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Surface engineered polyanhydride-based oral Salmonella subunit nanovaccine for poultry

PURPOSE: Salmonellosis is a severe economic threat in poultry and a public health concern. Currently available vaccines are ineffective, and thus, developing effective oral Salmonella vaccine is warranted. Especially, a potent oral vaccine such as the mucoadhesive polyanhydride nanoparticle (PNP) pr...

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Autores principales: Renu, Sankar, Markazi, Ashley D, Dhakal, Santosh, Lakshmanappa, Yashavanth S, Gourapura, Suren R, Shanmugasundaram, Revathi, Senapati, Sujata, Narasimhan, Balaji, Selvaraj, Ramesh K, Renukaradhya, Gourapura J
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6280892/
https://www.ncbi.nlm.nih.gov/pubmed/30555234
http://dx.doi.org/10.2147/IJN.S185588
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author Renu, Sankar
Markazi, Ashley D
Dhakal, Santosh
Lakshmanappa, Yashavanth S
Gourapura, Suren R
Shanmugasundaram, Revathi
Senapati, Sujata
Narasimhan, Balaji
Selvaraj, Ramesh K
Renukaradhya, Gourapura J
author_facet Renu, Sankar
Markazi, Ashley D
Dhakal, Santosh
Lakshmanappa, Yashavanth S
Gourapura, Suren R
Shanmugasundaram, Revathi
Senapati, Sujata
Narasimhan, Balaji
Selvaraj, Ramesh K
Renukaradhya, Gourapura J
author_sort Renu, Sankar
collection PubMed
description PURPOSE: Salmonellosis is a severe economic threat in poultry and a public health concern. Currently available vaccines are ineffective, and thus, developing effective oral Salmonella vaccine is warranted. Especially, a potent oral vaccine such as the mucoadhesive polyanhydride nanoparticle (PNP) protects the vaccine cargo and delivers to intestinal immune sites to elicit robust mucosal immunity and mitigate Salmonella colonization and shedding. MATERIALS AND METHODS: We designed a Salmonella subunit vaccine using PNP containing immunogenic Salmonella outer membrane proteins (OMPs) and flagellar (F) protein-entrapped and surface F-protein-coated PNPs (OMPs-F-PNPs) using a solvent displacement method. Using high-throughput techniques, we characterized the OMPs-F-PNPs physicochemical properties and analyzed its efficacy in layer birds vaccinated orally. RESULTS: The candidate vaccine was resistant in acidic microenvironment and had ideal physicochemical properties for oral delivery in terms of particle size, charge, morphology, biocompatibility, and pH stability. In vitro, in vivo, and ex vivo studies showed that F-protein surface-anchored nanoparticles were better targeted to chicken immune cells in peripheral blood and splenocytes and intestinal Peyer’s patch sites. In layer chickens inoculated orally with OMPs-F-PNPs, substantially higher OMPs-specific IgG response and secretion of Th1 cytokine IFN-γ in the serum, enhanced CD8(+)/CD4(+) cell ratio in spleen, and increased OMPs-specific lymphocyte proliferation were observed. OMPs-F-PNPs vaccination also upregulated the expression of toll-like receptor (TLR)-2 and -4, TGF-β, and IL-4 cytokines’ genes in chicken cecal tonsils (lymphoid tissues). Importantly, OMPs-F-PNPs vaccine cleared Salmonella cecal colonization in 33% of vaccinated birds. CONCLUSION: This pilot in vivo study demonstrated the targeted delivery of OMPs-F-PNPs to ileum mucosal immune sites of chickens and induced specific immune response to mitigate Salmonella colonization in intestines.
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spelling pubmed-62808922018-12-14 Surface engineered polyanhydride-based oral Salmonella subunit nanovaccine for poultry Renu, Sankar Markazi, Ashley D Dhakal, Santosh Lakshmanappa, Yashavanth S Gourapura, Suren R Shanmugasundaram, Revathi Senapati, Sujata Narasimhan, Balaji Selvaraj, Ramesh K Renukaradhya, Gourapura J Int J Nanomedicine Original Research PURPOSE: Salmonellosis is a severe economic threat in poultry and a public health concern. Currently available vaccines are ineffective, and thus, developing effective oral Salmonella vaccine is warranted. Especially, a potent oral vaccine such as the mucoadhesive polyanhydride nanoparticle (PNP) protects the vaccine cargo and delivers to intestinal immune sites to elicit robust mucosal immunity and mitigate Salmonella colonization and shedding. MATERIALS AND METHODS: We designed a Salmonella subunit vaccine using PNP containing immunogenic Salmonella outer membrane proteins (OMPs) and flagellar (F) protein-entrapped and surface F-protein-coated PNPs (OMPs-F-PNPs) using a solvent displacement method. Using high-throughput techniques, we characterized the OMPs-F-PNPs physicochemical properties and analyzed its efficacy in layer birds vaccinated orally. RESULTS: The candidate vaccine was resistant in acidic microenvironment and had ideal physicochemical properties for oral delivery in terms of particle size, charge, morphology, biocompatibility, and pH stability. In vitro, in vivo, and ex vivo studies showed that F-protein surface-anchored nanoparticles were better targeted to chicken immune cells in peripheral blood and splenocytes and intestinal Peyer’s patch sites. In layer chickens inoculated orally with OMPs-F-PNPs, substantially higher OMPs-specific IgG response and secretion of Th1 cytokine IFN-γ in the serum, enhanced CD8(+)/CD4(+) cell ratio in spleen, and increased OMPs-specific lymphocyte proliferation were observed. OMPs-F-PNPs vaccination also upregulated the expression of toll-like receptor (TLR)-2 and -4, TGF-β, and IL-4 cytokines’ genes in chicken cecal tonsils (lymphoid tissues). Importantly, OMPs-F-PNPs vaccine cleared Salmonella cecal colonization in 33% of vaccinated birds. CONCLUSION: This pilot in vivo study demonstrated the targeted delivery of OMPs-F-PNPs to ileum mucosal immune sites of chickens and induced specific immune response to mitigate Salmonella colonization in intestines. Dove Medical Press 2018-11-30 /pmc/articles/PMC6280892/ /pubmed/30555234 http://dx.doi.org/10.2147/IJN.S185588 Text en © 2018 Renu et al. This work is published and licensed by Dove Medical Press Limited The full terms of this license are available at https://www.dovepress.com/terms.php and incorporate the Creative Commons Attribution – Non Commercial (unported, v3.0) License (http://creativecommons.org/licenses/by-nc/3.0/). By accessing the work you hereby accept the Terms. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed.
spellingShingle Original Research
Renu, Sankar
Markazi, Ashley D
Dhakal, Santosh
Lakshmanappa, Yashavanth S
Gourapura, Suren R
Shanmugasundaram, Revathi
Senapati, Sujata
Narasimhan, Balaji
Selvaraj, Ramesh K
Renukaradhya, Gourapura J
Surface engineered polyanhydride-based oral Salmonella subunit nanovaccine for poultry
title Surface engineered polyanhydride-based oral Salmonella subunit nanovaccine for poultry
title_full Surface engineered polyanhydride-based oral Salmonella subunit nanovaccine for poultry
title_fullStr Surface engineered polyanhydride-based oral Salmonella subunit nanovaccine for poultry
title_full_unstemmed Surface engineered polyanhydride-based oral Salmonella subunit nanovaccine for poultry
title_short Surface engineered polyanhydride-based oral Salmonella subunit nanovaccine for poultry
title_sort surface engineered polyanhydride-based oral salmonella subunit nanovaccine for poultry
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6280892/
https://www.ncbi.nlm.nih.gov/pubmed/30555234
http://dx.doi.org/10.2147/IJN.S185588
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