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Novel malaria antigen Plasmodium yoelii E140 induces antibody-mediated sterile protection in mice against malaria challenge

Only a small fraction of the antigens expressed by malaria parasites have been evaluated as vaccine candidates. A successful malaria subunit vaccine will likely require multiple antigenic targets to achieve broad protection with high protective efficacy. Here we describe protective efficacy of a nov...

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Autores principales: Smith, Emily C., Limbach, Keith J., Rangel, Nonenipha, Oda, Kyosuke, Bolton, Jessica S., Du, Mengyan, Gowda, Kalpana, Wang, Jianyang, Moch, J. Kathleen, Sonawane, Sharvari, Velasco, Rachel, Belmonte, Arnel, Danner, Rebecca, Lumsden, Joanne M., Patterson, Noelle B., Sedegah, Martha, Hollingdale, Michael R., Richie, Thomas L., Sacci, John B., Villasante, Eileen D., Aguiar, Joao C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7224506/
https://www.ncbi.nlm.nih.gov/pubmed/32407410
http://dx.doi.org/10.1371/journal.pone.0232234
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author Smith, Emily C.
Limbach, Keith J.
Rangel, Nonenipha
Oda, Kyosuke
Bolton, Jessica S.
Du, Mengyan
Gowda, Kalpana
Wang, Jianyang
Moch, J. Kathleen
Sonawane, Sharvari
Velasco, Rachel
Belmonte, Arnel
Danner, Rebecca
Lumsden, Joanne M.
Patterson, Noelle B.
Sedegah, Martha
Hollingdale, Michael R.
Richie, Thomas L.
Sacci, John B.
Villasante, Eileen D.
Aguiar, Joao C.
author_facet Smith, Emily C.
Limbach, Keith J.
Rangel, Nonenipha
Oda, Kyosuke
Bolton, Jessica S.
Du, Mengyan
Gowda, Kalpana
Wang, Jianyang
Moch, J. Kathleen
Sonawane, Sharvari
Velasco, Rachel
Belmonte, Arnel
Danner, Rebecca
Lumsden, Joanne M.
Patterson, Noelle B.
Sedegah, Martha
Hollingdale, Michael R.
Richie, Thomas L.
Sacci, John B.
Villasante, Eileen D.
Aguiar, Joao C.
author_sort Smith, Emily C.
collection PubMed
description Only a small fraction of the antigens expressed by malaria parasites have been evaluated as vaccine candidates. A successful malaria subunit vaccine will likely require multiple antigenic targets to achieve broad protection with high protective efficacy. Here we describe protective efficacy of a novel antigen, Plasmodium yoelii (Py) E140 (PyE140), evaluated against P. yoelii challenge of mice. Vaccines targeting PyE140 reproducibly induced up to 100% sterile protection in both inbred and outbred murine challenge models. Although PyE140 immunization induced high frequency and multifunctional CD8(+) T cell responses, as well as CD4(+) T cell responses, protection was mediated by PyE140 antibodies acting against blood stage parasites. Protection in mice was long-lasting with up to 100% sterile protection at twelve weeks post-immunization and durable high titer anti-PyE140 antibodies. The E140 antigen is expressed in all Plasmodium species, is highly conserved in both P. falciparum lab-adapted strains and endemic circulating parasites, and is thus a promising lead vaccine candidate for future evaluation against human malaria parasite species.
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spelling pubmed-72245062020-06-01 Novel malaria antigen Plasmodium yoelii E140 induces antibody-mediated sterile protection in mice against malaria challenge Smith, Emily C. Limbach, Keith J. Rangel, Nonenipha Oda, Kyosuke Bolton, Jessica S. Du, Mengyan Gowda, Kalpana Wang, Jianyang Moch, J. Kathleen Sonawane, Sharvari Velasco, Rachel Belmonte, Arnel Danner, Rebecca Lumsden, Joanne M. Patterson, Noelle B. Sedegah, Martha Hollingdale, Michael R. Richie, Thomas L. Sacci, John B. Villasante, Eileen D. Aguiar, Joao C. PLoS One Research Article Only a small fraction of the antigens expressed by malaria parasites have been evaluated as vaccine candidates. A successful malaria subunit vaccine will likely require multiple antigenic targets to achieve broad protection with high protective efficacy. Here we describe protective efficacy of a novel antigen, Plasmodium yoelii (Py) E140 (PyE140), evaluated against P. yoelii challenge of mice. Vaccines targeting PyE140 reproducibly induced up to 100% sterile protection in both inbred and outbred murine challenge models. Although PyE140 immunization induced high frequency and multifunctional CD8(+) T cell responses, as well as CD4(+) T cell responses, protection was mediated by PyE140 antibodies acting against blood stage parasites. Protection in mice was long-lasting with up to 100% sterile protection at twelve weeks post-immunization and durable high titer anti-PyE140 antibodies. The E140 antigen is expressed in all Plasmodium species, is highly conserved in both P. falciparum lab-adapted strains and endemic circulating parasites, and is thus a promising lead vaccine candidate for future evaluation against human malaria parasite species. Public Library of Science 2020-05-14 /pmc/articles/PMC7224506/ /pubmed/32407410 http://dx.doi.org/10.1371/journal.pone.0232234 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Smith, Emily C.
Limbach, Keith J.
Rangel, Nonenipha
Oda, Kyosuke
Bolton, Jessica S.
Du, Mengyan
Gowda, Kalpana
Wang, Jianyang
Moch, J. Kathleen
Sonawane, Sharvari
Velasco, Rachel
Belmonte, Arnel
Danner, Rebecca
Lumsden, Joanne M.
Patterson, Noelle B.
Sedegah, Martha
Hollingdale, Michael R.
Richie, Thomas L.
Sacci, John B.
Villasante, Eileen D.
Aguiar, Joao C.
Novel malaria antigen Plasmodium yoelii E140 induces antibody-mediated sterile protection in mice against malaria challenge
title Novel malaria antigen Plasmodium yoelii E140 induces antibody-mediated sterile protection in mice against malaria challenge
title_full Novel malaria antigen Plasmodium yoelii E140 induces antibody-mediated sterile protection in mice against malaria challenge
title_fullStr Novel malaria antigen Plasmodium yoelii E140 induces antibody-mediated sterile protection in mice against malaria challenge
title_full_unstemmed Novel malaria antigen Plasmodium yoelii E140 induces antibody-mediated sterile protection in mice against malaria challenge
title_short Novel malaria antigen Plasmodium yoelii E140 induces antibody-mediated sterile protection in mice against malaria challenge
title_sort novel malaria antigen plasmodium yoelii e140 induces antibody-mediated sterile protection in mice against malaria challenge
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7224506/
https://www.ncbi.nlm.nih.gov/pubmed/32407410
http://dx.doi.org/10.1371/journal.pone.0232234
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