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Published on: July 9, 2008
Morphological interactions of interdigitating dendritic cells with B and T cells in human mesenteric lymph nodes
K Takahashi1, A Kenji, T Norihiro
1Faculty of Health Science, the Department of Dermatology, and the Department of Pathology, Okayama University Medical School, Okayama, Japan. dend@cc.okayama-u.ac.jp
Insights
Interdigitating dendritic cells (IDC) in human lymph nodes interact with naive B cells and activated T cells. These interactions are crucial for capturing and stimulating rare antigen-specific B cells efficiently.
Area of Science:
- Immunology
- Cell Biology
- Histology
Background:
- Interdigitating dendritic cells (IDCs) are key immune cells in lymph nodes.
- Understanding their interactions with lymphocytes is crucial for adaptive immunity.
Purpose of the Study:
- To investigate the localization, immunophenotype, and cellular interactions of human mesenteric lymph node IDCs.
- To clarify the relationships between IDCs, T cells, and B cells in secondary lymphoid tissues.
Main Methods:
- Two-color immunofluorescent microscopy
- Flow cytometry
- In vitro cell culture of lymph node cells
Main Results:
- IDCs are HLA-DR(bright) cells in T cell areas, expressing markers like CD40, CD54, CD80, CD83, and CD86.
- IDCs directly associate with naive B cells and CD4+ T cells in situ.
- IDCs form transient clusters with naive B cells in vitro but stable complexes with activated T cells.
Conclusions:
- Resting naive B cells interact directly with IDCs in lymph node T cell areas.
- IDCs exhibit a transient, non-antigen-specific affinity for naive B cells.
- Stable IDC/activated T cell complexes may facilitate the efficient capture and stimulation of rare antigen-specific B cells.
Abstract:
Interdigitating dendritic cells (IDC) of the human mesenteric lymph nodes (LN) were examined by two-color immunofluorescent microscopy and flow cytometry to clarify their exact localization, immunophenotype, and relationships with T and B cells. IDC were identified as HLA-DR(bright) large dendriform cells of the T cell areas co-expressing CD40, CD54 (ICAM-1), CD80 (B7/B7-1), CD83, and CD86 (B70/B7-2). The majority of IDC directly attached to a few IgD+ naive B cells as well as to numerous CD4+ T cells. When LN cells were singly suspended and briefly incubated in vitro, IDC formed clusters with IgD+ IgM+ naive B cells, but not with IgA+ or IgG+ B cells. When suspended LN cells were cultured, clustered B cells disappeared within 7 days, and on prolonged culture, some IDC developed into extensively dendriform cells forming stable complexes with several or sometimes numerous CD4+ IL-2R+ CD40L+ activated T cells. These findings indicate that resting naive B cells actually interact with IDC directly in T cell areas of human secondary lymphoid tissues. IDC have a non-antigen (Ag)-specific, strong affinity for resting naive B cells, but this affinity is transient and IDC cannot form stable complexes with B cells, although they can form stable complexes with activated T cells. It is suggested that the stable IDC/Ag-activated T cell complexes make it possible to capture and to stimulate rare Ag-specific resting naive B cells with high efficiency.
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