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CD25+CD4+ cells contribute to Th2 polarization during helminth infection by suppressing Th1 response development
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scientific journal article
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rdf:type
Item
description
article scientifique publié en 2004
(fr)
artículu científicu espublizáu en 2004
(ast)
vědecký článek publikovaný v roce 2004
(cs)
2004 թուականի Յուլիսին հրատարակուած գիտական յօդուած
(hyw)
наукова стаття, опублікована в липні 2004
(uk)
2004 թվականի հուլիսին հրատարակված գիտական հոդված
(hy)
vedecký článok (publikovaný 2004/07/15)
(sk)
مقالة علمية (نشرت في 15-7-2004)
(ar)
wetenschappelijk artikel (gepubliceerd op 2004/07/15)
(nl)
scientific journal article
(en)
im Juli 2004 veröffentlichter wissenschaftlicher Artikel
(de)
publication date
wds:Q28594824-313D8D12-05B1-4BC4-8753-87CD9CC12482
publication date
2004-07-15 00:00:00Z
(
xsd:dateTime
)
language of work or name
wds:Q28594824-C14F4E46-38A1-4A70-A1F3-FDD925D04A2C
language of work or name
English
author name string
wds:Q28594824-0DFBB8ED-B1B5-492C-AC5F-F28075D4D896
wds:Q28594824-E384E240-AC38-4436-B015-67806E7E6AE7
OpenCitations bibliographic resource ID
wds:Q28594824-CF3E26A2-BA73-46F7-999D-28DBA9580982
OpenCitations bibliographic resource ID
https://w3id.org/oc/corpus/br/925820
author name string
Edward J. Pearce
Amy S. McKee
OpenCitations bibliographic resource ID
925820
rdfs:label
CD25+CD4+ cells contribute to Th2 polarization during helminth infection by suppressing Th1 response development
(en)
CD25+CD4+ cells contribute to Th2 polarization during helminth infection by suppressing Th1 response development
(nl)
CD25+CD4+ cells contribute to Th2 polarization during helminth infection by suppressing Th1 response development
(ast)
skos:prefLabel
CD25+CD4+ cells contribute to Th2 polarization during helminth infection by suppressing Th1 response development
(en)
CD25+CD4+ cells contribute to Th2 polarization during helminth infection by suppressing Th1 response development
(nl)
CD25+CD4+ cells contribute to Th2 polarization during helminth infection by suppressing Th1 response development
(ast)
name
CD25+CD4+ cells contribute to Th2 polarization during helminth infection by suppressing Th1 response development
(en)
CD25+CD4+ cells contribute to Th2 polarization during helminth infection by suppressing Th1 response development
(nl)
CD25+CD4+ cells contribute to Th2 polarization during helminth infection by suppressing Th1 response development
(ast)
title
wds:Q28594824-1ADC4677-227F-4C42-BB5D-38829EA46A71
title
CD25+CD4+ cells contribute to Th2 polarization during helminth infection by suppressing Th1 response development
(en)
page(s)
wds:Q28594824-9FA16DEC-DCE6-4610-B28A-A9B976D4F0E2
page(s)
1224–1231
instance of
wds:Q28594824-A5F13AB3-15C0-4D36-A992-4A8F693003C6
instance of
scholarly article
main subject
wds:Q28594824-0DFBF643-40E6-484E-A75F-619EBC192DCB
wds:Q28594824-348C6FDA-6534-44EC-B271-C0D45DCB21E7
wds:Q28594824-3fade18b-48b8-299a-6eb5-0e072ce14b12
wds:Q28594824-506FC497-F628-42E0-9D13-4FF761A210CD
wds:Q28594824-52CB551A-FE0E-414A-AC6F-81DD9360FEE9
wds:Q28594824-590AAEB4-7174-4660-A0F4-A697CADEC8C4
wds:Q28594824-956D7B75-DF1A-4D8A-8A15-05BCA12A5618
wds:Q28594824-B85419EF-BDDA-4DBD-BDE8-98709E548C5E
wds:Q28594824-BA308F32-03B3-4F29-8D69-9AF326157BB2
wds:Q28594824-DD5947A8-92E4-40BC-8325-BD2636F46471
wds:Q28594824-E79D16D6-05C1-4109-8224-0D86470255EF
wds:Q28594824-FC1B584E-9342-4D94-AD0C-633146F6EA3F
main subject
wd:Q21494041
parasitic helminthiasis infectious disease
Interleukin 13
Interleukin 5
Interleukin 6
Interleukin 10
CD40 antigen
Interleukin 12b
Interferon gamma
Interleukin 2 receptor, alpha chain
CD86 antigen
CD80 antigen
PubMed ID
wds:Q28594824-07DA1428-068B-445F-BF89-07F61A307EBD
PubMed ID
http://rdf.ncbi.nlm.nih.gov/pubchem/reference/15240714
PubMed ID
15240714
published in
wds:Q28594824-912D0AA4-8A42-400F-8D32-257827113BAE
published in
Journal of Immunology
issue
wds:Q28594824-5D982419-CBCA-453E-B3CA-ED7E23D2A084
volume
wds:Q28594824-769821A3-D462-4534-8B29-49B2FC0C183C
issue
2
volume
173
DOI
wds:Q28594824-CD9EC154-BE50-430E-B792-44DAA4C9AE2C
DOI
http://dx.doi.org/10.4049/JIMMUNOL.173.2.1224
DOI
10.4049/JIMMUNOL.173.2.1224
on focus list of Wikimedia project
wds:Q28594824-4278E5F3-5118-4E9D-A508-B593089DE116
on focus list of Wikimedia project
ScienceSource
ResearchGate publication ID
wds:Q28594824-B65C2A5C-D7A2-47AA-ABDD-AA5114CC5352
ResearchGate publication ID
8467980
is
about
of
https://www.wikidata.org/wiki/Special:EntityData/Q28594824
is
cites work
of
S. mansoni bolsters anti-viral immunity in the murine respiratory tract
Concurrent bacterial stimulation alters the function of helminth-activated dendritic cells, resulting in IL-17 induction.
Suppression of TH2-type allergic reactions by helminth infection.
A worm's eye view of the immune system: consequences for evolution of human autoimmune disease.
Coinfection with the intestinal nematode Heligmosomoides polygyrus markedly reduces hepatic egg-induced immunopathology and proinflammatory cytokines in mouse models of severe schistosomiasis.
Regulatory T cell suppressive potency dictates the balance between bacterial proliferation and clearance during persistent Salmonella infection
Regulatory T cells in microbial infection
The role of natural regulatory T cells in infection
Mucosal immunity and allergic responses: lack of regulation and/or lack of microbial stimulation?
Parasitic worms and inflammatory diseases
Worms and allergy
Host cytokine production, lymphoproliferation, and antibody responses during the course of Ancylostoma ceylanicum infection in the Golden Syrian hamster
Suppression of allergic airway inflammation by helminth-induced regulatory T cells
Regulatory T cells and infection: a dangerous necessity
Distinct sources and targets of IL-10 during dendritic cell-driven Th1 and Th2 responses in vivo.
Helicobacter infection and gastric neoplasia
The novel CD4+CD25+ regulatory T cell effector molecule fibrinogen-like protein 2 contributes to the outcome of murine fulminant viral hepatitis
Comparative immunology of human and animal models of hookworm infection
Current status of vaccines for schistosomiasis
Immunopathology of schistosomiasis
Helminth infection suppresses T-cell immune response to HIV-DNA-based vaccine in mice
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