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Lipid nanoparticles with accessible nickel as a vaccine delivery system for single and multiple his-tagged HIV antigens

Lipid-based nanoparticles (NPs) with a small amount of surface-chelated nickel (Ni-NPs) were developed to easily formulate the human immunodeficiency virus (HIV) his-tagged Tat (his-Tat) protein, as well as to formulate and co-deliver two HIV antigens (his-p24 and his-Nef) on one particle. Female BA...

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Autores principales: Yan, Weili, Jain, Anekant, O’Carra, Ronan, Woodward, Jerold G, Li, Wenxue, Li, Guanhan, Nath, Avindra, Mumper, Russell J
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3182147/
https://www.ncbi.nlm.nih.gov/pubmed/21966230
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author Yan, Weili
Jain, Anekant
O’Carra, Ronan
Woodward, Jerold G
Li, Wenxue
Li, Guanhan
Nath, Avindra
Mumper, Russell J
author_facet Yan, Weili
Jain, Anekant
O’Carra, Ronan
Woodward, Jerold G
Li, Wenxue
Li, Guanhan
Nath, Avindra
Mumper, Russell J
author_sort Yan, Weili
collection PubMed
description Lipid-based nanoparticles (NPs) with a small amount of surface-chelated nickel (Ni-NPs) were developed to easily formulate the human immunodeficiency virus (HIV) his-tagged Tat (his-Tat) protein, as well as to formulate and co-deliver two HIV antigens (his-p24 and his-Nef) on one particle. Female BALB/c mice were immunized by subcutaneous injection with his-Tat/Ni-NP formulation (1.5 μg his-Tat/mouse) and control formulations on day 0 and 14. The day 28 anti-Tat specific immunoglobulin G titer with his-Tat/Ni-NPs was significantly greater than that with Alum/his-Tat. Furthermore, splenocytes from his-Tat/Ni-NP-immunized mice secreted significantly higher IFN-γ than those from mice immunized with Alum/his-Tat. Although Ni-NPs did not show better adjuvant activity than Tat-coated anionic NPs made with sodium dodecyl sulfate (SDS/NPs), they were less toxic than SDS/NPs. The initial results indicated that co-immunization of mice using his-p24/his-Nef/Ni-NP induced greater antibody response compared to using Alum/his-p24/his-Nef. Co-delivery of two antigens using Ni-NPs also increased the immunogenicity of individual antigens compared to delivery of a single antigen by Ni-NPs. In conclusion, Ni-NPs are an efficient delivery system for HIV vaccines including both single antigen delivery and multiple antigen co-delivery.
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spelling pubmed-31821472011-09-28 Lipid nanoparticles with accessible nickel as a vaccine delivery system for single and multiple his-tagged HIV antigens Yan, Weili Jain, Anekant O’Carra, Ronan Woodward, Jerold G Li, Wenxue Li, Guanhan Nath, Avindra Mumper, Russell J HIV AIDS (Auckl) Original Research Lipid-based nanoparticles (NPs) with a small amount of surface-chelated nickel (Ni-NPs) were developed to easily formulate the human immunodeficiency virus (HIV) his-tagged Tat (his-Tat) protein, as well as to formulate and co-deliver two HIV antigens (his-p24 and his-Nef) on one particle. Female BALB/c mice were immunized by subcutaneous injection with his-Tat/Ni-NP formulation (1.5 μg his-Tat/mouse) and control formulations on day 0 and 14. The day 28 anti-Tat specific immunoglobulin G titer with his-Tat/Ni-NPs was significantly greater than that with Alum/his-Tat. Furthermore, splenocytes from his-Tat/Ni-NP-immunized mice secreted significantly higher IFN-γ than those from mice immunized with Alum/his-Tat. Although Ni-NPs did not show better adjuvant activity than Tat-coated anionic NPs made with sodium dodecyl sulfate (SDS/NPs), they were less toxic than SDS/NPs. The initial results indicated that co-immunization of mice using his-p24/his-Nef/Ni-NP induced greater antibody response compared to using Alum/his-p24/his-Nef. Co-delivery of two antigens using Ni-NPs also increased the immunogenicity of individual antigens compared to delivery of a single antigen by Ni-NPs. In conclusion, Ni-NPs are an efficient delivery system for HIV vaccines including both single antigen delivery and multiple antigen co-delivery. Dove Medical Press 2009-07-17 /pmc/articles/PMC3182147/ /pubmed/21966230 Text en © 2009 Yan et al, publisher and licensee Dove Medical Press Ltd This is an Open Access article which permits unrestricted noncommercial use, provided the original work is properly cited.
spellingShingle Original Research
Yan, Weili
Jain, Anekant
O’Carra, Ronan
Woodward, Jerold G
Li, Wenxue
Li, Guanhan
Nath, Avindra
Mumper, Russell J
Lipid nanoparticles with accessible nickel as a vaccine delivery system for single and multiple his-tagged HIV antigens
title Lipid nanoparticles with accessible nickel as a vaccine delivery system for single and multiple his-tagged HIV antigens
title_full Lipid nanoparticles with accessible nickel as a vaccine delivery system for single and multiple his-tagged HIV antigens
title_fullStr Lipid nanoparticles with accessible nickel as a vaccine delivery system for single and multiple his-tagged HIV antigens
title_full_unstemmed Lipid nanoparticles with accessible nickel as a vaccine delivery system for single and multiple his-tagged HIV antigens
title_short Lipid nanoparticles with accessible nickel as a vaccine delivery system for single and multiple his-tagged HIV antigens
title_sort lipid nanoparticles with accessible nickel as a vaccine delivery system for single and multiple his-tagged hiv antigens
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3182147/
https://www.ncbi.nlm.nih.gov/pubmed/21966230
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