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Integrated Cytokine and Metabolic Analysis of Pathological Responses to Parasite Exposure in Rodents

[Image: see text] Parasitic infections cause a myriad of responses in their mammalian hosts, on immune as well as on metabolic level. A multiplex panel of cytokines and metabolites derived from four parasite-rodent models, namely, Plasmodium berghei−mouse, Trypanosoma brucei brucei−mouse, Schistosom...

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Autores principales: Saric, Jasmina, Li, Jia V., Swann, Jonathan R., Utzinger, Jürg, Calvert, Gail, Nicholson, Jeremy K., Dirnhofer, Stephan, Dallman, Maggie J., Bictash, Magda, Holmes, Elaine
Formato: Texto
Lenguaje:English
Publicado: American Chemical Society 2010
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2865884/
https://www.ncbi.nlm.nih.gov/pubmed/20092362
http://dx.doi.org/10.1021/pr901019z
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author Saric, Jasmina
Li, Jia V.
Swann, Jonathan R.
Utzinger, Jürg
Calvert, Gail
Nicholson, Jeremy K.
Dirnhofer, Stephan
Dallman, Maggie J.
Bictash, Magda
Holmes, Elaine
author_facet Saric, Jasmina
Li, Jia V.
Swann, Jonathan R.
Utzinger, Jürg
Calvert, Gail
Nicholson, Jeremy K.
Dirnhofer, Stephan
Dallman, Maggie J.
Bictash, Magda
Holmes, Elaine
author_sort Saric, Jasmina
collection PubMed
description [Image: see text] Parasitic infections cause a myriad of responses in their mammalian hosts, on immune as well as on metabolic level. A multiplex panel of cytokines and metabolites derived from four parasite-rodent models, namely, Plasmodium berghei−mouse, Trypanosoma brucei brucei−mouse, Schistosoma mansoni−mouse, and Fasciola hepatica−rat were statistically coanalyzed. (1)H NMR spectroscopy and multivariate statistical analysis were used to characterize the urine and plasma metabolite profiles in infected and noninfected animals. Each parasite generated a unique metabolic signature in the host. Plasma cytokine concentrations were obtained using the ‘Meso Scale Discovery’ multi cytokine assay platform. Multivariate data integration methods were subsequently used to elucidate the component of the metabolic signature which is associated with inflammation and to determine specific metabolic correlates with parasite-induced changes in plasma cytokine levels. For example, the relative levels of acetyl glycoproteins extracted from the plasma metabolite profile in the P. berghei-infected mice were statistically correlated with IFN-γ, whereas the same cytokine was anticorrelated with glucose levels. Both the metabolic and the cytokine data showed a similar spatial distribution in principal component analysis scores plots constructed for the combined murine data, with samples from all infected animals clustering according to the parasite species and whereby the protozoan infections (P. berghei and T. b. brucei) grouped separately from the helminth infection (S. mansoni). For S. mansoni, the main infection-responsive cytokines were IL-4 and IL-5, which covaried with lactate, choline, and d-3-hydroxybutyrate. This study demonstrates that the inherently differential immune response to single- and multicellular parasites not only manifests in the cytokine expression, but also consequently imprints on the metabolic signature, and calls for in-depth analysis to further explore direct links between immune features and biochemical pathways.
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spelling pubmed-28658842010-05-07 Integrated Cytokine and Metabolic Analysis of Pathological Responses to Parasite Exposure in Rodents Saric, Jasmina Li, Jia V. Swann, Jonathan R. Utzinger, Jürg Calvert, Gail Nicholson, Jeremy K. Dirnhofer, Stephan Dallman, Maggie J. Bictash, Magda Holmes, Elaine J Proteome Res [Image: see text] Parasitic infections cause a myriad of responses in their mammalian hosts, on immune as well as on metabolic level. A multiplex panel of cytokines and metabolites derived from four parasite-rodent models, namely, Plasmodium berghei−mouse, Trypanosoma brucei brucei−mouse, Schistosoma mansoni−mouse, and Fasciola hepatica−rat were statistically coanalyzed. (1)H NMR spectroscopy and multivariate statistical analysis were used to characterize the urine and plasma metabolite profiles in infected and noninfected animals. Each parasite generated a unique metabolic signature in the host. Plasma cytokine concentrations were obtained using the ‘Meso Scale Discovery’ multi cytokine assay platform. Multivariate data integration methods were subsequently used to elucidate the component of the metabolic signature which is associated with inflammation and to determine specific metabolic correlates with parasite-induced changes in plasma cytokine levels. For example, the relative levels of acetyl glycoproteins extracted from the plasma metabolite profile in the P. berghei-infected mice were statistically correlated with IFN-γ, whereas the same cytokine was anticorrelated with glucose levels. Both the metabolic and the cytokine data showed a similar spatial distribution in principal component analysis scores plots constructed for the combined murine data, with samples from all infected animals clustering according to the parasite species and whereby the protozoan infections (P. berghei and T. b. brucei) grouped separately from the helminth infection (S. mansoni). For S. mansoni, the main infection-responsive cytokines were IL-4 and IL-5, which covaried with lactate, choline, and d-3-hydroxybutyrate. This study demonstrates that the inherently differential immune response to single- and multicellular parasites not only manifests in the cytokine expression, but also consequently imprints on the metabolic signature, and calls for in-depth analysis to further explore direct links between immune features and biochemical pathways. American Chemical Society 2010-01-22 2010-05-07 /pmc/articles/PMC2865884/ /pubmed/20092362 http://dx.doi.org/10.1021/pr901019z Text en Copyright © 2010 American Chemical Society http://pubs.acs.org This is an open-access article distributed under the ACS AuthorChoice Terms & Conditions. Any use of this article, must conform to the terms of that license which are available at http://pubs.acs.org.
spellingShingle Saric, Jasmina
Li, Jia V.
Swann, Jonathan R.
Utzinger, Jürg
Calvert, Gail
Nicholson, Jeremy K.
Dirnhofer, Stephan
Dallman, Maggie J.
Bictash, Magda
Holmes, Elaine
Integrated Cytokine and Metabolic Analysis of Pathological Responses to Parasite Exposure in Rodents
title Integrated Cytokine and Metabolic Analysis of Pathological Responses to Parasite Exposure in Rodents
title_full Integrated Cytokine and Metabolic Analysis of Pathological Responses to Parasite Exposure in Rodents
title_fullStr Integrated Cytokine and Metabolic Analysis of Pathological Responses to Parasite Exposure in Rodents
title_full_unstemmed Integrated Cytokine and Metabolic Analysis of Pathological Responses to Parasite Exposure in Rodents
title_short Integrated Cytokine and Metabolic Analysis of Pathological Responses to Parasite Exposure in Rodents
title_sort integrated cytokine and metabolic analysis of pathological responses to parasite exposure in rodents
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2865884/
https://www.ncbi.nlm.nih.gov/pubmed/20092362
http://dx.doi.org/10.1021/pr901019z
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