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Biodegradable nanocarriers coated with polymyxin B: Evaluation of leishmanicidal and antibacterial potential

Most treatments of leishmaniasis require hospitalization and present side effects or parasite resistance; innovations in drug formulation/reposition can overcome these barriers and must be pursued to increase therapeutic alternatives. Therefore, we tested polymyxin B (polB) potential to kill Leishma...

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Autores principales: Souza Ribeiro Costa, Juliana, Medeiros, Marília, Yamashiro-Kanashiro, Edite Harumi, Rocha, Mussya Cisotto, Cotrim, Paulo Cesar, Stephano, Marco Antonio, Lancellotti, Marcelo, Tavares, Guilherme Diniz, Oliveira-Nascimento, Laura
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6513107/
https://www.ncbi.nlm.nih.gov/pubmed/31042710
http://dx.doi.org/10.1371/journal.pntd.0007388
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author Souza Ribeiro Costa, Juliana
Medeiros, Marília
Yamashiro-Kanashiro, Edite Harumi
Rocha, Mussya Cisotto
Cotrim, Paulo Cesar
Stephano, Marco Antonio
Lancellotti, Marcelo
Tavares, Guilherme Diniz
Oliveira-Nascimento, Laura
author_facet Souza Ribeiro Costa, Juliana
Medeiros, Marília
Yamashiro-Kanashiro, Edite Harumi
Rocha, Mussya Cisotto
Cotrim, Paulo Cesar
Stephano, Marco Antonio
Lancellotti, Marcelo
Tavares, Guilherme Diniz
Oliveira-Nascimento, Laura
author_sort Souza Ribeiro Costa, Juliana
collection PubMed
description Most treatments of leishmaniasis require hospitalization and present side effects or parasite resistance; innovations in drug formulation/reposition can overcome these barriers and must be pursued to increase therapeutic alternatives. Therefore, we tested polymyxin B (polB) potential to kill Leishmania amazonensis, adsorbed or not in PBCA nanoparticles (PBCAnp), which could augment polB internalization in infected macrophages. PBCAnps were fabricated by anionic polymerization and analyzed by Dynamic Light Scattering (size, ζ potential), Nanoparticle Tracking Analysis (size/concentration), vertical diffusion cell (release rate), drug incorporation (indirect method, protein determination) and in vitro cell viability. Nanoparticles coated with polB (PBCAnp-polB) presented an adequate size of 261.5 ± 25.9 nm, low PDI and ζ of 1.79 ± 0.17 mV (stable for 45 days, at least). The 50% drug release from PBCAnp-polB was 6–7 times slower than the free polB, which favors a prolonged and desired release profile. Concerning in vitro evaluations, polB alone reduced in vitro amastigote infection of macrophages (10 μg/mL) without complete parasite elimination, even at higher concentrations. This behavior limits its future application to adjuvant leishmanicidal therapy or antimicrobial coating of carriers. The nanocarrier PBCAnp also presented leishmanicidal effect and surpassed polB activity; however, no antimicrobial activity was detected. PolB maintained its activity against E. coli, Pseudomonas and Klebsiella, adding antimicrobial properties to the nanoparticles. Thus, this coated drug delivery system, described for the first time, demonstrated antileishmanial and antimicrobial properties. The bactericidal feature helps with concomitant prevention/treatment of secondary infections that worst ulcers induced by cutaneous L. amazonensis, ultimately ending in disfiguring or disabling lesions.
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spelling pubmed-65131072019-05-31 Biodegradable nanocarriers coated with polymyxin B: Evaluation of leishmanicidal and antibacterial potential Souza Ribeiro Costa, Juliana Medeiros, Marília Yamashiro-Kanashiro, Edite Harumi Rocha, Mussya Cisotto Cotrim, Paulo Cesar Stephano, Marco Antonio Lancellotti, Marcelo Tavares, Guilherme Diniz Oliveira-Nascimento, Laura PLoS Negl Trop Dis Research Article Most treatments of leishmaniasis require hospitalization and present side effects or parasite resistance; innovations in drug formulation/reposition can overcome these barriers and must be pursued to increase therapeutic alternatives. Therefore, we tested polymyxin B (polB) potential to kill Leishmania amazonensis, adsorbed or not in PBCA nanoparticles (PBCAnp), which could augment polB internalization in infected macrophages. PBCAnps were fabricated by anionic polymerization and analyzed by Dynamic Light Scattering (size, ζ potential), Nanoparticle Tracking Analysis (size/concentration), vertical diffusion cell (release rate), drug incorporation (indirect method, protein determination) and in vitro cell viability. Nanoparticles coated with polB (PBCAnp-polB) presented an adequate size of 261.5 ± 25.9 nm, low PDI and ζ of 1.79 ± 0.17 mV (stable for 45 days, at least). The 50% drug release from PBCAnp-polB was 6–7 times slower than the free polB, which favors a prolonged and desired release profile. Concerning in vitro evaluations, polB alone reduced in vitro amastigote infection of macrophages (10 μg/mL) without complete parasite elimination, even at higher concentrations. This behavior limits its future application to adjuvant leishmanicidal therapy or antimicrobial coating of carriers. The nanocarrier PBCAnp also presented leishmanicidal effect and surpassed polB activity; however, no antimicrobial activity was detected. PolB maintained its activity against E. coli, Pseudomonas and Klebsiella, adding antimicrobial properties to the nanoparticles. Thus, this coated drug delivery system, described for the first time, demonstrated antileishmanial and antimicrobial properties. The bactericidal feature helps with concomitant prevention/treatment of secondary infections that worst ulcers induced by cutaneous L. amazonensis, ultimately ending in disfiguring or disabling lesions. Public Library of Science 2019-05-01 /pmc/articles/PMC6513107/ /pubmed/31042710 http://dx.doi.org/10.1371/journal.pntd.0007388 Text en © 2019 Souza Ribeiro Costa et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Souza Ribeiro Costa, Juliana
Medeiros, Marília
Yamashiro-Kanashiro, Edite Harumi
Rocha, Mussya Cisotto
Cotrim, Paulo Cesar
Stephano, Marco Antonio
Lancellotti, Marcelo
Tavares, Guilherme Diniz
Oliveira-Nascimento, Laura
Biodegradable nanocarriers coated with polymyxin B: Evaluation of leishmanicidal and antibacterial potential
title Biodegradable nanocarriers coated with polymyxin B: Evaluation of leishmanicidal and antibacterial potential
title_full Biodegradable nanocarriers coated with polymyxin B: Evaluation of leishmanicidal and antibacterial potential
title_fullStr Biodegradable nanocarriers coated with polymyxin B: Evaluation of leishmanicidal and antibacterial potential
title_full_unstemmed Biodegradable nanocarriers coated with polymyxin B: Evaluation of leishmanicidal and antibacterial potential
title_short Biodegradable nanocarriers coated with polymyxin B: Evaluation of leishmanicidal and antibacterial potential
title_sort biodegradable nanocarriers coated with polymyxin b: evaluation of leishmanicidal and antibacterial potential
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6513107/
https://www.ncbi.nlm.nih.gov/pubmed/31042710
http://dx.doi.org/10.1371/journal.pntd.0007388
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