A subset of CD1c+ dendritic cells is increased in patients with tuberculosis and promotes Th17 cell polarization

scientific article published on 24 October 2018

A subset of CD1c+ dendritic cells is increased in patients with tuberculosis and promotes Th17 cell polarization is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1016/J.TUBE.2018.10.007
P698PubMed publication ID30514502

P2093author name stringJing Jiang
Yanhua Liu
Zhihong Cao
Xiaoxing Cheng
Weiguo Sun
Ruo Wang
Fei Zhai
P2860cites workTh1 and Th17 Cells in Tuberculosis: Protection, Pathology, and BiomarkersQ26774207
The known unknowns of the human dendritic cell networkQ26865854
BDCA-2, BDCA-3, and BDCA-4: three markers for distinct subsets of dendritic cells in human peripheral bloodQ28138201
Unexpected role for IL-17 in protective immunity against hypervirulent Mycobacterium tuberculosis HN878 infection.Q33619034
Communication between Human Dendritic Cell Subsets in Tuberculosis: Requirements for Naive CD4(+) T Cell StimulationQ33891577
Cell-to-cell transfer of M. tuberculosis antigens optimizes CD4 T cell primingQ33902489
Immune response to Mycobacterium tuberculosis infection in the parietal pleura of patients with tuberculous pleurisyQ33987707
Early secreted antigen ESAT-6 of Mycobacterium tuberculosis promotes protective T helper 17 cell responses in a toll-like receptor-2-dependent mannerQ34079170
BDCA1-positive dendritic cells (DCs) represent a unique human myeloid DC subset that induces innate and adaptive immune responses to Staphylococcus aureus Infection.Q34596173
Human CD14+ CTLA-4+ regulatory dendritic cells suppress T-cell response by cytotoxic T-lymphocyte antigen-4-dependent IL-10 and indoleamine-2,3-dioxygenase production in hepatocellular carcinoma.Q34655472
Human lung immunity against Mycobacterium tuberculosis: insights into pathogenesis and protectionQ34840811
IRF8 mutations and human dendritic-cell immunodeficiencyQ35106002
Imbalance of Th17 cells and regulatory T cells in tuberculous pleural effusionQ35271007
The multifaceted biology of plasmacytoid dendritic cellsQ36731249
Flow Cytometric Analysis of Mononuclear Phagocytes in Nondiseased Human Lung and Lung-Draining Lymph NodesQ36778625
Antigen delivery to early endosomes eliminates the superiority of human blood BDCA3+ dendritic cells at cross presentationQ36822696
IRF4 transcription factor-dependent CD11b+ dendritic cells in human and mouse control mucosal IL-17 cytokine responsesQ36882237
Human dendritic cells (DCs) are derived from distinct circulating precursors that are precommitted to become CD1c+ or CD141+ DCs.Q37500375
Interactions between Type 1 Interferons and the Th17 Response in Tuberculosis: Lessons Learned from Autoimmune DiseasesQ37737549
The immunological life cycle of tuberculosisQ38025869
Human plasmacytoid dendritic cells: from molecules to intercellular communication networkQ38166716
The balance between protective and pathogenic immune responses in the TB-infected lungQ38293027
T cells and adaptive immunity to Mycobacterium tuberculosis in humansQ38363792
Toll-like receptor 2 in host defense against Mycobacterium tuberculosis: to be or not to be-that is the questionQ38871816
Circulating dendritic cells and interferon-alpha production in patients with tuberculosis: correlation with clinical outcome and treatment responseQ39178924
Essential role of IL-17A in the formation of a mycobacterial infection-induced granuloma in the lungQ39319543
IL17A augments autophagy in Mycobacterium tuberculosis-infected monocytes from patients with active tuberculosis in association with the severity of the disease.Q40185079
Role and contribution of pulmonary CD103+ dendritic cells in the adaptive immune response to Mycobacterium tuberculosisQ40382190
Expression Profiles of Cytokine mRNAs in the Pleural Fluid Reveal Differences Among Tuberculosis, Malignancies, and Pneumonia-Exudative Pleural EffusionsQ40500293
Dendritic Cells and Monocytes with Distinct Inflammatory Responses Reside in Lung Mucosa of Healthy HumansQ40673164
Mycobacterium tuberculosis RpfE promotes simultaneous Th1- and Th17-type T-cell immunity via TLR4-dependent maturation of dendritic cells.Q41021544
Elevated expression of T-bet in mycobacterial antigen-specific CD4(+) T cells from patients with tuberculosisQ41035902
Mycobacterium tuberculosis promotes Th17 expansion via regulation of human dendritic cells toward a high CD14 and low IL-12p70 phenotype that reprograms upon exogenous IFN-γ.Q41738784
Expansion of a BDCA1+CD14+ Myeloid Cell Population in Melanoma Patients May Attenuate the Efficacy of Dendritic Cell Vaccines.Q42101845
Functional specializations of human epidermal Langerhans cells and CD14+ dermal dendritic cellsQ43120646
Increased frequencies of T helper type 17 cells in tuberculous pleural effusionQ44443284
Update on Dendritic Cell-Induced Immunological and Clinical Tolerance.Q47121682
Mycobacterium tuberculosis infects dendritic cells with high frequency and impairs their function in vivo.Q50671032
Human inflammatory dendritic cells induce Th17 cell differentiation.Q50917340
In vivo depletion of CD11c+ cells delays the CD4+ T cell response to Mycobacterium tuberculosis and exacerbates the outcome of infection.Q51989388
Dendritic cells in the regulation of immunity and inflammation.Q52411871
Disruption of an antimycobacterial circuit between dendritic and helper T cells in human SPPL2a deficiencyQ61627910
Dendritic cells are decreased in blood and accumulated in granuloma in tuberculosisQ78709169
Reduced Th17 response in patients with tuberculosis correlates with IL-6R expression on CD4+ T CellsQ82282261
TGF-β-mediated enhancement of TH17 cell generation is inhibited by bone morphogenetic protein receptor 1α signalingQ91182926
P921main subjectdendritic cellQ506253
P304page(s)189-199
P577publication date2018-10-24
P1433published inTuberculosisQ15757844
P1476titleA subset of CD1c+ dendritic cells is increased in patients with tuberculosis and promotes Th17 cell polarization
P478volume113

Reverse relations

cites work (P2860)
Q92922008In vivo Differentiation of Human Monocytes
Q64078775The Emerging Role of Myeloid-Derived Suppressor Cells in Tuberculosis

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