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An Efficient and High Yield Method for Isolation of Mouse Dendritic Cell Subsets
Published on: April 18, 2016
Follicular dendritic cell accessory activity crosses MHC and species barriers
1Department of Microbiology and Immunology, Division of Immunobiology, Medical College of Virginia, Virginia Commonwealth University, Richmond, USA.
Insights
Follicular dendritic cells (FDCs) are crucial for B cell activation, using CD21 ligand (CD21L) to enhance antibody production across species barriers. This research confirms FDC
Area of Science:
- Immunology
- Cell Biology
Background:
- Follicular dendritic cell (FDC)-B cell interactions are vital for adaptive immunity.
- These interactions involve complex ligand-receptor signaling, including complement and Fc receptors.
Purpose of the Study:
- To investigate whether FDC accessory activity transcends MHC and species barriers.
- To determine the critical role of FDC-CD21 ligand (CD21L) in B cell activation and antibody production.
Main Methods:
- Used memory lymphocytes from OVA-immune mice and TT-immune humans.
- Co-cultured lymphocytes with FDC from murine lymph nodes and human tonsils.
- Assessed antibody production and the effect of anti-CD21 blockade.
Main Results:
- Human and murine FDC efficiently converted immune complexes into potent immunogens, significantly increasing specific antibody levels.
- FDC activity was not restricted by MHC or species barriers, with cross-species functionality observed.
- Anti-CD21 antibody blockade inhibited FDC activity, highlighting the importance of the FDC-CD21L axis.
Conclusions:
- FDC are essential for robust recall immune responses.
- The FDC-CD21L interaction is a critical component for FDC-mediated B cell activation and antibody production.
Abstract:
Productive follicular dendritic cell (FDC)-B cell interactions appear to involve critical ligand-receptor interactions. Immune complexes (IC) on FDC activate complement and provide FDC with a complement-derived CD21 ligand (CD21L), which bind CD21, while antigen in the IC binds on the B cell-BCR. Further, FDC-FcgammaRIIB binds Fc regions of antibodies in IC and reduces coligation of BCR and FcgammaRIIB minimizing an inhibitor of B cell activation. Given that Fc receptors and complement receptors bind immunoglobulins and complement fragments of other species, we reasoned that FDC accessory activity should cross MHC and species barriers. This prediction was tested using memory lymphocytes from OVA-immune mice and TT-immune humans in combination with FDC from murine lymph nodes and human tonsils. Human and murine FDC converted IC into potent immunogens (specific antibody increased from background to thousands of ng / ml). MHC barriers did not restrict this activity and human FDC worked with murine lymphocytes and murine FDC worked with human lymphocytes. Furthermore, stimulation via MHC-dependent allogeneic or zenogeneic mechanisms did not promote antibody production by FDC. Polyclonal responses stimulated by lipopolysaccharide and pokeweed mitogen were also promoted (10 - 100-fold) and anti-CD21 blocked FDC activity. These results substantiate the hypothesis that FDC are necessary for strong recall responses and that FDC-CD21L is critical.
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