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Conformational Parameters and Hydrodynamic Behavior of Poly(2-Methyl-2-Oxazoline) in a Broad Molar Mass Range

In this work, we report our results on the hydrodynamic behavior of poly(2-methyl-2-oxazoline) (PMeOx). PMeOx is gaining significant attention for use as hydrophilic polymer in pharmaceutical carriers as an alternative for the commonly used poly(ethylene glycol) (PEG), for which antibodies are found...

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Autores principales: Gubarev, Alexander S., Lezov, Alexey A., Podsevalnikova, Anna N., Mikusheva, Nina G., Fetin, Petr A., Zorin, Ivan M., Aseyev, Vladimir O., Sedlacek, Ondrej, Hoogenboom, Richard, Tsvetkov, Nikolai V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9921015/
https://www.ncbi.nlm.nih.gov/pubmed/36771924
http://dx.doi.org/10.3390/polym15030623
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author Gubarev, Alexander S.
Lezov, Alexey A.
Podsevalnikova, Anna N.
Mikusheva, Nina G.
Fetin, Petr A.
Zorin, Ivan M.
Aseyev, Vladimir O.
Sedlacek, Ondrej
Hoogenboom, Richard
Tsvetkov, Nikolai V.
author_facet Gubarev, Alexander S.
Lezov, Alexey A.
Podsevalnikova, Anna N.
Mikusheva, Nina G.
Fetin, Petr A.
Zorin, Ivan M.
Aseyev, Vladimir O.
Sedlacek, Ondrej
Hoogenboom, Richard
Tsvetkov, Nikolai V.
author_sort Gubarev, Alexander S.
collection PubMed
description In this work, we report our results on the hydrodynamic behavior of poly(2-methyl-2-oxazoline) (PMeOx). PMeOx is gaining significant attention for use as hydrophilic polymer in pharmaceutical carriers as an alternative for the commonly used poly(ethylene glycol) (PEG), for which antibodies are found in a significant fraction of the human population. The main focus of the current study is to determine the hydrodynamic characteristics of PMeOx under physiological conditions, which serves as basis for better understanding of the use of PMeOx in pharmaceutical applications. This goal was achieved by studying PMeOx solutions in phosphate-buffered saline (PBS) as a solvent at 37 °C. This study was performed based on two series of PMeOx samples; one series is synthesized by conventional living cationic ring-opening polymerization, which is limited by the maximum chain length that can be achieved, and a second series is obtained by an alternative synthesis strategy based on acetylation of well-defined linear poly(ethylene imine) (PEI) prepared by controlled side-chain hydrolysis of a defined high molar mass of poly(2-ethyl-2-oxazoline). The combination of these two series of PMeOx allowed the determination of the Kuhn–Mark–Houwink–Sakurada equations in a broad molar mass range. For intrinsic viscosity, sedimentation and diffusion coefficients, the following expressions were obtained: [Formula: see text] , [Formula: see text] and [Formula: see text] , respectively. As a result, it can be concluded that the phosphate-buffered saline buffer at 37 °C represents a thermodynamically good solvent for PMeOx, based on the scaling indices of the equations. The conformational parameters for PMeOx chains were also determined, revealing an equilibrium rigidity or Kuhn segment length, (A) of 1.7 nm and a polymer chain diameter (d) of 0.4 nm. The obtained value for the equilibrium rigidity is very similar to the reported values for other hydrophilic polymers, such as PEG, poly(vinylpyrrolidone) and poly(2-ethyl-2-oxazoline), making PMeOx a relevant alternative to PEG.
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spelling pubmed-99210152023-02-12 Conformational Parameters and Hydrodynamic Behavior of Poly(2-Methyl-2-Oxazoline) in a Broad Molar Mass Range Gubarev, Alexander S. Lezov, Alexey A. Podsevalnikova, Anna N. Mikusheva, Nina G. Fetin, Petr A. Zorin, Ivan M. Aseyev, Vladimir O. Sedlacek, Ondrej Hoogenboom, Richard Tsvetkov, Nikolai V. Polymers (Basel) Article In this work, we report our results on the hydrodynamic behavior of poly(2-methyl-2-oxazoline) (PMeOx). PMeOx is gaining significant attention for use as hydrophilic polymer in pharmaceutical carriers as an alternative for the commonly used poly(ethylene glycol) (PEG), for which antibodies are found in a significant fraction of the human population. The main focus of the current study is to determine the hydrodynamic characteristics of PMeOx under physiological conditions, which serves as basis for better understanding of the use of PMeOx in pharmaceutical applications. This goal was achieved by studying PMeOx solutions in phosphate-buffered saline (PBS) as a solvent at 37 °C. This study was performed based on two series of PMeOx samples; one series is synthesized by conventional living cationic ring-opening polymerization, which is limited by the maximum chain length that can be achieved, and a second series is obtained by an alternative synthesis strategy based on acetylation of well-defined linear poly(ethylene imine) (PEI) prepared by controlled side-chain hydrolysis of a defined high molar mass of poly(2-ethyl-2-oxazoline). The combination of these two series of PMeOx allowed the determination of the Kuhn–Mark–Houwink–Sakurada equations in a broad molar mass range. For intrinsic viscosity, sedimentation and diffusion coefficients, the following expressions were obtained: [Formula: see text] , [Formula: see text] and [Formula: see text] , respectively. As a result, it can be concluded that the phosphate-buffered saline buffer at 37 °C represents a thermodynamically good solvent for PMeOx, based on the scaling indices of the equations. The conformational parameters for PMeOx chains were also determined, revealing an equilibrium rigidity or Kuhn segment length, (A) of 1.7 nm and a polymer chain diameter (d) of 0.4 nm. The obtained value for the equilibrium rigidity is very similar to the reported values for other hydrophilic polymers, such as PEG, poly(vinylpyrrolidone) and poly(2-ethyl-2-oxazoline), making PMeOx a relevant alternative to PEG. MDPI 2023-01-25 /pmc/articles/PMC9921015/ /pubmed/36771924 http://dx.doi.org/10.3390/polym15030623 Text en © 2023 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
Gubarev, Alexander S.
Lezov, Alexey A.
Podsevalnikova, Anna N.
Mikusheva, Nina G.
Fetin, Petr A.
Zorin, Ivan M.
Aseyev, Vladimir O.
Sedlacek, Ondrej
Hoogenboom, Richard
Tsvetkov, Nikolai V.
Conformational Parameters and Hydrodynamic Behavior of Poly(2-Methyl-2-Oxazoline) in a Broad Molar Mass Range
title Conformational Parameters and Hydrodynamic Behavior of Poly(2-Methyl-2-Oxazoline) in a Broad Molar Mass Range
title_full Conformational Parameters and Hydrodynamic Behavior of Poly(2-Methyl-2-Oxazoline) in a Broad Molar Mass Range
title_fullStr Conformational Parameters and Hydrodynamic Behavior of Poly(2-Methyl-2-Oxazoline) in a Broad Molar Mass Range
title_full_unstemmed Conformational Parameters and Hydrodynamic Behavior of Poly(2-Methyl-2-Oxazoline) in a Broad Molar Mass Range
title_short Conformational Parameters and Hydrodynamic Behavior of Poly(2-Methyl-2-Oxazoline) in a Broad Molar Mass Range
title_sort conformational parameters and hydrodynamic behavior of poly(2-methyl-2-oxazoline) in a broad molar mass range
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9921015/
https://www.ncbi.nlm.nih.gov/pubmed/36771924
http://dx.doi.org/10.3390/polym15030623
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