Cargando…

A Comprehensive Investigation of the Structural, Thermal, and Biological Properties of Fully Randomized Biomedical Polyesters Synthesized with a Nontoxic Bismuth(III) Catalyst

Aliphatic polyesters are the most common type of biodegradable synthetic polymer used in many pharmaceutical applications nowadays. This report describes the ring-opening polymerization (ROP) of l-lactide (L-LA), ε-caprolactone (CL) and glycolide (Gly) in the presence of a simple, inexpensive and co...

Descripción completa

Detalles Bibliográficos
Autores principales: Domańska, Izabela M., Zgadzaj, Anna, Kowalczyk, Sebastian, Zalewska, Aldona, Oledzka, Ewa, Cieśla, Krystyna, Plichta, Andrzej, Sobczak, Marcin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8840241/
https://www.ncbi.nlm.nih.gov/pubmed/35164403
http://dx.doi.org/10.3390/molecules27031139
_version_ 1784650571718852608
author Domańska, Izabela M.
Zgadzaj, Anna
Kowalczyk, Sebastian
Zalewska, Aldona
Oledzka, Ewa
Cieśla, Krystyna
Plichta, Andrzej
Sobczak, Marcin
author_facet Domańska, Izabela M.
Zgadzaj, Anna
Kowalczyk, Sebastian
Zalewska, Aldona
Oledzka, Ewa
Cieśla, Krystyna
Plichta, Andrzej
Sobczak, Marcin
author_sort Domańska, Izabela M.
collection PubMed
description Aliphatic polyesters are the most common type of biodegradable synthetic polymer used in many pharmaceutical applications nowadays. This report describes the ring-opening polymerization (ROP) of l-lactide (L-LA), ε-caprolactone (CL) and glycolide (Gly) in the presence of a simple, inexpensive and convenient PEG200-BiOct(3) catalytic system. The chemical structures of the obtained copolymers were characterized by (1)H- or (13)C-NMR. GPC was used to estimate the average molecular weight of the resulting polyesters, whereas TGA and DSC were employed to determine the thermal properties of polymeric products. The effects of temperature, reaction time, and catalyst content on the polymerization process were investigated. Importantly, the obtained polyesters were not cyto- or genotoxic, which is significant in terms of the potential for medical applications (e.g., for drug delivery systems). As a result of transesterification, the copolymers obtained had a random distribution of comonomer units along the polymer chain. The thermal analysis indicated an amorphous nature of poly(l-lactide-co-ε-caprolactone) (PLACL) and a low degree of crystallinity of poly(ε-caprolactone-co-glycolide) (PCLGA, X(c) = 15.1%), in accordance with the microstructures with random distributions and short sequences of comonomer units (l = 1.02–2.82). Significant differences in reactivity were observed among comonomers, confirming preferential ring opening of L-LA during the copolymerization process.
format Online
Article
Text
id pubmed-8840241
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-88402412022-02-13 A Comprehensive Investigation of the Structural, Thermal, and Biological Properties of Fully Randomized Biomedical Polyesters Synthesized with a Nontoxic Bismuth(III) Catalyst Domańska, Izabela M. Zgadzaj, Anna Kowalczyk, Sebastian Zalewska, Aldona Oledzka, Ewa Cieśla, Krystyna Plichta, Andrzej Sobczak, Marcin Molecules Article Aliphatic polyesters are the most common type of biodegradable synthetic polymer used in many pharmaceutical applications nowadays. This report describes the ring-opening polymerization (ROP) of l-lactide (L-LA), ε-caprolactone (CL) and glycolide (Gly) in the presence of a simple, inexpensive and convenient PEG200-BiOct(3) catalytic system. The chemical structures of the obtained copolymers were characterized by (1)H- or (13)C-NMR. GPC was used to estimate the average molecular weight of the resulting polyesters, whereas TGA and DSC were employed to determine the thermal properties of polymeric products. The effects of temperature, reaction time, and catalyst content on the polymerization process were investigated. Importantly, the obtained polyesters were not cyto- or genotoxic, which is significant in terms of the potential for medical applications (e.g., for drug delivery systems). As a result of transesterification, the copolymers obtained had a random distribution of comonomer units along the polymer chain. The thermal analysis indicated an amorphous nature of poly(l-lactide-co-ε-caprolactone) (PLACL) and a low degree of crystallinity of poly(ε-caprolactone-co-glycolide) (PCLGA, X(c) = 15.1%), in accordance with the microstructures with random distributions and short sequences of comonomer units (l = 1.02–2.82). Significant differences in reactivity were observed among comonomers, confirming preferential ring opening of L-LA during the copolymerization process. MDPI 2022-02-08 /pmc/articles/PMC8840241/ /pubmed/35164403 http://dx.doi.org/10.3390/molecules27031139 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
Domańska, Izabela M.
Zgadzaj, Anna
Kowalczyk, Sebastian
Zalewska, Aldona
Oledzka, Ewa
Cieśla, Krystyna
Plichta, Andrzej
Sobczak, Marcin
A Comprehensive Investigation of the Structural, Thermal, and Biological Properties of Fully Randomized Biomedical Polyesters Synthesized with a Nontoxic Bismuth(III) Catalyst
title A Comprehensive Investigation of the Structural, Thermal, and Biological Properties of Fully Randomized Biomedical Polyesters Synthesized with a Nontoxic Bismuth(III) Catalyst
title_full A Comprehensive Investigation of the Structural, Thermal, and Biological Properties of Fully Randomized Biomedical Polyesters Synthesized with a Nontoxic Bismuth(III) Catalyst
title_fullStr A Comprehensive Investigation of the Structural, Thermal, and Biological Properties of Fully Randomized Biomedical Polyesters Synthesized with a Nontoxic Bismuth(III) Catalyst
title_full_unstemmed A Comprehensive Investigation of the Structural, Thermal, and Biological Properties of Fully Randomized Biomedical Polyesters Synthesized with a Nontoxic Bismuth(III) Catalyst
title_short A Comprehensive Investigation of the Structural, Thermal, and Biological Properties of Fully Randomized Biomedical Polyesters Synthesized with a Nontoxic Bismuth(III) Catalyst
title_sort comprehensive investigation of the structural, thermal, and biological properties of fully randomized biomedical polyesters synthesized with a nontoxic bismuth(iii) catalyst
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8840241/
https://www.ncbi.nlm.nih.gov/pubmed/35164403
http://dx.doi.org/10.3390/molecules27031139
work_keys_str_mv AT domanskaizabelam acomprehensiveinvestigationofthestructuralthermalandbiologicalpropertiesoffullyrandomizedbiomedicalpolyesterssynthesizedwithanontoxicbismuthiiicatalyst
AT zgadzajanna acomprehensiveinvestigationofthestructuralthermalandbiologicalpropertiesoffullyrandomizedbiomedicalpolyesterssynthesizedwithanontoxicbismuthiiicatalyst
AT kowalczyksebastian acomprehensiveinvestigationofthestructuralthermalandbiologicalpropertiesoffullyrandomizedbiomedicalpolyesterssynthesizedwithanontoxicbismuthiiicatalyst
AT zalewskaaldona acomprehensiveinvestigationofthestructuralthermalandbiologicalpropertiesoffullyrandomizedbiomedicalpolyesterssynthesizedwithanontoxicbismuthiiicatalyst
AT oledzkaewa acomprehensiveinvestigationofthestructuralthermalandbiologicalpropertiesoffullyrandomizedbiomedicalpolyesterssynthesizedwithanontoxicbismuthiiicatalyst
AT cieslakrystyna acomprehensiveinvestigationofthestructuralthermalandbiologicalpropertiesoffullyrandomizedbiomedicalpolyesterssynthesizedwithanontoxicbismuthiiicatalyst
AT plichtaandrzej acomprehensiveinvestigationofthestructuralthermalandbiologicalpropertiesoffullyrandomizedbiomedicalpolyesterssynthesizedwithanontoxicbismuthiiicatalyst
AT sobczakmarcin acomprehensiveinvestigationofthestructuralthermalandbiologicalpropertiesoffullyrandomizedbiomedicalpolyesterssynthesizedwithanontoxicbismuthiiicatalyst
AT domanskaizabelam comprehensiveinvestigationofthestructuralthermalandbiologicalpropertiesoffullyrandomizedbiomedicalpolyesterssynthesizedwithanontoxicbismuthiiicatalyst
AT zgadzajanna comprehensiveinvestigationofthestructuralthermalandbiologicalpropertiesoffullyrandomizedbiomedicalpolyesterssynthesizedwithanontoxicbismuthiiicatalyst
AT kowalczyksebastian comprehensiveinvestigationofthestructuralthermalandbiologicalpropertiesoffullyrandomizedbiomedicalpolyesterssynthesizedwithanontoxicbismuthiiicatalyst
AT zalewskaaldona comprehensiveinvestigationofthestructuralthermalandbiologicalpropertiesoffullyrandomizedbiomedicalpolyesterssynthesizedwithanontoxicbismuthiiicatalyst
AT oledzkaewa comprehensiveinvestigationofthestructuralthermalandbiologicalpropertiesoffullyrandomizedbiomedicalpolyesterssynthesizedwithanontoxicbismuthiiicatalyst
AT cieslakrystyna comprehensiveinvestigationofthestructuralthermalandbiologicalpropertiesoffullyrandomizedbiomedicalpolyesterssynthesizedwithanontoxicbismuthiiicatalyst
AT plichtaandrzej comprehensiveinvestigationofthestructuralthermalandbiologicalpropertiesoffullyrandomizedbiomedicalpolyesterssynthesizedwithanontoxicbismuthiiicatalyst
AT sobczakmarcin comprehensiveinvestigationofthestructuralthermalandbiologicalpropertiesoffullyrandomizedbiomedicalpolyesterssynthesizedwithanontoxicbismuthiiicatalyst