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Effect of Experimental Parameters on Alginate/Chitosan Microparticles for BCG Encapsulation

The aim of the present study was to develop novel Mycobacterium bovis bacille Calmette-Guérin (BCG)-loaded polymeric microparticles with optimized particle surface characteristics and biocompatibility, so that whole live attenuated bacteria could be further used for pre-exposure vaccination against...

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Autores principales: Caetano, Liliana A., Almeida, António J., Gonçalves, Lídia M.D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4882564/
https://www.ncbi.nlm.nih.gov/pubmed/27187418
http://dx.doi.org/10.3390/md14050090
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author Caetano, Liliana A.
Almeida, António J.
Gonçalves, Lídia M.D.
author_facet Caetano, Liliana A.
Almeida, António J.
Gonçalves, Lídia M.D.
author_sort Caetano, Liliana A.
collection PubMed
description The aim of the present study was to develop novel Mycobacterium bovis bacille Calmette-Guérin (BCG)-loaded polymeric microparticles with optimized particle surface characteristics and biocompatibility, so that whole live attenuated bacteria could be further used for pre-exposure vaccination against Mycobacterium tuberculosis by the intranasal route. BCG was encapsulated in chitosan and alginate microparticles through three different polyionic complexation methods by high speed stirring. For comparison purposes, similar formulations were prepared with high shear homogenization and sonication. Additional optimization studies were conducted with polymers of different quality specifications in a wide range of pH values, and with three different cryoprotectors. Particle morphology, size distribution, encapsulation efficiency, surface charge, physicochemical properties and biocompatibility were assessed. Particles exhibited a micrometer size and a spherical morphology. Chitosan addition to BCG shifted the bacilli surface charge from negative zeta potential values to strongly positive ones. Chitosan of low molecular weight produced particle suspensions of lower size distribution and higher stability, allowing efficient BCG encapsulation and biocompatibility. Particle formulation consistency was improved when the availability of functional groups from alginate and chitosan was close to stoichiometric proportion. Thus, the herein described microparticulate system constitutes a promising strategy to deliver BCG vaccine by the intranasal route.
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spelling pubmed-48825642016-05-27 Effect of Experimental Parameters on Alginate/Chitosan Microparticles for BCG Encapsulation Caetano, Liliana A. Almeida, António J. Gonçalves, Lídia M.D. Mar Drugs Article The aim of the present study was to develop novel Mycobacterium bovis bacille Calmette-Guérin (BCG)-loaded polymeric microparticles with optimized particle surface characteristics and biocompatibility, so that whole live attenuated bacteria could be further used for pre-exposure vaccination against Mycobacterium tuberculosis by the intranasal route. BCG was encapsulated in chitosan and alginate microparticles through three different polyionic complexation methods by high speed stirring. For comparison purposes, similar formulations were prepared with high shear homogenization and sonication. Additional optimization studies were conducted with polymers of different quality specifications in a wide range of pH values, and with three different cryoprotectors. Particle morphology, size distribution, encapsulation efficiency, surface charge, physicochemical properties and biocompatibility were assessed. Particles exhibited a micrometer size and a spherical morphology. Chitosan addition to BCG shifted the bacilli surface charge from negative zeta potential values to strongly positive ones. Chitosan of low molecular weight produced particle suspensions of lower size distribution and higher stability, allowing efficient BCG encapsulation and biocompatibility. Particle formulation consistency was improved when the availability of functional groups from alginate and chitosan was close to stoichiometric proportion. Thus, the herein described microparticulate system constitutes a promising strategy to deliver BCG vaccine by the intranasal route. MDPI 2016-05-11 /pmc/articles/PMC4882564/ /pubmed/27187418 http://dx.doi.org/10.3390/md14050090 Text en © 2016 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
Caetano, Liliana A.
Almeida, António J.
Gonçalves, Lídia M.D.
Effect of Experimental Parameters on Alginate/Chitosan Microparticles for BCG Encapsulation
title Effect of Experimental Parameters on Alginate/Chitosan Microparticles for BCG Encapsulation
title_full Effect of Experimental Parameters on Alginate/Chitosan Microparticles for BCG Encapsulation
title_fullStr Effect of Experimental Parameters on Alginate/Chitosan Microparticles for BCG Encapsulation
title_full_unstemmed Effect of Experimental Parameters on Alginate/Chitosan Microparticles for BCG Encapsulation
title_short Effect of Experimental Parameters on Alginate/Chitosan Microparticles for BCG Encapsulation
title_sort effect of experimental parameters on alginate/chitosan microparticles for bcg encapsulation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4882564/
https://www.ncbi.nlm.nih.gov/pubmed/27187418
http://dx.doi.org/10.3390/md14050090
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