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Induction of multi-antigen multi-stage immune responses against Plasmodium falciparum in rhesus monkeys, in the absence of antigen interference, with heterologous DNA prime/poxvirus boost immunization

The present study has evaluated the immunogenicity of single or multiple Plasmodium falciparum (Pf) antigens administered in a DNA prime/poxvirus boost regimen with or without the poloxamer CRL1005 in rhesus monkeys. Animals were primed with PfCSP plasmid DNA or a mixture of PfCSP, PfSSP2/TRAP, PfLS...

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Autores principales: Jiang, George, Charoenvit, Yupin, Moreno, Alberto, Baraceros, Maria F, Banania, Glenna, Richie, Nancy, Abot, Steve, Ganeshan, Harini, Fallarme, Victoria, Patterson, Noelle B, Geall, Andrew, Weiss, Walter R, Strobert, Elizabeth, Caro-Aquilar, Ivette, Lanar, David E, Saul, Allan, Martin, Laura B, Gowda, Kalpana, Morrissette, Craig R, Kaslow, David C, Carucci, Daniel J, Galinski, Mary R, Doolan, Denise L
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2147027/
https://www.ncbi.nlm.nih.gov/pubmed/17925026
http://dx.doi.org/10.1186/1475-2875-6-135
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author Jiang, George
Charoenvit, Yupin
Moreno, Alberto
Baraceros, Maria F
Banania, Glenna
Richie, Nancy
Abot, Steve
Ganeshan, Harini
Fallarme, Victoria
Patterson, Noelle B
Geall, Andrew
Weiss, Walter R
Strobert, Elizabeth
Caro-Aquilar, Ivette
Lanar, David E
Saul, Allan
Martin, Laura B
Gowda, Kalpana
Morrissette, Craig R
Kaslow, David C
Carucci, Daniel J
Galinski, Mary R
Doolan, Denise L
author_facet Jiang, George
Charoenvit, Yupin
Moreno, Alberto
Baraceros, Maria F
Banania, Glenna
Richie, Nancy
Abot, Steve
Ganeshan, Harini
Fallarme, Victoria
Patterson, Noelle B
Geall, Andrew
Weiss, Walter R
Strobert, Elizabeth
Caro-Aquilar, Ivette
Lanar, David E
Saul, Allan
Martin, Laura B
Gowda, Kalpana
Morrissette, Craig R
Kaslow, David C
Carucci, Daniel J
Galinski, Mary R
Doolan, Denise L
author_sort Jiang, George
collection PubMed
description The present study has evaluated the immunogenicity of single or multiple Plasmodium falciparum (Pf) antigens administered in a DNA prime/poxvirus boost regimen with or without the poloxamer CRL1005 in rhesus monkeys. Animals were primed with PfCSP plasmid DNA or a mixture of PfCSP, PfSSP2/TRAP, PfLSA1, PfAMA1 and PfMSP1-42 (CSLAM) DNA vaccines in PBS or formulated with CRL1005, and subsequently boosted with ALVAC-Pf7, a canarypox virus expressing the CSLAM antigens. Cell-mediated immune responses were evaluated by IFN-γ ELIspot and intracellular cytokine staining, using recombinant proteins and overlapping synthetic peptides. Antigen-specific and parasite-specific antibody responses were evaluated by ELISA and IFAT, respectively. Immune responses to all components of the multi-antigen mixture were demonstrated following immunization with either DNA/PBS or DNA/CRL1005, and no antigen interference was observed in animals receiving CSLAM as compared to PfCSP alone. These data support the down-selection of the CSLAM antigen combination. CRL1005 formulation had no apparent effect on vaccine-induced T cell or antibody responses, either before or after viral boost. In high responder monkeys, CD4+IL-2+ responses were more predominant than CD8+ T cell responses. Furthermore, CD8+ IFN-γ responses were detected only in the presence of detectable CD4+ T cell responses. Overall, this study demonstrates the potential for multivalent Pf vaccines based on rational antigen selection and combination, and suggests that further formulation development to increase the immunogenicity of DNA encoded antigens is warranted.
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spelling pubmed-21470272007-12-19 Induction of multi-antigen multi-stage immune responses against Plasmodium falciparum in rhesus monkeys, in the absence of antigen interference, with heterologous DNA prime/poxvirus boost immunization Jiang, George Charoenvit, Yupin Moreno, Alberto Baraceros, Maria F Banania, Glenna Richie, Nancy Abot, Steve Ganeshan, Harini Fallarme, Victoria Patterson, Noelle B Geall, Andrew Weiss, Walter R Strobert, Elizabeth Caro-Aquilar, Ivette Lanar, David E Saul, Allan Martin, Laura B Gowda, Kalpana Morrissette, Craig R Kaslow, David C Carucci, Daniel J Galinski, Mary R Doolan, Denise L Malar J Research The present study has evaluated the immunogenicity of single or multiple Plasmodium falciparum (Pf) antigens administered in a DNA prime/poxvirus boost regimen with or without the poloxamer CRL1005 in rhesus monkeys. Animals were primed with PfCSP plasmid DNA or a mixture of PfCSP, PfSSP2/TRAP, PfLSA1, PfAMA1 and PfMSP1-42 (CSLAM) DNA vaccines in PBS or formulated with CRL1005, and subsequently boosted with ALVAC-Pf7, a canarypox virus expressing the CSLAM antigens. Cell-mediated immune responses were evaluated by IFN-γ ELIspot and intracellular cytokine staining, using recombinant proteins and overlapping synthetic peptides. Antigen-specific and parasite-specific antibody responses were evaluated by ELISA and IFAT, respectively. Immune responses to all components of the multi-antigen mixture were demonstrated following immunization with either DNA/PBS or DNA/CRL1005, and no antigen interference was observed in animals receiving CSLAM as compared to PfCSP alone. These data support the down-selection of the CSLAM antigen combination. CRL1005 formulation had no apparent effect on vaccine-induced T cell or antibody responses, either before or after viral boost. In high responder monkeys, CD4+IL-2+ responses were more predominant than CD8+ T cell responses. Furthermore, CD8+ IFN-γ responses were detected only in the presence of detectable CD4+ T cell responses. Overall, this study demonstrates the potential for multivalent Pf vaccines based on rational antigen selection and combination, and suggests that further formulation development to increase the immunogenicity of DNA encoded antigens is warranted. BioMed Central 2007-10-09 /pmc/articles/PMC2147027/ /pubmed/17925026 http://dx.doi.org/10.1186/1475-2875-6-135 Text en Copyright © 2007 Jiang 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 Research
Jiang, George
Charoenvit, Yupin
Moreno, Alberto
Baraceros, Maria F
Banania, Glenna
Richie, Nancy
Abot, Steve
Ganeshan, Harini
Fallarme, Victoria
Patterson, Noelle B
Geall, Andrew
Weiss, Walter R
Strobert, Elizabeth
Caro-Aquilar, Ivette
Lanar, David E
Saul, Allan
Martin, Laura B
Gowda, Kalpana
Morrissette, Craig R
Kaslow, David C
Carucci, Daniel J
Galinski, Mary R
Doolan, Denise L
Induction of multi-antigen multi-stage immune responses against Plasmodium falciparum in rhesus monkeys, in the absence of antigen interference, with heterologous DNA prime/poxvirus boost immunization
title Induction of multi-antigen multi-stage immune responses against Plasmodium falciparum in rhesus monkeys, in the absence of antigen interference, with heterologous DNA prime/poxvirus boost immunization
title_full Induction of multi-antigen multi-stage immune responses against Plasmodium falciparum in rhesus monkeys, in the absence of antigen interference, with heterologous DNA prime/poxvirus boost immunization
title_fullStr Induction of multi-antigen multi-stage immune responses against Plasmodium falciparum in rhesus monkeys, in the absence of antigen interference, with heterologous DNA prime/poxvirus boost immunization
title_full_unstemmed Induction of multi-antigen multi-stage immune responses against Plasmodium falciparum in rhesus monkeys, in the absence of antigen interference, with heterologous DNA prime/poxvirus boost immunization
title_short Induction of multi-antigen multi-stage immune responses against Plasmodium falciparum in rhesus monkeys, in the absence of antigen interference, with heterologous DNA prime/poxvirus boost immunization
title_sort induction of multi-antigen multi-stage immune responses against plasmodium falciparum in rhesus monkeys, in the absence of antigen interference, with heterologous dna prime/poxvirus boost immunization
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2147027/
https://www.ncbi.nlm.nih.gov/pubmed/17925026
http://dx.doi.org/10.1186/1475-2875-6-135
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