Within-host mechanisms of immune regulation explain the contrasting dynamics of two helminth species in both single and dual infections.

Variation in the intensity and duration of infections is often driven by variation in the network and strength of host immune responses. While many of the immune mechanisms and components are known for parasitic helminths, how these relationships change from single to multiple infections and impact...

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Main Authors: Chiara Vanalli, Lorenzo Mari, Lorenzo Righetto, Renato Casagrandi, Marino Gatto, Isabella M Cattadori
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2020-11-01
Series:PLoS Computational Biology
Online Access:https://doi.org/10.1371/journal.pcbi.1008438
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spelling doaj-3d3e533e29c54e64a33c79bd17805c502021-04-21T15:45:24ZengPublic Library of Science (PLoS)PLoS Computational Biology1553-734X1553-73582020-11-011611e100843810.1371/journal.pcbi.1008438Within-host mechanisms of immune regulation explain the contrasting dynamics of two helminth species in both single and dual infections.Chiara VanalliLorenzo MariLorenzo RighettoRenato CasagrandiMarino GattoIsabella M CattadoriVariation in the intensity and duration of infections is often driven by variation in the network and strength of host immune responses. While many of the immune mechanisms and components are known for parasitic helminths, how these relationships change from single to multiple infections and impact helminth dynamics remains largely unclear. Here, we used laboratory data from a rabbit-helminth system and developed a within-host model of infection to investigate different scenarios of immune regulation in rabbits infected with one or two helminth species. Model selection suggests that the immunological pathways activated against Trichostrongylus retortaeformis and Graphidium strigosum are similar. However, differences in the strength of these immune signals lead to the contrasting dynamics of infections, where the first parasite is rapidly cleared and the latter persists with high intensities. In addition to the reactions identified in single infections, rabbits with both helminths also activate new pathways that asymmetrically affect the dynamics of the two species. These new signals alter the intensities but not the general trend of the infections. The type of interactions described can be expected in many other host-helminth systems. Our immune framework is flexible enough to capture different mechanisms and their complexity, and provides essential insights to the understanding of multi-helminth infections.https://doi.org/10.1371/journal.pcbi.1008438
collection DOAJ
language English
format Article
sources DOAJ
author Chiara Vanalli
Lorenzo Mari
Lorenzo Righetto
Renato Casagrandi
Marino Gatto
Isabella M Cattadori
spellingShingle Chiara Vanalli
Lorenzo Mari
Lorenzo Righetto
Renato Casagrandi
Marino Gatto
Isabella M Cattadori
Within-host mechanisms of immune regulation explain the contrasting dynamics of two helminth species in both single and dual infections.
PLoS Computational Biology
author_facet Chiara Vanalli
Lorenzo Mari
Lorenzo Righetto
Renato Casagrandi
Marino Gatto
Isabella M Cattadori
author_sort Chiara Vanalli
title Within-host mechanisms of immune regulation explain the contrasting dynamics of two helminth species in both single and dual infections.
title_short Within-host mechanisms of immune regulation explain the contrasting dynamics of two helminth species in both single and dual infections.
title_full Within-host mechanisms of immune regulation explain the contrasting dynamics of two helminth species in both single and dual infections.
title_fullStr Within-host mechanisms of immune regulation explain the contrasting dynamics of two helminth species in both single and dual infections.
title_full_unstemmed Within-host mechanisms of immune regulation explain the contrasting dynamics of two helminth species in both single and dual infections.
title_sort within-host mechanisms of immune regulation explain the contrasting dynamics of two helminth species in both single and dual infections.
publisher Public Library of Science (PLoS)
series PLoS Computational Biology
issn 1553-734X
1553-7358
publishDate 2020-11-01
description Variation in the intensity and duration of infections is often driven by variation in the network and strength of host immune responses. While many of the immune mechanisms and components are known for parasitic helminths, how these relationships change from single to multiple infections and impact helminth dynamics remains largely unclear. Here, we used laboratory data from a rabbit-helminth system and developed a within-host model of infection to investigate different scenarios of immune regulation in rabbits infected with one or two helminth species. Model selection suggests that the immunological pathways activated against Trichostrongylus retortaeformis and Graphidium strigosum are similar. However, differences in the strength of these immune signals lead to the contrasting dynamics of infections, where the first parasite is rapidly cleared and the latter persists with high intensities. In addition to the reactions identified in single infections, rabbits with both helminths also activate new pathways that asymmetrically affect the dynamics of the two species. These new signals alter the intensities but not the general trend of the infections. The type of interactions described can be expected in many other host-helminth systems. Our immune framework is flexible enough to capture different mechanisms and their complexity, and provides essential insights to the understanding of multi-helminth infections.
url https://doi.org/10.1371/journal.pcbi.1008438
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