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Skeleton binding protein-1-mediated parasite sequestration inhibits spontaneous resolution of malaria-associated acute respiratory distress syndrome

Malaria is a hazardous disease caused by Plasmodium parasites and often results in lethal complications, including malaria-associated acute respiratory distress syndrome (MA-ARDS). Parasite sequestration in the microvasculature is often observed, but its role in malaria pathogenesis and complication...

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Autores principales: Possemiers, Hendrik, Pham, Thao-Thy, Coens, Marion, Pollenus, Emilie, Knoops, Sofie, Noppen, Sam, Vandermosten, Leen, D’haese, Sigrid, Dillemans, Luna, Prenen, Fran, Schols, Dominique, Franke-Fayard, Blandine, Van den Steen, Philippe E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8659713/
https://www.ncbi.nlm.nih.gov/pubmed/34843584
http://dx.doi.org/10.1371/journal.ppat.1010114
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author Possemiers, Hendrik
Pham, Thao-Thy
Coens, Marion
Pollenus, Emilie
Knoops, Sofie
Noppen, Sam
Vandermosten, Leen
D’haese, Sigrid
Dillemans, Luna
Prenen, Fran
Schols, Dominique
Franke-Fayard, Blandine
Van den Steen, Philippe E.
author_facet Possemiers, Hendrik
Pham, Thao-Thy
Coens, Marion
Pollenus, Emilie
Knoops, Sofie
Noppen, Sam
Vandermosten, Leen
D’haese, Sigrid
Dillemans, Luna
Prenen, Fran
Schols, Dominique
Franke-Fayard, Blandine
Van den Steen, Philippe E.
author_sort Possemiers, Hendrik
collection PubMed
description Malaria is a hazardous disease caused by Plasmodium parasites and often results in lethal complications, including malaria-associated acute respiratory distress syndrome (MA-ARDS). Parasite sequestration in the microvasculature is often observed, but its role in malaria pathogenesis and complications is still incompletely understood. We used skeleton binding protein-1 (SBP-1) KO parasites to study the role of sequestration in experimental MA-ARDS. The sequestration-deficiency of these SBP-1 KO parasites was confirmed with bioluminescence imaging and by measuring parasite accumulation in the lungs with RT-qPCR. The SBP-1 KO parasites induced similar lung pathology in the early stage of experimental MA-ARDS compared to wildtype (WT) parasites. Strikingly, the lung pathology resolved subsequently in more than 60% of the SBP-1 KO infected mice, resulting in prolonged survival despite the continuous presence of the parasite. This spontaneous disease resolution was associated with decreased inflammatory cytokine expression measured by RT-qPCR and lower expression of cytotoxic markers in pathogenic CD8(+) T cells in the lungs of SBP-1 KO infected mice. These data suggest that SBP-1-mediated parasite sequestration and subsequent high parasite load are not essential for the development of experimental MA-ARDS but inhibit the resolution of the disease.
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spelling pubmed-86597132021-12-10 Skeleton binding protein-1-mediated parasite sequestration inhibits spontaneous resolution of malaria-associated acute respiratory distress syndrome Possemiers, Hendrik Pham, Thao-Thy Coens, Marion Pollenus, Emilie Knoops, Sofie Noppen, Sam Vandermosten, Leen D’haese, Sigrid Dillemans, Luna Prenen, Fran Schols, Dominique Franke-Fayard, Blandine Van den Steen, Philippe E. PLoS Pathog Research Article Malaria is a hazardous disease caused by Plasmodium parasites and often results in lethal complications, including malaria-associated acute respiratory distress syndrome (MA-ARDS). Parasite sequestration in the microvasculature is often observed, but its role in malaria pathogenesis and complications is still incompletely understood. We used skeleton binding protein-1 (SBP-1) KO parasites to study the role of sequestration in experimental MA-ARDS. The sequestration-deficiency of these SBP-1 KO parasites was confirmed with bioluminescence imaging and by measuring parasite accumulation in the lungs with RT-qPCR. The SBP-1 KO parasites induced similar lung pathology in the early stage of experimental MA-ARDS compared to wildtype (WT) parasites. Strikingly, the lung pathology resolved subsequently in more than 60% of the SBP-1 KO infected mice, resulting in prolonged survival despite the continuous presence of the parasite. This spontaneous disease resolution was associated with decreased inflammatory cytokine expression measured by RT-qPCR and lower expression of cytotoxic markers in pathogenic CD8(+) T cells in the lungs of SBP-1 KO infected mice. These data suggest that SBP-1-mediated parasite sequestration and subsequent high parasite load are not essential for the development of experimental MA-ARDS but inhibit the resolution of the disease. Public Library of Science 2021-11-29 /pmc/articles/PMC8659713/ /pubmed/34843584 http://dx.doi.org/10.1371/journal.ppat.1010114 Text en © 2021 Possemiers et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://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
Possemiers, Hendrik
Pham, Thao-Thy
Coens, Marion
Pollenus, Emilie
Knoops, Sofie
Noppen, Sam
Vandermosten, Leen
D’haese, Sigrid
Dillemans, Luna
Prenen, Fran
Schols, Dominique
Franke-Fayard, Blandine
Van den Steen, Philippe E.
Skeleton binding protein-1-mediated parasite sequestration inhibits spontaneous resolution of malaria-associated acute respiratory distress syndrome
title Skeleton binding protein-1-mediated parasite sequestration inhibits spontaneous resolution of malaria-associated acute respiratory distress syndrome
title_full Skeleton binding protein-1-mediated parasite sequestration inhibits spontaneous resolution of malaria-associated acute respiratory distress syndrome
title_fullStr Skeleton binding protein-1-mediated parasite sequestration inhibits spontaneous resolution of malaria-associated acute respiratory distress syndrome
title_full_unstemmed Skeleton binding protein-1-mediated parasite sequestration inhibits spontaneous resolution of malaria-associated acute respiratory distress syndrome
title_short Skeleton binding protein-1-mediated parasite sequestration inhibits spontaneous resolution of malaria-associated acute respiratory distress syndrome
title_sort skeleton binding protein-1-mediated parasite sequestration inhibits spontaneous resolution of malaria-associated acute respiratory distress syndrome
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8659713/
https://www.ncbi.nlm.nih.gov/pubmed/34843584
http://dx.doi.org/10.1371/journal.ppat.1010114
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