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Photocurable Methacrylate Derivatives of Polylactide: A Two-Stage Synthesis in Supercritical Carbon Dioxide and 3D Laser Structuring

A two-stage polylactide modification was performed in the supercritical carbon dioxide medium using the urethane formation reaction. The modification resulted in the synthesis of polymerizable methacrylate derivatives of polylactide for application in the spatial 3D structuring by laser stereolithog...

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Autores principales: Kaplin, Vladislav S., Glagolev, Nikolay N., Shashkova, Valentina T., Matveeva, Irina A., Shershnev, Ilya V., Zarkhina, Tatyana S., Minaev, Nikita V., Aksenova, Nadezhda A., Shavkuta, Boris S., Bezrukov, Evgeny A., Kopylov, Aleksandr S., Kuznetsova, Daria S., Shpichka, Anastasiia I., Timashev, Peter S., Solovieva, Anna B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7692848/
https://www.ncbi.nlm.nih.gov/pubmed/33138125
http://dx.doi.org/10.3390/polym12112525
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author Kaplin, Vladislav S.
Glagolev, Nikolay N.
Shashkova, Valentina T.
Matveeva, Irina A.
Shershnev, Ilya V.
Zarkhina, Tatyana S.
Minaev, Nikita V.
Aksenova, Nadezhda A.
Shavkuta, Boris S.
Bezrukov, Evgeny A.
Kopylov, Aleksandr S.
Kuznetsova, Daria S.
Shpichka, Anastasiia I.
Timashev, Peter S.
Solovieva, Anna B.
author_facet Kaplin, Vladislav S.
Glagolev, Nikolay N.
Shashkova, Valentina T.
Matveeva, Irina A.
Shershnev, Ilya V.
Zarkhina, Tatyana S.
Minaev, Nikita V.
Aksenova, Nadezhda A.
Shavkuta, Boris S.
Bezrukov, Evgeny A.
Kopylov, Aleksandr S.
Kuznetsova, Daria S.
Shpichka, Anastasiia I.
Timashev, Peter S.
Solovieva, Anna B.
author_sort Kaplin, Vladislav S.
collection PubMed
description A two-stage polylactide modification was performed in the supercritical carbon dioxide medium using the urethane formation reaction. The modification resulted in the synthesis of polymerizable methacrylate derivatives of polylactide for application in the spatial 3D structuring by laser stereolithography. The use of the supercritical carbon dioxide medium allowed us to obtain for the first time polymerizable oligomer-polymer systems in the form of dry powders convenient for further application in the preparation of polymer compositions for photocuring. The photocuring of the modified polymers was performed by laser stereolithography and two-photon crosslinking. Using nanoindentation, we found that Young’s modulus of the cured compositions corresponded to the standard characteristics of implants applied in regenerative medicine. As shown by thermogravimetric analysis, the degree of crosslinking and, hence, the local stiffness of scaffolds were determined by the amount of the crosslinking agent and the photocuring regime. No cytotoxicity was observed for the structures.
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spelling pubmed-76928482020-11-28 Photocurable Methacrylate Derivatives of Polylactide: A Two-Stage Synthesis in Supercritical Carbon Dioxide and 3D Laser Structuring Kaplin, Vladislav S. Glagolev, Nikolay N. Shashkova, Valentina T. Matveeva, Irina A. Shershnev, Ilya V. Zarkhina, Tatyana S. Minaev, Nikita V. Aksenova, Nadezhda A. Shavkuta, Boris S. Bezrukov, Evgeny A. Kopylov, Aleksandr S. Kuznetsova, Daria S. Shpichka, Anastasiia I. Timashev, Peter S. Solovieva, Anna B. Polymers (Basel) Article A two-stage polylactide modification was performed in the supercritical carbon dioxide medium using the urethane formation reaction. The modification resulted in the synthesis of polymerizable methacrylate derivatives of polylactide for application in the spatial 3D structuring by laser stereolithography. The use of the supercritical carbon dioxide medium allowed us to obtain for the first time polymerizable oligomer-polymer systems in the form of dry powders convenient for further application in the preparation of polymer compositions for photocuring. The photocuring of the modified polymers was performed by laser stereolithography and two-photon crosslinking. Using nanoindentation, we found that Young’s modulus of the cured compositions corresponded to the standard characteristics of implants applied in regenerative medicine. As shown by thermogravimetric analysis, the degree of crosslinking and, hence, the local stiffness of scaffolds were determined by the amount of the crosslinking agent and the photocuring regime. No cytotoxicity was observed for the structures. MDPI 2020-10-29 /pmc/articles/PMC7692848/ /pubmed/33138125 http://dx.doi.org/10.3390/polym12112525 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kaplin, Vladislav S.
Glagolev, Nikolay N.
Shashkova, Valentina T.
Matveeva, Irina A.
Shershnev, Ilya V.
Zarkhina, Tatyana S.
Minaev, Nikita V.
Aksenova, Nadezhda A.
Shavkuta, Boris S.
Bezrukov, Evgeny A.
Kopylov, Aleksandr S.
Kuznetsova, Daria S.
Shpichka, Anastasiia I.
Timashev, Peter S.
Solovieva, Anna B.
Photocurable Methacrylate Derivatives of Polylactide: A Two-Stage Synthesis in Supercritical Carbon Dioxide and 3D Laser Structuring
title Photocurable Methacrylate Derivatives of Polylactide: A Two-Stage Synthesis in Supercritical Carbon Dioxide and 3D Laser Structuring
title_full Photocurable Methacrylate Derivatives of Polylactide: A Two-Stage Synthesis in Supercritical Carbon Dioxide and 3D Laser Structuring
title_fullStr Photocurable Methacrylate Derivatives of Polylactide: A Two-Stage Synthesis in Supercritical Carbon Dioxide and 3D Laser Structuring
title_full_unstemmed Photocurable Methacrylate Derivatives of Polylactide: A Two-Stage Synthesis in Supercritical Carbon Dioxide and 3D Laser Structuring
title_short Photocurable Methacrylate Derivatives of Polylactide: A Two-Stage Synthesis in Supercritical Carbon Dioxide and 3D Laser Structuring
title_sort photocurable methacrylate derivatives of polylactide: a two-stage synthesis in supercritical carbon dioxide and 3d laser structuring
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7692848/
https://www.ncbi.nlm.nih.gov/pubmed/33138125
http://dx.doi.org/10.3390/polym12112525
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