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A worm's best friend: recruitment of neutrophils by Wolbachia confounds eosinophil degranulation against the filarial nematode Onchocerca ochengi

Onchocerca ochengi, a filarial parasite of cattle, represents the closest relative of the human pathogen, Onchocerca volvulus. Both species harbour Wolbachia endosymbionts and are remarkable in that adult female worms remain viable but sessile for many years while surrounded by host cells and antibo...

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Autores principales: Hansen, Rowena D. E., Trees, Alexander J., Bah, Germanus S., Hetzel, Udo, Martin, Coralie, Bain, Odile, Tanya, Vincent N., Makepeace, Benjamin L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3119012/
https://www.ncbi.nlm.nih.gov/pubmed/21177682
http://dx.doi.org/10.1098/rspb.2010.2367
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author Hansen, Rowena D. E.
Trees, Alexander J.
Bah, Germanus S.
Hetzel, Udo
Martin, Coralie
Bain, Odile
Tanya, Vincent N.
Makepeace, Benjamin L.
author_facet Hansen, Rowena D. E.
Trees, Alexander J.
Bah, Germanus S.
Hetzel, Udo
Martin, Coralie
Bain, Odile
Tanya, Vincent N.
Makepeace, Benjamin L.
author_sort Hansen, Rowena D. E.
collection PubMed
description Onchocerca ochengi, a filarial parasite of cattle, represents the closest relative of the human pathogen, Onchocerca volvulus. Both species harbour Wolbachia endosymbionts and are remarkable in that adult female worms remain viable but sessile for many years while surrounded by host cells and antibodies. The basis of the symbiosis between filariae and Wolbachia is thought to be metabolic, although a role for Wolbachia in immune evasion has received little attention. Neutrophils are attracted to Wolbachia, but following antibiotic chemotherapy they are replaced by eosinophils that degranulate on the worm cuticle. However, it is unclear whether the eosinophils are involved in parasite killing or if they are attracted secondarily to dying worms. In this study, cattle infected with Onchocerca ochengi received adulticidal regimens of oxytetracycline or melarsomine. In contrast to oxytetracycline, melarsomine did not directly affect Wolbachia viability. Eosinophil degranulation increased significantly only in the oxytetracycline group; whereas nodular gene expression of bovine neutrophilic chemokines was lowest in this group. Moreover, intense eosinophil degranulation was initially associated with worm vitality, not degeneration. Taken together, these data offer strong support for the hypothesis that Wolbachia confers longevity on O. ochengi through a defensive mutualism, which diverts a potentially lethal effector cell response.
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spelling pubmed-31190122011-07-06 A worm's best friend: recruitment of neutrophils by Wolbachia confounds eosinophil degranulation against the filarial nematode Onchocerca ochengi Hansen, Rowena D. E. Trees, Alexander J. Bah, Germanus S. Hetzel, Udo Martin, Coralie Bain, Odile Tanya, Vincent N. Makepeace, Benjamin L. Proc Biol Sci Research Articles Onchocerca ochengi, a filarial parasite of cattle, represents the closest relative of the human pathogen, Onchocerca volvulus. Both species harbour Wolbachia endosymbionts and are remarkable in that adult female worms remain viable but sessile for many years while surrounded by host cells and antibodies. The basis of the symbiosis between filariae and Wolbachia is thought to be metabolic, although a role for Wolbachia in immune evasion has received little attention. Neutrophils are attracted to Wolbachia, but following antibiotic chemotherapy they are replaced by eosinophils that degranulate on the worm cuticle. However, it is unclear whether the eosinophils are involved in parasite killing or if they are attracted secondarily to dying worms. In this study, cattle infected with Onchocerca ochengi received adulticidal regimens of oxytetracycline or melarsomine. In contrast to oxytetracycline, melarsomine did not directly affect Wolbachia viability. Eosinophil degranulation increased significantly only in the oxytetracycline group; whereas nodular gene expression of bovine neutrophilic chemokines was lowest in this group. Moreover, intense eosinophil degranulation was initially associated with worm vitality, not degeneration. Taken together, these data offer strong support for the hypothesis that Wolbachia confers longevity on O. ochengi through a defensive mutualism, which diverts a potentially lethal effector cell response. The Royal Society 2011-08-07 2010-12-22 /pmc/articles/PMC3119012/ /pubmed/21177682 http://dx.doi.org/10.1098/rspb.2010.2367 Text en This Journal is © 2010 The Royal Society http://creativecommons.org/licenses/by/3.0/ 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 work is properly cited.
spellingShingle Research Articles
Hansen, Rowena D. E.
Trees, Alexander J.
Bah, Germanus S.
Hetzel, Udo
Martin, Coralie
Bain, Odile
Tanya, Vincent N.
Makepeace, Benjamin L.
A worm's best friend: recruitment of neutrophils by Wolbachia confounds eosinophil degranulation against the filarial nematode Onchocerca ochengi
title A worm's best friend: recruitment of neutrophils by Wolbachia confounds eosinophil degranulation against the filarial nematode Onchocerca ochengi
title_full A worm's best friend: recruitment of neutrophils by Wolbachia confounds eosinophil degranulation against the filarial nematode Onchocerca ochengi
title_fullStr A worm's best friend: recruitment of neutrophils by Wolbachia confounds eosinophil degranulation against the filarial nematode Onchocerca ochengi
title_full_unstemmed A worm's best friend: recruitment of neutrophils by Wolbachia confounds eosinophil degranulation against the filarial nematode Onchocerca ochengi
title_short A worm's best friend: recruitment of neutrophils by Wolbachia confounds eosinophil degranulation against the filarial nematode Onchocerca ochengi
title_sort worm's best friend: recruitment of neutrophils by wolbachia confounds eosinophil degranulation against the filarial nematode onchocerca ochengi
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3119012/
https://www.ncbi.nlm.nih.gov/pubmed/21177682
http://dx.doi.org/10.1098/rspb.2010.2367
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