Alexandra
Petrov, Konstantin
Stoikov, Ivan
Structure–Activity Relationship of the Thiacalix[4]arenes Family with Sulfobetaine Fragments: Self-Assembly and Cytotoxic Effect against Cancer Cell Lines
title Structure–Activity Relationship of the Thiacalix[4]arenes Family with Sulfobetaine Fragments: Self-Assembly and Cytotoxic Effect against Cancer Cell Lines
title_full Structure–Activity Relationship of the Thiacalix[4]arenes Family with Sulfobetaine Fragments: Self-Assembly and Cytotoxic Effect against Cancer Cell Lines
title_fullStr Structure–Activity Relationship of the Thiacalix[4]arenes Family with Sulfobetaine Fragments: Self-Assembly and Cytotoxic Effect against Cancer Cell Lines
title_full_unstemmed Structure–Activity Relationship of the Thiacalix[4]arenes Family with Sulfobetaine Fragments: Self-Assembly and Cytotoxic Effect against Cancer Cell Lines
title_short Structure–Activity Relationship of the Thiacalix[4]arenes Family with Sulfobetaine Fragments: Self-Assembly and Cytotoxic Effect against Cancer Cell Lines
title_sort structure–activity relationship of the thiacalix[4]arenes family with sulfobetaine fragments: self-assembly and cytotoxic effect against cancer cell lines
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8879733/
https://www.ncbi.nlm.nih.gov/pubmed/35209152
http://dx.doi.org/10.3390/molecules27041364
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