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A Murine Model of falciparum-Malaria by In Vivo Selection of Competent Strains in Non-Myelodepleted Mice Engrafted with Human Erythrocytes

To counter the global threat caused by Plasmodium falciparum malaria, new drugs and vaccines are urgently needed. However, there are no practical animal models because P. falciparum infects human erythrocytes almost exclusively. Here we describe a reliable falciparum murine model of malaria by gener...

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Autores principales: Angulo-Barturen, Iñigo, Jiménez-Díaz, María Belén, Mulet, Teresa, Rullas, Joaquín, Herreros, Esperanza, Ferrer, Santiago, Jiménez, Elena, Mendoza, Alfonso, Regadera, Javier, Rosenthal, Philip J., Bathurst, Ian, Pompliano, David L., Gómez de las Heras, Federico, Gargallo-Viola, Domingo
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2375113/
https://www.ncbi.nlm.nih.gov/pubmed/18493601
http://dx.doi.org/10.1371/journal.pone.0002252
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author Angulo-Barturen, Iñigo
Jiménez-Díaz, María Belén
Mulet, Teresa
Rullas, Joaquín
Herreros, Esperanza
Ferrer, Santiago
Jiménez, Elena
Mendoza, Alfonso
Regadera, Javier
Rosenthal, Philip J.
Bathurst, Ian
Pompliano, David L.
Gómez de las Heras, Federico
Gargallo-Viola, Domingo
author_facet Angulo-Barturen, Iñigo
Jiménez-Díaz, María Belén
Mulet, Teresa
Rullas, Joaquín
Herreros, Esperanza
Ferrer, Santiago
Jiménez, Elena
Mendoza, Alfonso
Regadera, Javier
Rosenthal, Philip J.
Bathurst, Ian
Pompliano, David L.
Gómez de las Heras, Federico
Gargallo-Viola, Domingo
author_sort Angulo-Barturen, Iñigo
collection PubMed
description To counter the global threat caused by Plasmodium falciparum malaria, new drugs and vaccines are urgently needed. However, there are no practical animal models because P. falciparum infects human erythrocytes almost exclusively. Here we describe a reliable falciparum murine model of malaria by generating strains of P. falciparum in vivo that can infect immunodeficient mice engrafted with human erythrocytes. We infected NOD(scid/β2m−/−) mice engrafted with human erythrocytes with P. falciparum obtained from in vitro cultures. After apparent clearance, we obtained isolates of P. falciparum able to grow in peripheral blood of engrafted NOD(scid/β2m−/−) mice. Of the isolates obtained, we expanded in vivo and established the isolate Pf3D7(0087/N9) as a reference strain for model development. Pf3D7(0087/N9) caused productive persistent infections in 100% of engrafted mice infected intravenously. The infection caused a relative anemia due to selective elimination of human erythrocytes by a mechanism dependent on parasite density in peripheral blood. Using this model, we implemented and validated a reproducible assay of antimalarial activity useful for drug discovery. Thus, our results demonstrate that P. falciparum contains clones able to grow reproducibly in mice engrafted with human erythrocytes without the use of myeloablative methods.
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spelling pubmed-23751132008-05-21 A Murine Model of falciparum-Malaria by In Vivo Selection of Competent Strains in Non-Myelodepleted Mice Engrafted with Human Erythrocytes Angulo-Barturen, Iñigo Jiménez-Díaz, María Belén Mulet, Teresa Rullas, Joaquín Herreros, Esperanza Ferrer, Santiago Jiménez, Elena Mendoza, Alfonso Regadera, Javier Rosenthal, Philip J. Bathurst, Ian Pompliano, David L. Gómez de las Heras, Federico Gargallo-Viola, Domingo PLoS One Research Article To counter the global threat caused by Plasmodium falciparum malaria, new drugs and vaccines are urgently needed. However, there are no practical animal models because P. falciparum infects human erythrocytes almost exclusively. Here we describe a reliable falciparum murine model of malaria by generating strains of P. falciparum in vivo that can infect immunodeficient mice engrafted with human erythrocytes. We infected NOD(scid/β2m−/−) mice engrafted with human erythrocytes with P. falciparum obtained from in vitro cultures. After apparent clearance, we obtained isolates of P. falciparum able to grow in peripheral blood of engrafted NOD(scid/β2m−/−) mice. Of the isolates obtained, we expanded in vivo and established the isolate Pf3D7(0087/N9) as a reference strain for model development. Pf3D7(0087/N9) caused productive persistent infections in 100% of engrafted mice infected intravenously. The infection caused a relative anemia due to selective elimination of human erythrocytes by a mechanism dependent on parasite density in peripheral blood. Using this model, we implemented and validated a reproducible assay of antimalarial activity useful for drug discovery. Thus, our results demonstrate that P. falciparum contains clones able to grow reproducibly in mice engrafted with human erythrocytes without the use of myeloablative methods. Public Library of Science 2008-05-21 /pmc/articles/PMC2375113/ /pubmed/18493601 http://dx.doi.org/10.1371/journal.pone.0002252 Text en Angulo-Barturen et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Angulo-Barturen, Iñigo
Jiménez-Díaz, María Belén
Mulet, Teresa
Rullas, Joaquín
Herreros, Esperanza
Ferrer, Santiago
Jiménez, Elena
Mendoza, Alfonso
Regadera, Javier
Rosenthal, Philip J.
Bathurst, Ian
Pompliano, David L.
Gómez de las Heras, Federico
Gargallo-Viola, Domingo
A Murine Model of falciparum-Malaria by In Vivo Selection of Competent Strains in Non-Myelodepleted Mice Engrafted with Human Erythrocytes
title A Murine Model of falciparum-Malaria by In Vivo Selection of Competent Strains in Non-Myelodepleted Mice Engrafted with Human Erythrocytes
title_full A Murine Model of falciparum-Malaria by In Vivo Selection of Competent Strains in Non-Myelodepleted Mice Engrafted with Human Erythrocytes
title_fullStr A Murine Model of falciparum-Malaria by In Vivo Selection of Competent Strains in Non-Myelodepleted Mice Engrafted with Human Erythrocytes
title_full_unstemmed A Murine Model of falciparum-Malaria by In Vivo Selection of Competent Strains in Non-Myelodepleted Mice Engrafted with Human Erythrocytes
title_short A Murine Model of falciparum-Malaria by In Vivo Selection of Competent Strains in Non-Myelodepleted Mice Engrafted with Human Erythrocytes
title_sort murine model of falciparum-malaria by in vivo selection of competent strains in non-myelodepleted mice engrafted with human erythrocytes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2375113/
https://www.ncbi.nlm.nih.gov/pubmed/18493601
http://dx.doi.org/10.1371/journal.pone.0002252
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