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Fluorescein-Labeled Thiacalix[4]arenes as Potential Theranostic Molecules: Synthesis, Self-Association, and Antitumor Activity

In this paper, a series of thiacalix[4]arenes were synthesized as potential theranostic molecules for antitumor therapy. We propose an original strategy for the regioselective functionalization of thiacalix[4]arene with a fluorescent label to obtain antiangiogenic agent mimetics. The aggregation pro...

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Autores principales: Akhmedov, Alan, Terenteva, Olga, Subakaeva, Evgenia, Zelenikhin, Pavel, Shurpik, Ramilia, Shurpik, Dmitriy, Padnya, Pavel, Stoikov, Ivan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9697307/
https://www.ncbi.nlm.nih.gov/pubmed/36365158
http://dx.doi.org/10.3390/pharmaceutics14112340
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author Akhmedov, Alan
Terenteva, Olga
Subakaeva, Evgenia
Zelenikhin, Pavel
Shurpik, Ramilia
Shurpik, Dmitriy
Padnya, Pavel
Stoikov, Ivan
author_facet Akhmedov, Alan
Terenteva, Olga
Subakaeva, Evgenia
Zelenikhin, Pavel
Shurpik, Ramilia
Shurpik, Dmitriy
Padnya, Pavel
Stoikov, Ivan
author_sort Akhmedov, Alan
collection PubMed
description In this paper, a series of thiacalix[4]arenes were synthesized as potential theranostic molecules for antitumor therapy. We propose an original strategy for the regioselective functionalization of thiacalix[4]arene with a fluorescent label to obtain antiangiogenic agent mimetics. The aggregation properties of the synthesized compounds were determined using the dynamic light scattering. The average hydrodynamic diameter of self-associates formed by the macrocycles in 1,3-alternate conformation is larger (277–323 nm) than that of the similar macrocycle in cone conformation (185–262 nm). The cytotoxic action mechanism of the obtained compounds and their ability to penetrate into of human lung adenocarcinoma and human duodenal adenocarcinoma cells were established using the MTT-test and flow cytometry. thiacalix[4]arenes in 1,3-alternate conformation did not have a strong toxic effect. The toxicity of macrocycles in cone conformations on HuTu-80 and A549 cells (IC(50) = 21.83–49.11 µg/mL) is shown. The resulting macrocycles are potential theranostic molecules that combine both the pharmacophore fragment for neoplasmas treatment and the fluorescent fragment for monitoring the delivery and biodistribution of nanomedicines.
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spelling pubmed-96973072022-11-26 Fluorescein-Labeled Thiacalix[4]arenes as Potential Theranostic Molecules: Synthesis, Self-Association, and Antitumor Activity Akhmedov, Alan Terenteva, Olga Subakaeva, Evgenia Zelenikhin, Pavel Shurpik, Ramilia Shurpik, Dmitriy Padnya, Pavel Stoikov, Ivan Pharmaceutics Article In this paper, a series of thiacalix[4]arenes were synthesized as potential theranostic molecules for antitumor therapy. We propose an original strategy for the regioselective functionalization of thiacalix[4]arene with a fluorescent label to obtain antiangiogenic agent mimetics. The aggregation properties of the synthesized compounds were determined using the dynamic light scattering. The average hydrodynamic diameter of self-associates formed by the macrocycles in 1,3-alternate conformation is larger (277–323 nm) than that of the similar macrocycle in cone conformation (185–262 nm). The cytotoxic action mechanism of the obtained compounds and their ability to penetrate into of human lung adenocarcinoma and human duodenal adenocarcinoma cells were established using the MTT-test and flow cytometry. thiacalix[4]arenes in 1,3-alternate conformation did not have a strong toxic effect. The toxicity of macrocycles in cone conformations on HuTu-80 and A549 cells (IC(50) = 21.83–49.11 µg/mL) is shown. The resulting macrocycles are potential theranostic molecules that combine both the pharmacophore fragment for neoplasmas treatment and the fluorescent fragment for monitoring the delivery and biodistribution of nanomedicines. MDPI 2022-10-30 /pmc/articles/PMC9697307/ /pubmed/36365158 http://dx.doi.org/10.3390/pharmaceutics14112340 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
Akhmedov, Alan
Terenteva, Olga
Subakaeva, Evgenia
Zelenikhin, Pavel
Shurpik, Ramilia
Shurpik, Dmitriy
Padnya, Pavel
Stoikov, Ivan
Fluorescein-Labeled Thiacalix[4]arenes as Potential Theranostic Molecules: Synthesis, Self-Association, and Antitumor Activity
title Fluorescein-Labeled Thiacalix[4]arenes as Potential Theranostic Molecules: Synthesis, Self-Association, and Antitumor Activity
title_full Fluorescein-Labeled Thiacalix[4]arenes as Potential Theranostic Molecules: Synthesis, Self-Association, and Antitumor Activity
title_fullStr Fluorescein-Labeled Thiacalix[4]arenes as Potential Theranostic Molecules: Synthesis, Self-Association, and Antitumor Activity
title_full_unstemmed Fluorescein-Labeled Thiacalix[4]arenes as Potential Theranostic Molecules: Synthesis, Self-Association, and Antitumor Activity
title_short Fluorescein-Labeled Thiacalix[4]arenes as Potential Theranostic Molecules: Synthesis, Self-Association, and Antitumor Activity
title_sort fluorescein-labeled thiacalix[4]arenes as potential theranostic molecules: synthesis, self-association, and antitumor activity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9697307/
https://www.ncbi.nlm.nih.gov/pubmed/36365158
http://dx.doi.org/10.3390/pharmaceutics14112340
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