scholarly article | Q13442814 |
P50 | author | Ana Carolina Oliveira | Q95825083 |
Fábio B Canto | Q106265435 | ||
Helder I. Nakaya | Q42614737 | ||
Bernardo Sgarbi Reis | Q51731843 | ||
Maria Bellio | Q56449330 | ||
P2093 | author name string | Alessandra Granato | |
Alberto Nóbrega | |||
Bruno Maia Santos | |||
Carlos-Henrique Dantas Barbosa | |||
João Francisco Gomes-Neto | |||
Rita Fucs | |||
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Interleukins 1beta and 6 but not transforming growth factor-beta are essential for the differentiation of interleukin 17-producing human T helper cells | Q29618163 | ||
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Deconvolution of blood microarray data identifies cellular activation patterns in systemic lupus erythematosus | Q33476822 | ||
Tumor necrosis factor alpha-mediated toxic shock in Trypanosoma cruzi-infected interleukin 10-deficient mice | Q33597343 | ||
T cell-intrinsic role of IL-6 signaling in primary and memory responses | Q33715213 | ||
Impaired innate immunity in Tlr4(-/-) mice but preserved CD8+ T cell responses against Trypanosoma cruzi in Tlr4-, Tlr2-, Tlr9- or Myd88-deficient mice | Q33818765 | ||
Interleukin 33: a switch-hitting cytokine | Q33987547 | ||
Interleukin-18 regulates both Th1 and Th2 responses | Q34178165 | ||
The interleukin-1 family: back to the future | Q34391415 | ||
Requirement of UNC93B1 reveals a critical role for TLR7 in host resistance to primary infection with Trypanosoma cruzi | Q35147723 | ||
Pivotal Role of Interleukin-12 and Interferon-γ Axis in Controlling Tissue Parasitism and Inflammation in the Heart and Central Nervous System during Trypanosoma cruzi Infection | Q35750253 | ||
The Immune Response to Trypanosoma cruzi: Role of Toll-Like Receptors and Perspectives for Vaccine Development | Q35838023 | ||
Natural killer cells are a source of interferon gamma that drives differentiation of CD4+ T cell subsets and induces early resistance to Leishmania major in mice | Q36362141 | ||
T cell expression of MyD88 is required for resistance to Toxoplasma gondii | Q36499083 | ||
Parasite-induced TH1 cells and intestinal dysbiosis cooperate in IFN-γ-dependent elimination of Paneth cells | Q36553535 | ||
MyD88 intrinsically regulates CD4 T-cell responses | Q37099777 | ||
Interleukin-18-related genes are induced during the contraction phase but do not play major roles in regulating the dynamics or function of the T-cell response to Listeria monocytogenes infection | Q37191434 | ||
CD4+ T cell expression of MyD88 is essential for normal resolution of Chlamydia muridarum genital tract infection | Q37228267 | ||
Critical regulation of early Th17 cell differentiation by interleukin-1 signaling | Q37250727 | ||
Toll-like receptor and inflammasome signals converge to amplify the innate bactericidal capacity of T helper 1 cells. | Q37651368 | ||
Fatal Mycobacterium tuberculosis infection despite adaptive immune response in the absence of MyD88. | Q37700302 | ||
A role for IL-18 in protective immunity against Mycobacterium tuberculosis | Q38659442 | ||
Rapid quantitation of Trypanosoma cruzi in host tissue by real-time PCR. | Q38957765 | ||
Interleukin-12 but not interleukin-18 is required for immunity to Trypanosoma cruzi in mice | Q39030716 | ||
Signaling through the adaptor molecule MyD88 in CD4+ T cells is required to overcome suppression by regulatory T cells | Q41155531 | ||
Defective NK Cell Activity and Th1 Response in IL-18–Deficient Mice | Q43595287 | ||
Role of IFN-gamma in Th1 differentiation: IFN-gamma regulates IL-18R alpha expression by preventing the negative effects of IL-4 and by inducing/maintaining IL-12 receptor beta 2 expression | Q45173040 | ||
IGIF Does Not Drive Th1 Development but Synergizes with IL-12 for Interferon-γ Production and Activates IRAK and NFκB | Q45933733 | ||
Expression of functional TLR4 confers proinflammatory responsiveness to Trypanosoma cruzi glycoinositolphospholipids and higher resistance to infection with T. cruzi | Q51822633 | ||
MyD88-dependent pathway in T cells directly modulates the expansion of colitogenic CD4+ T cells in chronic colitis | Q51965841 | ||
Impaired production of proinflammatory cytokines and host resistance to acute infection with Trypanosoma cruzi in mice lacking functional myeloid differentiation factor 88. | Q53905520 | ||
Cutting edge: MyD88 is required for resistance to Toxoplasma gondii infection and regulates parasite-induced IL-12 production by dendritic cells | Q53968562 | ||
Cutting edge: TLR9 and TLR2 signaling together account for MyD88-dependent control of parasitemia in Trypanosoma cruzi infection | Q58845195 | ||
Genetically Resistant Mice Lacking MyD88-Adapter Protein Display a High Susceptibility to Leishmania major Infection Associated with a Polarized Th2 Response | Q59312651 | ||
Genetically resistant mice lacking IL-18 gene develop Th1 response and control cutaneous Leishmania major infection | Q73812253 | ||
Critical roles of myeloid differentiation factor 88-dependent proinflammatory cytokine release in early phase clearance of Listeria monocytogenes in mice | Q74817301 | ||
Interleukin 18-independent engagement of interleukin 18 receptor-alpha is required for autoimmune inflammation | Q80102514 | ||
The contribution of transcription factor IRF1 to the interferon-gamma-interleukin 12 signaling axis and TH1 versus TH-17 differentiation of CD4+ T cells | Q80146459 | ||
P407 | language of work or name | English | Q1860 |
P921 | main subject | Interleukin 18 receptor 1 | Q21120642 |
P577 | publication date | 2017-09-12 | |
P1433 | published in | eLife | Q2000008 |
P1476 | title | Crucial role for T cell-intrinsic IL-18R-MyD88 signaling in cognate immune response to intracellular parasite infection | |
P478 | volume | 6 |
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