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Nano-Assemblies from Amphiphilic PnBA-b-POEGA Copolymers as Drug Nanocarriers

The focus of this study is the development of highly stable losartan potassium (LSR) polymeric nanocarriers. Two novel amphiphilic poly(n-butyl acrylate)-block-poly(oligo(ethylene glycol) methyl ether acrylate) (PnBA-b-POEGA) copolymers with different molecular weight (M(w)) of PnBA are synthesized...

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Autores principales: Chroni, Angeliki, Mavromoustakos, Thomas, Pispas, Stergios
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8038588/
https://www.ncbi.nlm.nih.gov/pubmed/33916421
http://dx.doi.org/10.3390/polym13071164
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author Chroni, Angeliki
Mavromoustakos, Thomas
Pispas, Stergios
author_facet Chroni, Angeliki
Mavromoustakos, Thomas
Pispas, Stergios
author_sort Chroni, Angeliki
collection PubMed
description The focus of this study is the development of highly stable losartan potassium (LSR) polymeric nanocarriers. Two novel amphiphilic poly(n-butyl acrylate)-block-poly(oligo(ethylene glycol) methyl ether acrylate) (PnBA-b-POEGA) copolymers with different molecular weight (M(w)) of PnBA are synthesized via reversible addition fragmentation chain transfer (RAFT) polymerization, followed by the encapsulation of LSR into both PnBA-b-POEGA micelles. Based on dynamic light scattering (DLS), the PnBA(30)-b-POEGA(70) and PnBA(27)-b-POEGA(73) (where the subscripts denote wt.% composition of the components) copolymers formed micelles of 10 nm and 24 nm in water. The LSR-loaded PnBA-b-POEGA nanocarriers presented increased size and greater mass nanostructures compared to empty micelles, implying the successful loading of LSR into the inner hydrophobic domains. A thorough NMR (nuclear magnetic resonance) characterization of the LSR-loaded PnBA-b-POEGA nanocarriers was conducted. Strong intermolecular interactions between the biphenyl ring and the butyl chain of LSR with the methylene signals of PnBA were evidenced by 2D-NOESY experiments. The highest hydrophobicity of the PnBA(27)-b-POEGA(73) micelles contributed to an efficient encapsulation of LSR into the micelles exhibiting a greater value of %EE compared to PnBA(30)-b-POEGA(70) + 50% LSR nanocarriers. Ultrasound release profiles of LSR signified that a great amount of the encapsulated LSR is strongly attached to both PnBA(30)-b-POEGA(70) and PnBA(27)-b-POEGA(73) micelles.
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spelling pubmed-80385882021-04-12 Nano-Assemblies from Amphiphilic PnBA-b-POEGA Copolymers as Drug Nanocarriers Chroni, Angeliki Mavromoustakos, Thomas Pispas, Stergios Polymers (Basel) Article The focus of this study is the development of highly stable losartan potassium (LSR) polymeric nanocarriers. Two novel amphiphilic poly(n-butyl acrylate)-block-poly(oligo(ethylene glycol) methyl ether acrylate) (PnBA-b-POEGA) copolymers with different molecular weight (M(w)) of PnBA are synthesized via reversible addition fragmentation chain transfer (RAFT) polymerization, followed by the encapsulation of LSR into both PnBA-b-POEGA micelles. Based on dynamic light scattering (DLS), the PnBA(30)-b-POEGA(70) and PnBA(27)-b-POEGA(73) (where the subscripts denote wt.% composition of the components) copolymers formed micelles of 10 nm and 24 nm in water. The LSR-loaded PnBA-b-POEGA nanocarriers presented increased size and greater mass nanostructures compared to empty micelles, implying the successful loading of LSR into the inner hydrophobic domains. A thorough NMR (nuclear magnetic resonance) characterization of the LSR-loaded PnBA-b-POEGA nanocarriers was conducted. Strong intermolecular interactions between the biphenyl ring and the butyl chain of LSR with the methylene signals of PnBA were evidenced by 2D-NOESY experiments. The highest hydrophobicity of the PnBA(27)-b-POEGA(73) micelles contributed to an efficient encapsulation of LSR into the micelles exhibiting a greater value of %EE compared to PnBA(30)-b-POEGA(70) + 50% LSR nanocarriers. Ultrasound release profiles of LSR signified that a great amount of the encapsulated LSR is strongly attached to both PnBA(30)-b-POEGA(70) and PnBA(27)-b-POEGA(73) micelles. MDPI 2021-04-05 /pmc/articles/PMC8038588/ /pubmed/33916421 http://dx.doi.org/10.3390/polym13071164 Text en © 2021 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
Chroni, Angeliki
Mavromoustakos, Thomas
Pispas, Stergios
Nano-Assemblies from Amphiphilic PnBA-b-POEGA Copolymers as Drug Nanocarriers
title Nano-Assemblies from Amphiphilic PnBA-b-POEGA Copolymers as Drug Nanocarriers
title_full Nano-Assemblies from Amphiphilic PnBA-b-POEGA Copolymers as Drug Nanocarriers
title_fullStr Nano-Assemblies from Amphiphilic PnBA-b-POEGA Copolymers as Drug Nanocarriers
title_full_unstemmed Nano-Assemblies from Amphiphilic PnBA-b-POEGA Copolymers as Drug Nanocarriers
title_short Nano-Assemblies from Amphiphilic PnBA-b-POEGA Copolymers as Drug Nanocarriers
title_sort nano-assemblies from amphiphilic pnba-b-poega copolymers as drug nanocarriers
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8038588/
https://www.ncbi.nlm.nih.gov/pubmed/33916421
http://dx.doi.org/10.3390/polym13071164
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