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Influence of Hydrophobic Side-Chain Length in Amphiphilic Gradient Copoly(2-oxazoline)s on the Therapeutics Loading, Stability, Cellular Uptake and Pharmacokinetics of Nano-Formulation with Curcumin

Due to the simple one-step preparation method and a promising application in biomedical research, amphiphilic gradient copoly(2-oxazoline)s are gaining more and more interest compared to their analogous block copolymers. In this work, the curcumin solubilization ability was tested for a series of am...

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Autores principales: Datta, Shubhashis, Huntošová, Veronika, Jutková, Annamária, Seliga, Róbert, Kronek, Juraj, Tomkova, Adriána, Lenkavská, Lenka, Máčajová, Mariana, Bilčík, Boris, Kundeková, Barbora, Čavarga, Ivan, Pavlova, Ewa, Šlouf, Miroslav, Miškovský, Pavol, Jancura, Daniel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9781838/
https://www.ncbi.nlm.nih.gov/pubmed/36559069
http://dx.doi.org/10.3390/pharmaceutics14122576
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author Datta, Shubhashis
Huntošová, Veronika
Jutková, Annamária
Seliga, Róbert
Kronek, Juraj
Tomkova, Adriána
Lenkavská, Lenka
Máčajová, Mariana
Bilčík, Boris
Kundeková, Barbora
Čavarga, Ivan
Pavlova, Ewa
Šlouf, Miroslav
Miškovský, Pavol
Jancura, Daniel
author_facet Datta, Shubhashis
Huntošová, Veronika
Jutková, Annamária
Seliga, Róbert
Kronek, Juraj
Tomkova, Adriána
Lenkavská, Lenka
Máčajová, Mariana
Bilčík, Boris
Kundeková, Barbora
Čavarga, Ivan
Pavlova, Ewa
Šlouf, Miroslav
Miškovský, Pavol
Jancura, Daniel
author_sort Datta, Shubhashis
collection PubMed
description Due to the simple one-step preparation method and a promising application in biomedical research, amphiphilic gradient copoly(2-oxazoline)s are gaining more and more interest compared to their analogous block copolymers. In this work, the curcumin solubilization ability was tested for a series of amphiphilic gradient copoly(2-oxazoline)s with different lengths of hydrophobic side-chains, consisting of 2-ethyl-2-oxazoline as a hydrophilic monomer and 2-(4-alkyloxyphenyl)-2-oxazoline as a hydrophobic monomer. It is shown that the length of the hydrophobic side-chain in the copolymers plays a crucial role in the loading of curcumin onto the self-assembled nanoparticles. The kinetic stability of self-assembled nanoparticles studied using FRET shows a link between their integrity and cellular uptake in human glioblastoma cells. The present study demonstrates how minor changes in the molecular structure of gradient copoly(2-oxazoline)s can lead to significant differences in the loading, stability, cytotoxicity, cellular uptake, and pharmacokinetics of nano-formulations containing curcumin. The obtained results on the behavior of the complex of gradient copoly(2-oxazoline)s and curcumin may contribute to the development of effective next-generation polymeric nanostructures for biomedical applications.
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spelling pubmed-97818382022-12-24 Influence of Hydrophobic Side-Chain Length in Amphiphilic Gradient Copoly(2-oxazoline)s on the Therapeutics Loading, Stability, Cellular Uptake and Pharmacokinetics of Nano-Formulation with Curcumin Datta, Shubhashis Huntošová, Veronika Jutková, Annamária Seliga, Róbert Kronek, Juraj Tomkova, Adriána Lenkavská, Lenka Máčajová, Mariana Bilčík, Boris Kundeková, Barbora Čavarga, Ivan Pavlova, Ewa Šlouf, Miroslav Miškovský, Pavol Jancura, Daniel Pharmaceutics Article Due to the simple one-step preparation method and a promising application in biomedical research, amphiphilic gradient copoly(2-oxazoline)s are gaining more and more interest compared to their analogous block copolymers. In this work, the curcumin solubilization ability was tested for a series of amphiphilic gradient copoly(2-oxazoline)s with different lengths of hydrophobic side-chains, consisting of 2-ethyl-2-oxazoline as a hydrophilic monomer and 2-(4-alkyloxyphenyl)-2-oxazoline as a hydrophobic monomer. It is shown that the length of the hydrophobic side-chain in the copolymers plays a crucial role in the loading of curcumin onto the self-assembled nanoparticles. The kinetic stability of self-assembled nanoparticles studied using FRET shows a link between their integrity and cellular uptake in human glioblastoma cells. The present study demonstrates how minor changes in the molecular structure of gradient copoly(2-oxazoline)s can lead to significant differences in the loading, stability, cytotoxicity, cellular uptake, and pharmacokinetics of nano-formulations containing curcumin. The obtained results on the behavior of the complex of gradient copoly(2-oxazoline)s and curcumin may contribute to the development of effective next-generation polymeric nanostructures for biomedical applications. MDPI 2022-11-23 /pmc/articles/PMC9781838/ /pubmed/36559069 http://dx.doi.org/10.3390/pharmaceutics14122576 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
Datta, Shubhashis
Huntošová, Veronika
Jutková, Annamária
Seliga, Róbert
Kronek, Juraj
Tomkova, Adriána
Lenkavská, Lenka
Máčajová, Mariana
Bilčík, Boris
Kundeková, Barbora
Čavarga, Ivan
Pavlova, Ewa
Šlouf, Miroslav
Miškovský, Pavol
Jancura, Daniel
Influence of Hydrophobic Side-Chain Length in Amphiphilic Gradient Copoly(2-oxazoline)s on the Therapeutics Loading, Stability, Cellular Uptake and Pharmacokinetics of Nano-Formulation with Curcumin
title Influence of Hydrophobic Side-Chain Length in Amphiphilic Gradient Copoly(2-oxazoline)s on the Therapeutics Loading, Stability, Cellular Uptake and Pharmacokinetics of Nano-Formulation with Curcumin
title_full Influence of Hydrophobic Side-Chain Length in Amphiphilic Gradient Copoly(2-oxazoline)s on the Therapeutics Loading, Stability, Cellular Uptake and Pharmacokinetics of Nano-Formulation with Curcumin
title_fullStr Influence of Hydrophobic Side-Chain Length in Amphiphilic Gradient Copoly(2-oxazoline)s on the Therapeutics Loading, Stability, Cellular Uptake and Pharmacokinetics of Nano-Formulation with Curcumin
title_full_unstemmed Influence of Hydrophobic Side-Chain Length in Amphiphilic Gradient Copoly(2-oxazoline)s on the Therapeutics Loading, Stability, Cellular Uptake and Pharmacokinetics of Nano-Formulation with Curcumin
title_short Influence of Hydrophobic Side-Chain Length in Amphiphilic Gradient Copoly(2-oxazoline)s on the Therapeutics Loading, Stability, Cellular Uptake and Pharmacokinetics of Nano-Formulation with Curcumin
title_sort influence of hydrophobic side-chain length in amphiphilic gradient copoly(2-oxazoline)s on the therapeutics loading, stability, cellular uptake and pharmacokinetics of nano-formulation with curcumin
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9781838/
https://www.ncbi.nlm.nih.gov/pubmed/36559069
http://dx.doi.org/10.3390/pharmaceutics14122576
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