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Functional Polyglycidol-Based Block Copolymers for DNA Complexation

Gene therapy is an attractive therapeutic method for the treatment of genetic disorders for which the efficient delivery of nucleic acids into a target cell is critical. The present study is aimed at evaluating the potential of copolymers based on linear polyglycidol to act as carriers of nucleic ac...

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Autores principales: Kalinova, Radostina, Valchanova, Miroslava, Dimitrov, Ivaylo, Turmanova, Sevdalina, Ugrinova, Iva, Petrova, Maria, Vlahova, Zlatina, Rangelov, Stanislav
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8431755/
https://www.ncbi.nlm.nih.gov/pubmed/34502513
http://dx.doi.org/10.3390/ijms22179606
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author Kalinova, Radostina
Valchanova, Miroslava
Dimitrov, Ivaylo
Turmanova, Sevdalina
Ugrinova, Iva
Petrova, Maria
Vlahova, Zlatina
Rangelov, Stanislav
author_facet Kalinova, Radostina
Valchanova, Miroslava
Dimitrov, Ivaylo
Turmanova, Sevdalina
Ugrinova, Iva
Petrova, Maria
Vlahova, Zlatina
Rangelov, Stanislav
author_sort Kalinova, Radostina
collection PubMed
description Gene therapy is an attractive therapeutic method for the treatment of genetic disorders for which the efficient delivery of nucleic acids into a target cell is critical. The present study is aimed at evaluating the potential of copolymers based on linear polyglycidol to act as carriers of nucleic acids. Functional copolymers with linear polyglycidol as a non-ionic hydrophilic block and a second block bearing amine hydrochloride pendant groups were prepared using previously synthesized poly(allyl glycidyl ether)-b-polyglycidol block copolymers as precursors. The amine functionalities were introduced via highly efficient radical addition of 2-aminoethanethiol hydrochloride to the alkene side groups. The modified copolymers formed loose aggregates with strongly positive surface charge in aqueous media, stabilized by the presence of dodecyl residues at the end of the copolymer structures and the hydrogen-bonding interactions in polyglycidol segments. The copolymer aggregates were able to condense DNA into stable and compact nanosized polyplex particles through electrostatic interactions. The copolymers and the corresponding polyplexes showed low to moderate cytotoxicity on a panel of human cancer cell lines. The cell internalization evaluation demonstrated the capability of the polyplexes to successfully deliver DNA into the cancer cells.
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spelling pubmed-84317552021-09-11 Functional Polyglycidol-Based Block Copolymers for DNA Complexation Kalinova, Radostina Valchanova, Miroslava Dimitrov, Ivaylo Turmanova, Sevdalina Ugrinova, Iva Petrova, Maria Vlahova, Zlatina Rangelov, Stanislav Int J Mol Sci Article Gene therapy is an attractive therapeutic method for the treatment of genetic disorders for which the efficient delivery of nucleic acids into a target cell is critical. The present study is aimed at evaluating the potential of copolymers based on linear polyglycidol to act as carriers of nucleic acids. Functional copolymers with linear polyglycidol as a non-ionic hydrophilic block and a second block bearing amine hydrochloride pendant groups were prepared using previously synthesized poly(allyl glycidyl ether)-b-polyglycidol block copolymers as precursors. The amine functionalities were introduced via highly efficient radical addition of 2-aminoethanethiol hydrochloride to the alkene side groups. The modified copolymers formed loose aggregates with strongly positive surface charge in aqueous media, stabilized by the presence of dodecyl residues at the end of the copolymer structures and the hydrogen-bonding interactions in polyglycidol segments. The copolymer aggregates were able to condense DNA into stable and compact nanosized polyplex particles through electrostatic interactions. The copolymers and the corresponding polyplexes showed low to moderate cytotoxicity on a panel of human cancer cell lines. The cell internalization evaluation demonstrated the capability of the polyplexes to successfully deliver DNA into the cancer cells. MDPI 2021-09-04 /pmc/articles/PMC8431755/ /pubmed/34502513 http://dx.doi.org/10.3390/ijms22179606 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
Kalinova, Radostina
Valchanova, Miroslava
Dimitrov, Ivaylo
Turmanova, Sevdalina
Ugrinova, Iva
Petrova, Maria
Vlahova, Zlatina
Rangelov, Stanislav
Functional Polyglycidol-Based Block Copolymers for DNA Complexation
title Functional Polyglycidol-Based Block Copolymers for DNA Complexation
title_full Functional Polyglycidol-Based Block Copolymers for DNA Complexation
title_fullStr Functional Polyglycidol-Based Block Copolymers for DNA Complexation
title_full_unstemmed Functional Polyglycidol-Based Block Copolymers for DNA Complexation
title_short Functional Polyglycidol-Based Block Copolymers for DNA Complexation
title_sort functional polyglycidol-based block copolymers for dna complexation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8431755/
https://www.ncbi.nlm.nih.gov/pubmed/34502513
http://dx.doi.org/10.3390/ijms22179606
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