Oxidative insult can induce malaria-protective trait of sickle and fetal erythrocytes

Carriers of haemoglobinopathies are protected from severe malaria, likely due to reduced surface expression of virulence factors. Here, Cyrklaff et al. show that, similar to haemoglobinopathies, a transient oxidative insult affects actin reorganization and mitigates the development of cerebral malar...

Full description

Bibliographic Details
Main Authors: Marek Cyrklaff, Sirikamol Srismith, Britta Nyboer, Kvetoslava Burda, Angelika Hoffmann, Felix Lasitschka, Sophie Adjalley, Cyrille Bisseye, Jacques Simpore, Ann-Kristin Mueller, Cecilia P. Sanchez, Friedrich Frischknecht, Michael Lanzer
Format: Article
Language:English
Published: Nature Portfolio 2016-11-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/ncomms13401
_version_ 1828976622978465792
author Marek Cyrklaff
Sirikamol Srismith
Britta Nyboer
Kvetoslava Burda
Angelika Hoffmann
Felix Lasitschka
Sophie Adjalley
Cyrille Bisseye
Jacques Simpore
Ann-Kristin Mueller
Cecilia P. Sanchez
Friedrich Frischknecht
Michael Lanzer
author_facet Marek Cyrklaff
Sirikamol Srismith
Britta Nyboer
Kvetoslava Burda
Angelika Hoffmann
Felix Lasitschka
Sophie Adjalley
Cyrille Bisseye
Jacques Simpore
Ann-Kristin Mueller
Cecilia P. Sanchez
Friedrich Frischknecht
Michael Lanzer
author_sort Marek Cyrklaff
collection DOAJ
description Carriers of haemoglobinopathies are protected from severe malaria, likely due to reduced surface expression of virulence factors. Here, Cyrklaff et al. show that, similar to haemoglobinopathies, a transient oxidative insult affects actin reorganization and mitigates the development of cerebral malaria in mice.
first_indexed 2024-12-14T14:40:48Z
format Article
id doaj.art-ad8f730d0ece4e689ceb8d952125110c
institution Directory Open Access Journal
issn 2041-1723
language English
last_indexed 2024-12-14T14:40:48Z
publishDate 2016-11-01
publisher Nature Portfolio
record_format Article
series Nature Communications
spelling doaj.art-ad8f730d0ece4e689ceb8d952125110c2022-12-21T22:57:25ZengNature PortfolioNature Communications2041-17232016-11-017111110.1038/ncomms13401Oxidative insult can induce malaria-protective trait of sickle and fetal erythrocytesMarek Cyrklaff0Sirikamol Srismith1Britta Nyboer2Kvetoslava Burda3Angelika Hoffmann4Felix Lasitschka5Sophie Adjalley6Cyrille Bisseye7Jacques Simpore8Ann-Kristin Mueller9Cecilia P. Sanchez10Friedrich Frischknecht11Michael Lanzer12Center of Infectious Diseases, Parasitology, Heidelberg University HospitalCenter of Infectious Diseases, Parasitology, Heidelberg University HospitalCenter of Infectious Diseases, Parasitology, Heidelberg University HospitalFaculty of Physics and Applied Computer Science, AGH—University of Science and Technology in KrakówDepartment of Neuroradiology, Heidelberg University HospitalGerman Centre for Infection Research (DZIF), Partner Site HeidelbergEuropean Molecular Biology Laboratory (EMBL)Biomolecular Research Center Pietro Annigoni, University of OuagadougouBiomolecular Research Center Pietro Annigoni, University of OuagadougouCenter of Infectious Diseases, Parasitology, Heidelberg University HospitalCenter of Infectious Diseases, Parasitology, Heidelberg University HospitalCenter of Infectious Diseases, Parasitology, Heidelberg University HospitalCenter of Infectious Diseases, Parasitology, Heidelberg University HospitalCarriers of haemoglobinopathies are protected from severe malaria, likely due to reduced surface expression of virulence factors. Here, Cyrklaff et al. show that, similar to haemoglobinopathies, a transient oxidative insult affects actin reorganization and mitigates the development of cerebral malaria in mice.https://doi.org/10.1038/ncomms13401
spellingShingle Marek Cyrklaff
Sirikamol Srismith
Britta Nyboer
Kvetoslava Burda
Angelika Hoffmann
Felix Lasitschka
Sophie Adjalley
Cyrille Bisseye
Jacques Simpore
Ann-Kristin Mueller
Cecilia P. Sanchez
Friedrich Frischknecht
Michael Lanzer
Oxidative insult can induce malaria-protective trait of sickle and fetal erythrocytes
Nature Communications
title Oxidative insult can induce malaria-protective trait of sickle and fetal erythrocytes
title_full Oxidative insult can induce malaria-protective trait of sickle and fetal erythrocytes
title_fullStr Oxidative insult can induce malaria-protective trait of sickle and fetal erythrocytes
title_full_unstemmed Oxidative insult can induce malaria-protective trait of sickle and fetal erythrocytes
title_short Oxidative insult can induce malaria-protective trait of sickle and fetal erythrocytes
title_sort oxidative insult can induce malaria protective trait of sickle and fetal erythrocytes
url https://doi.org/10.1038/ncomms13401
work_keys_str_mv AT marekcyrklaff oxidativeinsultcaninducemalariaprotectivetraitofsickleandfetalerythrocytes
AT sirikamolsrismith oxidativeinsultcaninducemalariaprotectivetraitofsickleandfetalerythrocytes
AT brittanyboer oxidativeinsultcaninducemalariaprotectivetraitofsickleandfetalerythrocytes
AT kvetoslavaburda oxidativeinsultcaninducemalariaprotectivetraitofsickleandfetalerythrocytes
AT angelikahoffmann oxidativeinsultcaninducemalariaprotectivetraitofsickleandfetalerythrocytes
AT felixlasitschka oxidativeinsultcaninducemalariaprotectivetraitofsickleandfetalerythrocytes
AT sophieadjalley oxidativeinsultcaninducemalariaprotectivetraitofsickleandfetalerythrocytes
AT cyrillebisseye oxidativeinsultcaninducemalariaprotectivetraitofsickleandfetalerythrocytes
AT jacquessimpore oxidativeinsultcaninducemalariaprotectivetraitofsickleandfetalerythrocytes
AT annkristinmueller oxidativeinsultcaninducemalariaprotectivetraitofsickleandfetalerythrocytes
AT ceciliapsanchez oxidativeinsultcaninducemalariaprotectivetraitofsickleandfetalerythrocytes
AT friedrichfrischknecht oxidativeinsultcaninducemalariaprotectivetraitofsickleandfetalerythrocytes
AT michaellanzer oxidativeinsultcaninducemalariaprotectivetraitofsickleandfetalerythrocytes