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The Basophil IL-18 Receptor Precisely Regulates the Host Immune Response and Malaria-Induced Intestinal Permeability and Alters Parasite Transmission to Mosquitoes without Effect on Gametocytemia

We have recently demonstrated that basophils are protective against intestinal permeability during malaria and contribute to reduced parasite transmission to mosquitoes. Given that IL-18 is an early cytokine/alarmin in malaria and has been shown to activate basophils, we sought to determine the role...

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Autores principales: Donnelly, Erinn L., Céspedes, Nora, Hansten, Gretchen, Wagers, Delaney, Briggs, Anna M., Lowder, Casey, Schauer, Joseph, Haapanen, Lori, Van de Water, Judy, Luckhart, Shirley
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9977167/
https://www.ncbi.nlm.nih.gov/pubmed/35985797
http://dx.doi.org/10.4049/immunohorizons.2200057
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author Donnelly, Erinn L.
Céspedes, Nora
Hansten, Gretchen
Wagers, Delaney
Briggs, Anna M.
Lowder, Casey
Schauer, Joseph
Haapanen, Lori
Van de Water, Judy
Luckhart, Shirley
author_facet Donnelly, Erinn L.
Céspedes, Nora
Hansten, Gretchen
Wagers, Delaney
Briggs, Anna M.
Lowder, Casey
Schauer, Joseph
Haapanen, Lori
Van de Water, Judy
Luckhart, Shirley
author_sort Donnelly, Erinn L.
collection PubMed
description We have recently demonstrated that basophils are protective against intestinal permeability during malaria and contribute to reduced parasite transmission to mosquitoes. Given that IL-18 is an early cytokine/alarmin in malaria and has been shown to activate basophils, we sought to determine the role of the basophil IL-18R in this protective phenotype. To address this, we infected control [IL18r(flox/flox) or basoIL-18R (+)] mice and mice with basophils lacking the IL-18R [IL18r(flox/flox) × Basoph8 or basoIL-18R (−)] with Plasmodium yoelii yoelii 17XNL, a nonlethal strain of mouse malaria. Postinfection (PI), intestinal permeability, ileal mastocytosis, bacteremia, and levels of ileal and plasma cytokines and chemokines were measured through 10 d PI. BasoIL-18R (−) mice exhibited greater intestinal permeability relative to basoIL-18R (+) mice, along with increased plasma levels of proinflammatory cytokines at a single time point PI, day 4 PI, a pattern not observed in basoIL-18R (+) mice. Surprisingly, mosquitoes fed on basoIL-18R (−) mice became infected less frequently than mosquitoes fed on basoIL-18R (+) mice, with no difference in gametocytemia, a pattern that was distinct from that observed previously with basophil-depleted mice. These findings suggest that early basophil-dependent protection of the intestinal barrier in malaria is mediated by IL-18, and that basophil IL-18R–dependent signaling differentially regulates the inflammatory response to infection and parasite transmission.
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spelling pubmed-99771672023-03-01 The Basophil IL-18 Receptor Precisely Regulates the Host Immune Response and Malaria-Induced Intestinal Permeability and Alters Parasite Transmission to Mosquitoes without Effect on Gametocytemia Donnelly, Erinn L. Céspedes, Nora Hansten, Gretchen Wagers, Delaney Briggs, Anna M. Lowder, Casey Schauer, Joseph Haapanen, Lori Van de Water, Judy Luckhart, Shirley Immunohorizons Article We have recently demonstrated that basophils are protective against intestinal permeability during malaria and contribute to reduced parasite transmission to mosquitoes. Given that IL-18 is an early cytokine/alarmin in malaria and has been shown to activate basophils, we sought to determine the role of the basophil IL-18R in this protective phenotype. To address this, we infected control [IL18r(flox/flox) or basoIL-18R (+)] mice and mice with basophils lacking the IL-18R [IL18r(flox/flox) × Basoph8 or basoIL-18R (−)] with Plasmodium yoelii yoelii 17XNL, a nonlethal strain of mouse malaria. Postinfection (PI), intestinal permeability, ileal mastocytosis, bacteremia, and levels of ileal and plasma cytokines and chemokines were measured through 10 d PI. BasoIL-18R (−) mice exhibited greater intestinal permeability relative to basoIL-18R (+) mice, along with increased plasma levels of proinflammatory cytokines at a single time point PI, day 4 PI, a pattern not observed in basoIL-18R (+) mice. Surprisingly, mosquitoes fed on basoIL-18R (−) mice became infected less frequently than mosquitoes fed on basoIL-18R (+) mice, with no difference in gametocytemia, a pattern that was distinct from that observed previously with basophil-depleted mice. These findings suggest that early basophil-dependent protection of the intestinal barrier in malaria is mediated by IL-18, and that basophil IL-18R–dependent signaling differentially regulates the inflammatory response to infection and parasite transmission. 2022-08-19 /pmc/articles/PMC9977167/ /pubmed/35985797 http://dx.doi.org/10.4049/immunohorizons.2200057 Text en https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the CC BY 4.0 Unported license.
spellingShingle Article
Donnelly, Erinn L.
Céspedes, Nora
Hansten, Gretchen
Wagers, Delaney
Briggs, Anna M.
Lowder, Casey
Schauer, Joseph
Haapanen, Lori
Van de Water, Judy
Luckhart, Shirley
The Basophil IL-18 Receptor Precisely Regulates the Host Immune Response and Malaria-Induced Intestinal Permeability and Alters Parasite Transmission to Mosquitoes without Effect on Gametocytemia
title The Basophil IL-18 Receptor Precisely Regulates the Host Immune Response and Malaria-Induced Intestinal Permeability and Alters Parasite Transmission to Mosquitoes without Effect on Gametocytemia
title_full The Basophil IL-18 Receptor Precisely Regulates the Host Immune Response and Malaria-Induced Intestinal Permeability and Alters Parasite Transmission to Mosquitoes without Effect on Gametocytemia
title_fullStr The Basophil IL-18 Receptor Precisely Regulates the Host Immune Response and Malaria-Induced Intestinal Permeability and Alters Parasite Transmission to Mosquitoes without Effect on Gametocytemia
title_full_unstemmed The Basophil IL-18 Receptor Precisely Regulates the Host Immune Response and Malaria-Induced Intestinal Permeability and Alters Parasite Transmission to Mosquitoes without Effect on Gametocytemia
title_short The Basophil IL-18 Receptor Precisely Regulates the Host Immune Response and Malaria-Induced Intestinal Permeability and Alters Parasite Transmission to Mosquitoes without Effect on Gametocytemia
title_sort basophil il-18 receptor precisely regulates the host immune response and malaria-induced intestinal permeability and alters parasite transmission to mosquitoes without effect on gametocytemia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9977167/
https://www.ncbi.nlm.nih.gov/pubmed/35985797
http://dx.doi.org/10.4049/immunohorizons.2200057
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