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Chimeric Hepatitis B core antigen virus-like particles displaying the envelope domain III of dengue virus type 2

BACKGROUND: Dengue is a global public health problem for which no drug or vaccine is available. Currently, there is increasing interest in developing non-replicating dengue vaccines based on a discrete antigenic domain of the major structural protein of dengue viruses (DENVs), known as envelope doma...

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Autores principales: Arora, Upasana, Tyagi, Poornima, Swaminathan, Sathyamangalam, Khanna, Navin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3411447/
https://www.ncbi.nlm.nih.gov/pubmed/22794664
http://dx.doi.org/10.1186/1477-3155-10-30
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author Arora, Upasana
Tyagi, Poornima
Swaminathan, Sathyamangalam
Khanna, Navin
author_facet Arora, Upasana
Tyagi, Poornima
Swaminathan, Sathyamangalam
Khanna, Navin
author_sort Arora, Upasana
collection PubMed
description BACKGROUND: Dengue is a global public health problem for which no drug or vaccine is available. Currently, there is increasing interest in developing non-replicating dengue vaccines based on a discrete antigenic domain of the major structural protein of dengue viruses (DENVs), known as envelope domain III (EDIII). The use of bio-nanoparticles consisting of recombinant viral structural polypeptides, better known as virus-like particles (VLPs), has emerged as a potential platform technology for vaccine development. This work explores the feasibility of developing nanoparticles based on E. coli-expressed recombinant Hepatitis B virus core antigen (HBcAg) designed to display EDIII moiety of DENV on the surface. FINDINGS: We designed a synthetic gene construct encoding HBcAg containing an EDIII insert in its c/e1 loop. The fusion antigen HBcAg-EDIII-2 was expressed in E. coli, purified to near homogeneity using Ni(+2) affinity chromatography and demonstrated to assemble into discrete 35–40 nm VLPs by electron microscopy. Competitive ELISA analyses showed that the EDIII-2 moieties of the VLPs are accessible to anti-EDIII-2-specific monoclonal and polyclonal antibodies, suggesting that they are surface-displayed. The VLPs were highly immunogenic eliciting high titer anti-EDIII-2 antibodies that were able to recognize, bind and neutralize infectious DENV based on ELISA, immunofluorescence and virus-neutralization assays. CONCLUSION: This work demonstrates that HBcAg-derived nanoparticles can serve as a useful platform for the display of DENV EDIII. The EDIII-displaying nanoparticles may have potential applications in diagnostics/vaccines for dengue.
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spelling pubmed-34114472012-08-04 Chimeric Hepatitis B core antigen virus-like particles displaying the envelope domain III of dengue virus type 2 Arora, Upasana Tyagi, Poornima Swaminathan, Sathyamangalam Khanna, Navin J Nanobiotechnology Short Communication BACKGROUND: Dengue is a global public health problem for which no drug or vaccine is available. Currently, there is increasing interest in developing non-replicating dengue vaccines based on a discrete antigenic domain of the major structural protein of dengue viruses (DENVs), known as envelope domain III (EDIII). The use of bio-nanoparticles consisting of recombinant viral structural polypeptides, better known as virus-like particles (VLPs), has emerged as a potential platform technology for vaccine development. This work explores the feasibility of developing nanoparticles based on E. coli-expressed recombinant Hepatitis B virus core antigen (HBcAg) designed to display EDIII moiety of DENV on the surface. FINDINGS: We designed a synthetic gene construct encoding HBcAg containing an EDIII insert in its c/e1 loop. The fusion antigen HBcAg-EDIII-2 was expressed in E. coli, purified to near homogeneity using Ni(+2) affinity chromatography and demonstrated to assemble into discrete 35–40 nm VLPs by electron microscopy. Competitive ELISA analyses showed that the EDIII-2 moieties of the VLPs are accessible to anti-EDIII-2-specific monoclonal and polyclonal antibodies, suggesting that they are surface-displayed. The VLPs were highly immunogenic eliciting high titer anti-EDIII-2 antibodies that were able to recognize, bind and neutralize infectious DENV based on ELISA, immunofluorescence and virus-neutralization assays. CONCLUSION: This work demonstrates that HBcAg-derived nanoparticles can serve as a useful platform for the display of DENV EDIII. The EDIII-displaying nanoparticles may have potential applications in diagnostics/vaccines for dengue. BioMed Central 2012-07-13 /pmc/articles/PMC3411447/ /pubmed/22794664 http://dx.doi.org/10.1186/1477-3155-10-30 Text en Copyright ©2012 Arora et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Short Communication
Arora, Upasana
Tyagi, Poornima
Swaminathan, Sathyamangalam
Khanna, Navin
Chimeric Hepatitis B core antigen virus-like particles displaying the envelope domain III of dengue virus type 2
title Chimeric Hepatitis B core antigen virus-like particles displaying the envelope domain III of dengue virus type 2
title_full Chimeric Hepatitis B core antigen virus-like particles displaying the envelope domain III of dengue virus type 2
title_fullStr Chimeric Hepatitis B core antigen virus-like particles displaying the envelope domain III of dengue virus type 2
title_full_unstemmed Chimeric Hepatitis B core antigen virus-like particles displaying the envelope domain III of dengue virus type 2
title_short Chimeric Hepatitis B core antigen virus-like particles displaying the envelope domain III of dengue virus type 2
title_sort chimeric hepatitis b core antigen virus-like particles displaying the envelope domain iii of dengue virus type 2
topic Short Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3411447/
https://www.ncbi.nlm.nih.gov/pubmed/22794664
http://dx.doi.org/10.1186/1477-3155-10-30
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