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A Novel Model of Asymptomatic Plasmodium Parasitemia That Recapitulates Elements of the Human Immune Response to Chronic Infection

In humans, immunity to Plasmodium sp. generally takes the form of protection from symptomatic malaria (i.e., 'clinical immunity') rather than infection ('sterilizing immunity'). In contrast, mice infected with Plasmodium develop sterilizing immunity, hindering progress in underst...

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Autores principales: Fontana, Mary F., Baccarella, Alyssa, Craft, Joshua F., Boyle, Michelle J., McIntyre, Tara I., Wood, Matthew D., Thorn, Kurt S., Anidi, Chioma, Bayat, Aqieda, Chung, Me Ree, Hamburger, Rebecca, Kim, Chris Y., Pearman, Emily, Pham, Jennifer, Tang, Jia J., Boon, Louis, Kamya, Moses R., Dorsey, Grant, Feeney, Margaret E., Kim, Charles C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5008831/
https://www.ncbi.nlm.nih.gov/pubmed/27583554
http://dx.doi.org/10.1371/journal.pone.0162132
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author Fontana, Mary F.
Baccarella, Alyssa
Craft, Joshua F.
Boyle, Michelle J.
McIntyre, Tara I.
Wood, Matthew D.
Thorn, Kurt S.
Anidi, Chioma
Bayat, Aqieda
Chung, Me Ree
Hamburger, Rebecca
Kim, Chris Y.
Pearman, Emily
Pham, Jennifer
Tang, Jia J.
Boon, Louis
Kamya, Moses R.
Dorsey, Grant
Feeney, Margaret E.
Kim, Charles C.
author_facet Fontana, Mary F.
Baccarella, Alyssa
Craft, Joshua F.
Boyle, Michelle J.
McIntyre, Tara I.
Wood, Matthew D.
Thorn, Kurt S.
Anidi, Chioma
Bayat, Aqieda
Chung, Me Ree
Hamburger, Rebecca
Kim, Chris Y.
Pearman, Emily
Pham, Jennifer
Tang, Jia J.
Boon, Louis
Kamya, Moses R.
Dorsey, Grant
Feeney, Margaret E.
Kim, Charles C.
author_sort Fontana, Mary F.
collection PubMed
description In humans, immunity to Plasmodium sp. generally takes the form of protection from symptomatic malaria (i.e., 'clinical immunity') rather than infection ('sterilizing immunity'). In contrast, mice infected with Plasmodium develop sterilizing immunity, hindering progress in understanding the mechanistic basis of clinical immunity. Here we present a novel model in which mice persistently infected with P. chabaudi exhibit limited clinical symptoms despite sustaining patent parasite burdens for many months. Characterization of immune responses in persistently infected mice revealed development of CD4(+) T cell exhaustion, increased production of IL-10, and expansion of B cells with an atypical surface phenotype. Additionally, persistently infected mice displayed a dramatic increase in circulating nonclassical monocytes, a phenomenon that we also observed in humans with both chronic Plasmodium exposure and asymptomatic infection. Following pharmacological clearance of infection, previously persistently infected mice could not control a secondary challenge, indicating that persistent infection disrupts the sterilizing immunity that typically develops in mouse models of acute infection. This study establishes an animal model of asymptomatic, persistent Plasmodium infection that recapitulates several central aspects of the immune response in chronically exposed humans. As such, it provides a novel tool for dissection of immune responses that may prevent development of sterilizing immunity and limit pathology during infection.
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spelling pubmed-50088312016-09-27 A Novel Model of Asymptomatic Plasmodium Parasitemia That Recapitulates Elements of the Human Immune Response to Chronic Infection Fontana, Mary F. Baccarella, Alyssa Craft, Joshua F. Boyle, Michelle J. McIntyre, Tara I. Wood, Matthew D. Thorn, Kurt S. Anidi, Chioma Bayat, Aqieda Chung, Me Ree Hamburger, Rebecca Kim, Chris Y. Pearman, Emily Pham, Jennifer Tang, Jia J. Boon, Louis Kamya, Moses R. Dorsey, Grant Feeney, Margaret E. Kim, Charles C. PLoS One Research Article In humans, immunity to Plasmodium sp. generally takes the form of protection from symptomatic malaria (i.e., 'clinical immunity') rather than infection ('sterilizing immunity'). In contrast, mice infected with Plasmodium develop sterilizing immunity, hindering progress in understanding the mechanistic basis of clinical immunity. Here we present a novel model in which mice persistently infected with P. chabaudi exhibit limited clinical symptoms despite sustaining patent parasite burdens for many months. Characterization of immune responses in persistently infected mice revealed development of CD4(+) T cell exhaustion, increased production of IL-10, and expansion of B cells with an atypical surface phenotype. Additionally, persistently infected mice displayed a dramatic increase in circulating nonclassical monocytes, a phenomenon that we also observed in humans with both chronic Plasmodium exposure and asymptomatic infection. Following pharmacological clearance of infection, previously persistently infected mice could not control a secondary challenge, indicating that persistent infection disrupts the sterilizing immunity that typically develops in mouse models of acute infection. This study establishes an animal model of asymptomatic, persistent Plasmodium infection that recapitulates several central aspects of the immune response in chronically exposed humans. As such, it provides a novel tool for dissection of immune responses that may prevent development of sterilizing immunity and limit pathology during infection. Public Library of Science 2016-09-01 /pmc/articles/PMC5008831/ /pubmed/27583554 http://dx.doi.org/10.1371/journal.pone.0162132 Text en © 2016 Fontana 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Fontana, Mary F.
Baccarella, Alyssa
Craft, Joshua F.
Boyle, Michelle J.
McIntyre, Tara I.
Wood, Matthew D.
Thorn, Kurt S.
Anidi, Chioma
Bayat, Aqieda
Chung, Me Ree
Hamburger, Rebecca
Kim, Chris Y.
Pearman, Emily
Pham, Jennifer
Tang, Jia J.
Boon, Louis
Kamya, Moses R.
Dorsey, Grant
Feeney, Margaret E.
Kim, Charles C.
A Novel Model of Asymptomatic Plasmodium Parasitemia That Recapitulates Elements of the Human Immune Response to Chronic Infection
title A Novel Model of Asymptomatic Plasmodium Parasitemia That Recapitulates Elements of the Human Immune Response to Chronic Infection
title_full A Novel Model of Asymptomatic Plasmodium Parasitemia That Recapitulates Elements of the Human Immune Response to Chronic Infection
title_fullStr A Novel Model of Asymptomatic Plasmodium Parasitemia That Recapitulates Elements of the Human Immune Response to Chronic Infection
title_full_unstemmed A Novel Model of Asymptomatic Plasmodium Parasitemia That Recapitulates Elements of the Human Immune Response to Chronic Infection
title_short A Novel Model of Asymptomatic Plasmodium Parasitemia That Recapitulates Elements of the Human Immune Response to Chronic Infection
title_sort novel model of asymptomatic plasmodium parasitemia that recapitulates elements of the human immune response to chronic infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5008831/
https://www.ncbi.nlm.nih.gov/pubmed/27583554
http://dx.doi.org/10.1371/journal.pone.0162132
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