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Polypeptide Self-Assembled Nanoparticles as Delivery Systems for Polymyxins B and E

Polymyxins are peptide antibiotics that are highly efficient against many multidrug resistant pathogens. However, the poor stability of polymyxins in the bloodstream requires the administration of high drug doses that, in turn, can lead to polymyxin toxicity. Consequently, different delivery systems...

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Autores principales: Iudin, Dmitrii, Zashikhina, Natalia, Demyanova, Elena, Korzhikov-Vlakh, Viktor, Shcherbakova, Elena, Boroznjak, Roman, Tarasenko, Irina, Zakharova, Natalya, Lavrentieva, Antonina, Skorik, Yury, Korzhikova-Vlakh, Evgenia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7558620/
https://www.ncbi.nlm.nih.gov/pubmed/32933030
http://dx.doi.org/10.3390/pharmaceutics12090868
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author Iudin, Dmitrii
Zashikhina, Natalia
Demyanova, Elena
Korzhikov-Vlakh, Viktor
Shcherbakova, Elena
Boroznjak, Roman
Tarasenko, Irina
Zakharova, Natalya
Lavrentieva, Antonina
Skorik, Yury
Korzhikova-Vlakh, Evgenia
author_facet Iudin, Dmitrii
Zashikhina, Natalia
Demyanova, Elena
Korzhikov-Vlakh, Viktor
Shcherbakova, Elena
Boroznjak, Roman
Tarasenko, Irina
Zakharova, Natalya
Lavrentieva, Antonina
Skorik, Yury
Korzhikova-Vlakh, Evgenia
author_sort Iudin, Dmitrii
collection PubMed
description Polymyxins are peptide antibiotics that are highly efficient against many multidrug resistant pathogens. However, the poor stability of polymyxins in the bloodstream requires the administration of high drug doses that, in turn, can lead to polymyxin toxicity. Consequently, different delivery systems have been considered for polymyxins to overcome these obstacles. In this work, we report the development of polymyxin delivery systems based on nanoparticles obtained from the self-assembly of amphiphilic random poly(l-glutamic acid-co-d-phenylalanine). These P(Glu-co-dPhe) nanoparticles were characterized in terms of their size, surface charge, stability, cytotoxicity, and uptake by macrophages. The encapsulation efficiency and drug loading into P(Glu-co-dPhe) nanoparticles were determined for both polymyxin B and E. The release kinetics of polymyxins B and E from nanoformulations was studied and compared in buffer solution and human blood plasma. The release mechanisms were analyzed using a number of mathematical models. The minimal inhibitory concentrations of the nanoformulations were established and compared with those determined for the free antibiotics.
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spelling pubmed-75586202020-10-26 Polypeptide Self-Assembled Nanoparticles as Delivery Systems for Polymyxins B and E Iudin, Dmitrii Zashikhina, Natalia Demyanova, Elena Korzhikov-Vlakh, Viktor Shcherbakova, Elena Boroznjak, Roman Tarasenko, Irina Zakharova, Natalya Lavrentieva, Antonina Skorik, Yury Korzhikova-Vlakh, Evgenia Pharmaceutics Article Polymyxins are peptide antibiotics that are highly efficient against many multidrug resistant pathogens. However, the poor stability of polymyxins in the bloodstream requires the administration of high drug doses that, in turn, can lead to polymyxin toxicity. Consequently, different delivery systems have been considered for polymyxins to overcome these obstacles. In this work, we report the development of polymyxin delivery systems based on nanoparticles obtained from the self-assembly of amphiphilic random poly(l-glutamic acid-co-d-phenylalanine). These P(Glu-co-dPhe) nanoparticles were characterized in terms of their size, surface charge, stability, cytotoxicity, and uptake by macrophages. The encapsulation efficiency and drug loading into P(Glu-co-dPhe) nanoparticles were determined for both polymyxin B and E. The release kinetics of polymyxins B and E from nanoformulations was studied and compared in buffer solution and human blood plasma. The release mechanisms were analyzed using a number of mathematical models. The minimal inhibitory concentrations of the nanoformulations were established and compared with those determined for the free antibiotics. MDPI 2020-09-11 /pmc/articles/PMC7558620/ /pubmed/32933030 http://dx.doi.org/10.3390/pharmaceutics12090868 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
Iudin, Dmitrii
Zashikhina, Natalia
Demyanova, Elena
Korzhikov-Vlakh, Viktor
Shcherbakova, Elena
Boroznjak, Roman
Tarasenko, Irina
Zakharova, Natalya
Lavrentieva, Antonina
Skorik, Yury
Korzhikova-Vlakh, Evgenia
Polypeptide Self-Assembled Nanoparticles as Delivery Systems for Polymyxins B and E
title Polypeptide Self-Assembled Nanoparticles as Delivery Systems for Polymyxins B and E
title_full Polypeptide Self-Assembled Nanoparticles as Delivery Systems for Polymyxins B and E
title_fullStr Polypeptide Self-Assembled Nanoparticles as Delivery Systems for Polymyxins B and E
title_full_unstemmed Polypeptide Self-Assembled Nanoparticles as Delivery Systems for Polymyxins B and E
title_short Polypeptide Self-Assembled Nanoparticles as Delivery Systems for Polymyxins B and E
title_sort polypeptide self-assembled nanoparticles as delivery systems for polymyxins b and e
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7558620/
https://www.ncbi.nlm.nih.gov/pubmed/32933030
http://dx.doi.org/10.3390/pharmaceutics12090868
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