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Expanding the Malaria Antibody Toolkit: Development and Characterisation of Plasmodium falciparum RH5, CyRPA, and CSP Recombinant Human Monoclonal Antibodies

Malaria, an infection caused by apicomplexan parasites of the genus Plasmodium, continues to exact a significant toll on public health with over 200 million cases world-wide, and annual deaths in excess of 600,000. Considerable progress has been made to reduce malaria burden in endemic countries in...

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Autores principales: Nacer, Adéla, Kivi, Gaily, Pert, Raini, Juronen, Erkki, Holenya, Pavlo, Aliprandini, Eduardo, Amino, Rogerio, Silvie, Olivier, Quinkert, Doris, Le Duff, Yann, Hurley, Matthew, Reimer, Ulf, Tover, Andres, Draper, Simon J., Gilbert, Sarah, Ho, Mei Mei, Bowyer, Paul W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9243361/
https://www.ncbi.nlm.nih.gov/pubmed/35782147
http://dx.doi.org/10.3389/fcimb.2022.901253
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author Nacer, Adéla
Kivi, Gaily
Pert, Raini
Juronen, Erkki
Holenya, Pavlo
Aliprandini, Eduardo
Amino, Rogerio
Silvie, Olivier
Quinkert, Doris
Le Duff, Yann
Hurley, Matthew
Reimer, Ulf
Tover, Andres
Draper, Simon J.
Gilbert, Sarah
Ho, Mei Mei
Bowyer, Paul W.
author_facet Nacer, Adéla
Kivi, Gaily
Pert, Raini
Juronen, Erkki
Holenya, Pavlo
Aliprandini, Eduardo
Amino, Rogerio
Silvie, Olivier
Quinkert, Doris
Le Duff, Yann
Hurley, Matthew
Reimer, Ulf
Tover, Andres
Draper, Simon J.
Gilbert, Sarah
Ho, Mei Mei
Bowyer, Paul W.
author_sort Nacer, Adéla
collection PubMed
description Malaria, an infection caused by apicomplexan parasites of the genus Plasmodium, continues to exact a significant toll on public health with over 200 million cases world-wide, and annual deaths in excess of 600,000. Considerable progress has been made to reduce malaria burden in endemic countries in the last two decades. However, parasite and mosquito resistance to frontline chemotherapies and insecticides, respectively, highlights the continuing need for the development of safe and effective vaccines. Here we describe the development of recombinant human antibodies to three target proteins from Plasmodium falciparum: reticulocyte binding protein homologue 5 (PfRH5), cysteine-rich protective antigen (PfCyRPA), and circumsporozoite protein (PfCSP). All three proteins are key targets in the development of vaccines for blood-stage or pre-erythrocytic stage infections. We have developed potent anti-PfRH5, PfCyRPA and PfCSP monoclonal antibodies that will prove useful tools for the standardisation of assays in preclinical research and the assessment of these antigens in clinical trials. We have generated some very potent anti-PfRH5 and anti-PfCyRPA antibodies with some clones >200 times more potent than the polyclonal anti-AMA-1 antibodies used for the evaluation of blood stage antigens. While the monoclonal and polyclonal antibodies are not directly comparable, the data provide evidence that these new antibodies are very good at blocking invasion. These antibodies will therefore provide a valuable resource and have potential as biological standards to help harmonise pre-clinical malaria research.
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spelling pubmed-92433612022-07-01 Expanding the Malaria Antibody Toolkit: Development and Characterisation of Plasmodium falciparum RH5, CyRPA, and CSP Recombinant Human Monoclonal Antibodies Nacer, Adéla Kivi, Gaily Pert, Raini Juronen, Erkki Holenya, Pavlo Aliprandini, Eduardo Amino, Rogerio Silvie, Olivier Quinkert, Doris Le Duff, Yann Hurley, Matthew Reimer, Ulf Tover, Andres Draper, Simon J. Gilbert, Sarah Ho, Mei Mei Bowyer, Paul W. Front Cell Infect Microbiol Cellular and Infection Microbiology Malaria, an infection caused by apicomplexan parasites of the genus Plasmodium, continues to exact a significant toll on public health with over 200 million cases world-wide, and annual deaths in excess of 600,000. Considerable progress has been made to reduce malaria burden in endemic countries in the last two decades. However, parasite and mosquito resistance to frontline chemotherapies and insecticides, respectively, highlights the continuing need for the development of safe and effective vaccines. Here we describe the development of recombinant human antibodies to three target proteins from Plasmodium falciparum: reticulocyte binding protein homologue 5 (PfRH5), cysteine-rich protective antigen (PfCyRPA), and circumsporozoite protein (PfCSP). All three proteins are key targets in the development of vaccines for blood-stage or pre-erythrocytic stage infections. We have developed potent anti-PfRH5, PfCyRPA and PfCSP monoclonal antibodies that will prove useful tools for the standardisation of assays in preclinical research and the assessment of these antigens in clinical trials. We have generated some very potent anti-PfRH5 and anti-PfCyRPA antibodies with some clones >200 times more potent than the polyclonal anti-AMA-1 antibodies used for the evaluation of blood stage antigens. While the monoclonal and polyclonal antibodies are not directly comparable, the data provide evidence that these new antibodies are very good at blocking invasion. These antibodies will therefore provide a valuable resource and have potential as biological standards to help harmonise pre-clinical malaria research. Frontiers Media S.A. 2022-06-16 /pmc/articles/PMC9243361/ /pubmed/35782147 http://dx.doi.org/10.3389/fcimb.2022.901253 Text en Copyright © 2022 Nacer, Kivi, Pert, Juronen, Holenya, Aliprandini, Amino, Silvie, Quinkert, Le Duff, Hurley, Reimer, Tover, Draper, Gilbert, Ho and Bowyer https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cellular and Infection Microbiology
Nacer, Adéla
Kivi, Gaily
Pert, Raini
Juronen, Erkki
Holenya, Pavlo
Aliprandini, Eduardo
Amino, Rogerio
Silvie, Olivier
Quinkert, Doris
Le Duff, Yann
Hurley, Matthew
Reimer, Ulf
Tover, Andres
Draper, Simon J.
Gilbert, Sarah
Ho, Mei Mei
Bowyer, Paul W.
Expanding the Malaria Antibody Toolkit: Development and Characterisation of Plasmodium falciparum RH5, CyRPA, and CSP Recombinant Human Monoclonal Antibodies
title Expanding the Malaria Antibody Toolkit: Development and Characterisation of Plasmodium falciparum RH5, CyRPA, and CSP Recombinant Human Monoclonal Antibodies
title_full Expanding the Malaria Antibody Toolkit: Development and Characterisation of Plasmodium falciparum RH5, CyRPA, and CSP Recombinant Human Monoclonal Antibodies
title_fullStr Expanding the Malaria Antibody Toolkit: Development and Characterisation of Plasmodium falciparum RH5, CyRPA, and CSP Recombinant Human Monoclonal Antibodies
title_full_unstemmed Expanding the Malaria Antibody Toolkit: Development and Characterisation of Plasmodium falciparum RH5, CyRPA, and CSP Recombinant Human Monoclonal Antibodies
title_short Expanding the Malaria Antibody Toolkit: Development and Characterisation of Plasmodium falciparum RH5, CyRPA, and CSP Recombinant Human Monoclonal Antibodies
title_sort expanding the malaria antibody toolkit: development and characterisation of plasmodium falciparum rh5, cyrpa, and csp recombinant human monoclonal antibodies
topic Cellular and Infection Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9243361/
https://www.ncbi.nlm.nih.gov/pubmed/35782147
http://dx.doi.org/10.3389/fcimb.2022.901253
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