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Biodegradable and Bioactive Carriers Based on Poly(betulin disuccinate-co-sebacic Acid) for Rifampicin Delivery

This paper describes the preparation and characterization of polymer-drug systems based on polymeric microspheres obtained from poly(betulin disuccinate-co-sebacic acid). The active compound that was coupled to the betulin-based carriers was rifampicin (RIF), an ansamycin drug used in the treatment...

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Autores principales: Niewolik, Daria, Bednarczyk-Cwynar, Barbara, Ruszkowski, Piotr, Kazek-Kęsik, Alicja, Dzido, Grzegorz, Jaszcz, Katarzyna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8953921/
https://www.ncbi.nlm.nih.gov/pubmed/35335954
http://dx.doi.org/10.3390/pharmaceutics14030579
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author Niewolik, Daria
Bednarczyk-Cwynar, Barbara
Ruszkowski, Piotr
Kazek-Kęsik, Alicja
Dzido, Grzegorz
Jaszcz, Katarzyna
author_facet Niewolik, Daria
Bednarczyk-Cwynar, Barbara
Ruszkowski, Piotr
Kazek-Kęsik, Alicja
Dzido, Grzegorz
Jaszcz, Katarzyna
author_sort Niewolik, Daria
collection PubMed
description This paper describes the preparation and characterization of polymer-drug systems based on polymeric microspheres obtained from poly(betulin disuccinate-co-sebacic acid). The active compound that was coupled to the betulin-based carriers was rifampicin (RIF), an ansamycin drug used in the treatment of tuberculosis. Poly(betulin disuccinate-co-sebacic acid) microspheres were prepared using a solvent evaporation technique from copolymers obtained by polycondensation of betulin disuccinate (DBB) and sebacic acid (SEB). The content of sebacic acid in the copolymers was 20, 40, 60 and 80 wt%, respectively. Small and large rifampicin-loaded microspheres were obtained for each of the copolymers. The initial amount of drug was 10, 30 or 50 wt%, based on the weight of the polymer. Particles obtained in this study were round in shape with diameter in the range of 2–21 μm and of orange to red colour originating from rifampicin. The RIF encapsulation efficacy varied from 7% to 33%. Drug loading varied from 2% to 13% and increased at a higher RIF ratio. The highest degree of drug loading was observed for large particles, in which the initial amount of drug (at the particle preparation stage) was 50 wt%. Microspheres prepared from betulin-based polyanhydrides may have significant applications in drug delivery systems. The concentration of loaded drug was enough to obtain bactericidal effects against reference S. Aureus ATCC 25923 bacteria.
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spelling pubmed-89539212022-03-26 Biodegradable and Bioactive Carriers Based on Poly(betulin disuccinate-co-sebacic Acid) for Rifampicin Delivery Niewolik, Daria Bednarczyk-Cwynar, Barbara Ruszkowski, Piotr Kazek-Kęsik, Alicja Dzido, Grzegorz Jaszcz, Katarzyna Pharmaceutics Article This paper describes the preparation and characterization of polymer-drug systems based on polymeric microspheres obtained from poly(betulin disuccinate-co-sebacic acid). The active compound that was coupled to the betulin-based carriers was rifampicin (RIF), an ansamycin drug used in the treatment of tuberculosis. Poly(betulin disuccinate-co-sebacic acid) microspheres were prepared using a solvent evaporation technique from copolymers obtained by polycondensation of betulin disuccinate (DBB) and sebacic acid (SEB). The content of sebacic acid in the copolymers was 20, 40, 60 and 80 wt%, respectively. Small and large rifampicin-loaded microspheres were obtained for each of the copolymers. The initial amount of drug was 10, 30 or 50 wt%, based on the weight of the polymer. Particles obtained in this study were round in shape with diameter in the range of 2–21 μm and of orange to red colour originating from rifampicin. The RIF encapsulation efficacy varied from 7% to 33%. Drug loading varied from 2% to 13% and increased at a higher RIF ratio. The highest degree of drug loading was observed for large particles, in which the initial amount of drug (at the particle preparation stage) was 50 wt%. Microspheres prepared from betulin-based polyanhydrides may have significant applications in drug delivery systems. The concentration of loaded drug was enough to obtain bactericidal effects against reference S. Aureus ATCC 25923 bacteria. MDPI 2022-03-06 /pmc/articles/PMC8953921/ /pubmed/35335954 http://dx.doi.org/10.3390/pharmaceutics14030579 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
Niewolik, Daria
Bednarczyk-Cwynar, Barbara
Ruszkowski, Piotr
Kazek-Kęsik, Alicja
Dzido, Grzegorz
Jaszcz, Katarzyna
Biodegradable and Bioactive Carriers Based on Poly(betulin disuccinate-co-sebacic Acid) for Rifampicin Delivery
title Biodegradable and Bioactive Carriers Based on Poly(betulin disuccinate-co-sebacic Acid) for Rifampicin Delivery
title_full Biodegradable and Bioactive Carriers Based on Poly(betulin disuccinate-co-sebacic Acid) for Rifampicin Delivery
title_fullStr Biodegradable and Bioactive Carriers Based on Poly(betulin disuccinate-co-sebacic Acid) for Rifampicin Delivery
title_full_unstemmed Biodegradable and Bioactive Carriers Based on Poly(betulin disuccinate-co-sebacic Acid) for Rifampicin Delivery
title_short Biodegradable and Bioactive Carriers Based on Poly(betulin disuccinate-co-sebacic Acid) for Rifampicin Delivery
title_sort biodegradable and bioactive carriers based on poly(betulin disuccinate-co-sebacic acid) for rifampicin delivery
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8953921/
https://www.ncbi.nlm.nih.gov/pubmed/35335954
http://dx.doi.org/10.3390/pharmaceutics14030579
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