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Published on: November 1, 2013
The Response of Tissue Mast Cells to TLR3 Ligand Poly(I:C) Treatment
Piotr Witczak1, Ewa Brzezińska-Błaszczyk1, Justyna Agier1
1Department of Experimental Immunology, Faculty of Health Sciences, Medical University of Lodz, Lodz, Poland.
Abstract:
Mast cells (MCs) are found mainly at the anatomical sites exposed to the external environment; thus, they are localized close to blood vessels, lymphatic vessels, and a multitude of immune cells. Moreover, those cells can recognize invading pathogens through a range of surface molecules known as pathogen recognition receptors (PRRs), mainly Toll-like receptors (TLRs). MCs are extensively engaged in the control and clearance of bacterial infections, but much less is known about their contribution to antiviral host response as well as pathomechanisms of virus-induced diseases. In the study, we employed in vivo differentiated mature tissue mast cells freshly isolated from rat peritoneal cavity. Here, we demonstrated that rat peritoneal mast cells (rPMCs) express viral dsRNA-specific TLR3 molecule (intracellularly and on the cell surface) as well as other proteins associated with cellular antiviral response: IRF3, type I and II IFN receptors, and MHC I. We found that exposure of rPMCs to viral dsRNA mimic, i.e., poly(I:C), induced transient upregulation of surface TLR3 (while temporarily decreased TLR3 intracellular expression), type II IFN receptor, and MHC I. TLR3 ligand-stimulated rPMCs did not degranulate but generated and/or released type I IFNs (IFN-α and IFNβ) as well as proinflammatory lipid mediators (cysLTs), cytokines (TNF, IL-1β), and chemokines (CCL3, CXCL8). We documented that rPMC priming with poly(I:C) did not affect FcεRI-dependent degranulation. However, their costimulation with TLR3 agonist and anti-IgE led to a significant increase in cysLT and TNF secretion. Our findings confirm that MCs may serve as active participants in the antiviral immune response. Presented data on modulated FcεRI-mediated MC secretion of mediators upon poly(I:C) treatment suggests that dsRNA-type virus infection could influence the severity of allergic reactions.
Insights
Mast cells (MCs) recognize viral RNA via Toll-like receptor 3 (TLR3). Stimulation triggers antiviral cytokine release and modulates allergic responses, highlighting MCs
Area of Science:
- Immunology
- Cell Biology
- Virology
Background:
- Mast cells (MCs) are crucial immune cells at environmental interfaces, equipped with pathogen recognition receptors (PRRs) like Toll-like receptors (TLRs) for pathogen detection.
- While MCs' role in bacterial infections is established, their involvement in antiviral responses and viral disease pathogenesis remains less understood.
Purpose of the Study:
- To investigate the expression of antiviral molecules in rat peritoneal mast cells (rPMCs).
- To determine the functional response of rPMCs to viral double-stranded RNA (dsRNA) mimic poly(I:C) via Toll-like receptor 3 (TLR3).
- To explore the impact of poly(I:C) stimulation on FcεRI-mediated degranulation and mediator release.
Main Methods:
- Isolation and characterization of mature rat peritoneal mast cells (rPMCs).
- Stimulation of rPMCs with poly(I:C), a viral dsRNA mimic, and analysis of TLR3, IFN receptors, and MHC I expression.
- Measurement of cytokine, chemokine, and lipid mediator release following TLR3 stimulation.
- Assessment of FcεRI-dependent degranulation and mediator secretion after poly(I:C) priming and co-stimulation.
Main Results:
- rPMCs express intracellular and surface TLR3, IRF3, type I/II IFN receptors, and MHC I.
- Poly(I:C) exposure transiently upregulated surface TLR3, type II IFN receptor, and MHC I on rPMCs.
- TLR3-stimulated rPMCs released type I IFNs, pro-inflammatory cytokines (TNF, IL-1β), chemokines (CCL3, CXCL8), and lipid mediators (cysLTs), without degranulating.
- Poly(I:C) priming did not inhibit FcεRI-dependent degranulation but enhanced cysLT and TNF secretion upon co-stimulation with anti-IgE.
Conclusions:
- Mast cells are active participants in the innate antiviral immune response through TLR3 activation.
- Viral dsRNA can modulate mast cell responses, potentially influencing allergic reactions by altering FcεRI-mediated mediator release.

