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1.
Front Immunol ; 10: 1546, 2019.
Article in English | MEDLINE | ID: mdl-31354711

ABSTRACT

The global increase in autoimmunity, together with the emerging autoimmune-related side effects of cancer immunotherapy, have furthered a need for understanding of immune tolerance and activation. Systemic lupus erythematosus (SLE) is the archetypical autoimmune disease, affecting multiple organs, and tissues. Studying SLE creates knowledge relevant not just for autoimmunity, but the immune system in general. Murine models and patient studies have provided increasing evidence for the innate immune toll like receptor-7 (TLR7) in disease initiation and progression. Here, we demonstrated that the kinase activity of the TLR7-downstream signaling molecule, interleukin-1 receptor associated kinase 4 (IRAK4), is essential for mild and severe autoimmune traits of the Sle1 and Sle1-TLR7 transgenic (Sle1Tg7) murine models, respectively. Elimination of IRAK4 signaling prevented all pathological traits associated with murine lupus, including splenomegaly with leukocyte expansion, detectable circulating antinuclear antibodies and glomerulonephritis, in both Sle1 and Sle1Tg7 mice. The expansion of germinal center B cells and increased effector memory T cell phenotypes that are typical of lupus-prone strains, were also prevented with IRAK4 kinase elimination. Analysis of renal leukocyte infiltrates confirmed our earlier findings of an expanded conventional dendritic cell (cDC) within the kidneys of nephritic mice, and this was prevented with IRAK4 kinase elimination. Analysis of TLR7 at the protein level revealed that the expression in immune cells is dependent on the TLR7-transgene itself and/or autoimmune disease factors in a cell-specific manner. Increased TLR7 protein expression in renal macrophages and cDCs correlated with disease parameters such as blood urea nitrogen (BUN) levels and the frequency of leukocytes infiltrating the kidney. These findings suggest that controlling the level of TLR7 or downstream signaling within myeloid populations may prevent chronic inflammation and severe nephritis.


Subject(s)
Dendritic Cells/immunology , Interleukin-1 Receptor-Associated Kinases/metabolism , Kidney/pathology , Leukocytes/physiology , Lupus Erythematosus, Systemic/metabolism , Lupus Nephritis/metabolism , Macrophages/immunology , Toll-Like Receptor 7/metabolism , Animals , Antibodies, Antinuclear/blood , Cell Movement , Disease Models, Animal , Glomerulonephritis , Humans , Immunity, Innate , Interleukin-1 Receptor-Associated Kinases/genetics , Kidney/metabolism , Lupus Nephritis/genetics , Mice , Mice, Transgenic , Organ Specificity , Pre-B-Cell Leukemia Transcription Factor 1/genetics , Pre-B-Cell Leukemia Transcription Factor 1/metabolism , Signal Transduction , Toll-Like Receptor 7/genetics
2.
Bioconjug Chem ; 29(7): 2357-2369, 2018 07 18.
Article in English | MEDLINE | ID: mdl-29923706

ABSTRACT

Glucocorticoids (GCs) are excellent anti-inflammatory drugs but are dose-limited by on-target toxicity. We sought to solve this problem by delivering GCs to immune cells with antibody-drug conjugates (ADCs) using antibodies containing site-specific incorporation of a non-natural amino acid, novel linker chemistry for in vitro and in vivo stability, and existing and novel glucocorticoid receptor (GR) agonists as payloads. We directed fluticasone propionate to human antigen-presenting immune cells to afford GR activation that was dependent on the targeted antigen. However, mechanism of action studies pointed to accumulation of free payload in the tissue culture supernatant as the dominant driver of activity and indeed administration of the ADC to human CD74 transgenic mice failed to activate GR target genes in splenic B cells. Suspecting dissipation of released payload, we designed an ADC bearing a novel GR agonist payload with reduced permeability which afforded cell-intrinsic activity in human B cells. Our work shows that antibody-targeting offers significant potential for rescuing existing and new dose-limited drugs outside the field of oncology.


Subject(s)
Antibodies, Monoclonal/therapeutic use , Antigens, Differentiation, B-Lymphocyte/immunology , B-Lymphocytes/metabolism , Drug Delivery Systems/methods , Glucocorticoids/administration & dosage , Histocompatibility Antigens Class II/immunology , Immunoconjugates/therapeutic use , Animals , Anti-Inflammatory Agents/therapeutic use , B-Lymphocytes/drug effects , Drug Development , Drug Stability , Fluticasone/administration & dosage , Humans , Mice , Mice, Transgenic , Receptors, Glucocorticoid/agonists
3.
J Leukoc Biol ; 100(2): 339-49, 2016 08.
Article in English | MEDLINE | ID: mdl-26908827

ABSTRACT

TLRs facilitate the recognition of pathogens by immune cells and the initiation of the immune response, leading to the production of proinflammatory cytokines and chemokines. Production of proinflammatory mediators by innate immune cells, such as macrophages, is tightly regulated to facilitate pathogen clearance while limiting an adverse impact on host tissue. Exposure of innate immune cells to TLR ligands induces a state of temporary refractoriness to a subsequent exposure of a TLR ligand, a phenomenon referred to as "tolerance." This study sought to evaluate the mechanistic regulation of TLR4 and TLR7/8 ligand-induced tolerance to other TLRs by microRNA-146a. With the use of THP-1 macrophages, as well as human classic and alternative macrophages, we demonstrate that priming with a TLR4 agonist (LPS) or a TLR7/8 agonist (R848) induces homologous and heterologous tolerance to various TLR ligands in macrophages, leading to the impaired production of cytokines and chemokines. We also demonstrate that overexpression of microRNA-146a is sufficient to mimic LPS or R848-induced hyporesponsiveness. Conversely, inhibition of microRNA-146a activity leads to LPS- or R848-induced TLR hyper-responsiveness in TLR signaling tolerance. Furthermore, we demonstrate that microRNA-146a dampens cytokine production following a primary stimulus with MyD88-dependent but not MyD88-independent TLR pathways. Collectively, these data provide comprehensive evidence of the central role of microRNA-146a in TLR signaling tolerance to plasma membrane, as well as endosomal TLR ligands in human macrophages.


Subject(s)
Gene Expression Regulation/drug effects , Immune Tolerance/drug effects , Macrophages/immunology , MicroRNAs/genetics , Myeloid Differentiation Factor 88/metabolism , Toll-Like Receptor 4/agonists , Toll-Like Receptor 7/agonists , Toll-Like Receptor 8/agonists , Cells, Cultured , Cytokines/metabolism , Humans , Imidazoles/pharmacology , Lipopolysaccharides/pharmacology , Macrophages/drug effects , Macrophages/metabolism
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