Characteristics of “Tip-DCs and MDSCs” and Their Potential Role in Leishmaniasis
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Summary
The relative impact of DCs that release TNF and nitric oxide (Tip-DCs) and myeloid cells with suppressive capacities (myeloid-derived suppressor cells, MDSCs) in infectious diseases such as experimental leishmaniasis is discussed.
- Type
- article
- Published
- 2012-03-12
- Cited by
- 26
- References
- 121
- Access
- Open access
- OpenAlex
- https://openalex.org/W2059591039
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:3104191
Keywords
Myeloid, Myeloid-derived Suppressor Cell, Immunology, Biology, Immune system
References
- NK cell activation in visceral leishmaniasis requires TLR9, myeloid DCs, and IL-12, but is independent of plasmacytoid DCs
- Tip-DC Development during Parasitic Infection Is Regulated by IL-10 and Requires CCL2/CCR2, IFN-γ and MyD88 Signaling
- The isolation of mouse dendritic cells from lymphoid tissues and the identification of dendritic cell subtypes by multiparameter flow cytometry.
- Human CD8 T cells drive Th1 responses through differentiation of TNF/iNOS-producing dendritic cells (147.4)
- Regulation of immune responses: II. The cellular basis of cyclic AMP effects on humoral immunity
- CD11b+Ly-6C(hi) suppressive monocytes in experimental autoimmune encephalomyelitis.
- Antigen-Specific Inhibition of CD8+ T Cell Response by Immature Myeloid Cells in Cancer Is Mediated by Reactive Oxygen Species1
- CD80+Gr-1+ Myeloid Cells Inhibit Development of Antifungal Th1 Immunity in Mice with Candidiasis1
- Protection against progressive leishmaniasis by IFN-beta.
- Induction of nitric oxide synthase in mouse dendritic cells by IFN-gamma, endotoxin, and interaction with allogeneic T cells: nitric oxide production is associated with dendritic cell apoptosis.
- Subsets of Myeloid-Derived Suppressor Cells in Tumor Bearing Mice
- Identification of a novel cell type in peripheral lymphoid organs of mice. IV. Identification and distribution in mouse spleen
- Subpopulations of Mouse Blood Monocytes Differ in Maturation Stage and Inflammatory Response1
- Macrophages as APC and the Dendritic Cell Myth
- Secretory products of phagocytes.
- Type 1 interferon (IFNalpha/beta) and type 2 nitric oxide synthase regulate the innate immune response to a protozoan parasite.
- Nitric oxide production by human macrophages: there's NO doubt about it.
- Nitric oxide inhibits the secretion of T-helper 1- and T-helper 2-associated cytokines in activated human T cells.
- Differential expansion, activation and effector functions of conventional and plasmacytoid dendritic cells in mouse tissues transiently infected with Listeria monocytogenes
- Regulation of immune responses by L-arginine metabolism
Cited by
- Die Charakterisierung myeloider Suppressorzellen im Modell der experimentellen Leishmaniose
- Myeloid suppressor cells require membrane TNFR2 expression for suppressive activity
- Myeloid‐derived suppressor cell functionality and interaction with Leishmania major parasites differ in C57BL/6 and BALB/c mice
- Visceral Leishmaniasis Relapse in HIV Patients—A Role for Myeloid-Derived Suppressor Cells?
- Regulatory macrophages as therapeutic targets and therapeutic agents in solid organ transplantation.
- Leishmania spp. Proteome Data Sets: A Comprehensive Resource for Vaccine Development to Target Visceral Leishmaniasis
- LTβR expression on hematopoietic cells regulates acute inflammation and influences maturation of myeloid subpopulations
- Monocyte-Derived Dendritic Cells Promote Th Polarization, whereas Conventional Dendritic Cells Promote Th Proliferation
- Leishmanicidal Activity of Piper nigrum Bioactive Fractions is Interceded via Apoptosis In Vitro and Substantiated by Th1 Immunostimulatory Potential In Vivo
- MIF Promotes Classical Activation and Conversion of Inflammatory Ly6Chigh Monocytes into TipDCs during Murine Toxoplasmosis
- Macrophage reaction against biomaterials in the mouse model - Phenotypes, functions and markers.
- Divergent roles for Ly6C+CCR2+CX3CR1+ inflammatory monocytes during primary or secondary infection of the skin with the intra-phagosomal pathogen Leishmania major
- To Eat and to Be Eaten: Mutual Metabolic Adaptations of Immune Cells and Intracellular Bacterial Pathogens upon Infection
- Dectin-1 Positive Dendritic Cells Expand after Infection with Leishmania major Parasites and Represent Promising Targets for Vaccine Development
- Development of a biodegradable antifibrotic local drug delivery system for glaucoma microstents
- Human Dendritic Cells: Ontogeny and Their Subsets in Health and Disease
- Molecular Aspects of Dendritic Cell Activation in Leishmaniasis: An Immunobiological View
- Reciprocal changes in CD11c+CD11b+ and CD11c+CD8α+ dendritic cell subsets determine protective or permissive immune response in murine experimental VL.
- Role of Myeloid Derived Suppressor Cells in Mycobacterial Infection
- Macrophages as host, effector and immunoregulatory cells in leishmaniasis: Impact of tissue micro-environment and metabolism
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