Literature DB >> 22549022

T cell-derived IL-10 and its impact on the regulation of host responses during malaria.

Ana Paula Freitas do Rosario1, Jean Langhorne.   

Abstract

Despite intense research, malaria still is the one of the most devastating diseases killing more people than any other parasitic infection. In an attempt to control the infection, the host immune system produces a potent pro-inflammatory response. However, this response is also associated with complications, such as severe anaemia, hypoglycaemia and cerebral malaria. This pronounced production of pro-inflammatory cytokines response is a common feature of malaria caused by parasites infecting humans as well as rodents and primates. A balance between pro- and anti-inflammatory responses may be fundamental to the elimination of the parasite without inducing excessive host pathology. IL-10 is a key cytokine that has been shown to have an important regulatory function in establishing this balance in malaria. Here we discuss which cells can produce IL-10 during infection, and present an overview of the evidence showing that T-cell derived IL-10 plays an important role in regulating malaria pathology. Many different subsets of T cells can produce IL-10, however, evidence is accumulating that it is effector Th1 CD4(+) T cells which provide the crucial source that down-regulates inflammatory pathology during blood-stage malaria infections.
Copyright © 2012 Australian Society for Parasitology Inc. Published by Elsevier Ltd. All rights reserved.

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Year:  2012        PMID: 22549022     DOI: 10.1016/j.ijpara.2012.03.010

Source DB:  PubMed          Journal:  Int J Parasitol        ISSN: 0020-7519            Impact factor:   3.981


  43 in total

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2.  Effector Phenotype of Plasmodium falciparum-Specific CD4+ T Cells Is Influenced by Both Age and Transmission Intensity in Naturally Exposed Populations.

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3.  Erythropoietin protects against murine cerebral malaria through actions on host cellular immunity.

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Journal:  Infect Immun       Date:  2013-10-14       Impact factor: 3.441

4.  Th1-like Plasmodium-Specific Memory CD4+ T Cells Support Humoral Immunity.

Authors:  Ryan A Zander; Rahul Vijay; Angela D Pack; Jenna J Guthmiller; Amy C Graham; Scott E Lindner; Ashley M Vaughan; Stefan H I Kappe; Noah S Butler
Journal:  Cell Rep       Date:  2017-11-14       Impact factor: 9.423

Review 5.  Malaria Pathogenesis.

Authors:  Danny A Milner
Journal:  Cold Spring Harb Perspect Med       Date:  2018-01-02       Impact factor: 6.915

6.  Maternal Microchimerism Predicts Increased Infection but Decreased Disease due to Plasmodium falciparum During Early Childhood.

Authors:  Whitney E Harrington; Sami B Kanaan; Atis Muehlenbachs; Robert Morrison; Philip Stevenson; Michal Fried; Patrick E Duffy; J Lee Nelson
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7.  Chemokine levels and parasite- and allergen-specific antibody responses in children and adults with severe or uncomplicated Plasmodium falciparum malaria.

Authors:  B Wangala; A Vovor; R G Gantin; Y F Agbeko; C J Lechner; X Huang; P T Soboslay; C Köhler
Journal:  Eur J Microbiol Immunol (Bp)       Date:  2015-03-26

8.  Humoral and cellular immunity to Plasmodium falciparum merozoite surface protein 1 and protection from infection with blood-stage parasites.

Authors:  Ann M Moormann; Peter Odada Sumba; Kiprotich Chelimo; Hua Fang; Daniel J Tisch; Arlene E Dent; Chandy C John; Carole A Long; John Vulule; James W Kazura
Journal:  J Infect Dis       Date:  2013-03-28       Impact factor: 5.226

9.  Th1-like Plasmodium-Specific Memory CD4+ T Cells Support Humoral Immunity.

Authors:  Ryan A Zander; Rahul Vijay; Angela D Pack; Jenna J Guthmiller; Amy C Graham; Scott E Lindner; Ashley M Vaughan; Stefan H I Kappe; Noah S Butler
Journal:  Cell Rep       Date:  2018-04-24       Impact factor: 9.423

Review 10.  Regulation of immunopathogenesis during Plasmodium and Toxoplasma infections: more parallels than distinctions?

Authors:  Noah S Butler; Tajie H Harris; Ira J Blader
Journal:  Trends Parasitol       Date:  2013-11-01
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