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Isolation of Murine Lymph Node Stromal Cells
Published on: August 19, 2014
Extrafollicular reticulum cells in pathologic lymph nodes
1Department of Pathology, College of Medicine, Asan Medical Center, Ulsan University, Seoul, Korea.
Insights
Extrafollicular reticulum cells in lymph nodes show varied patterns based on pathology. Their distribution and expression of intermediate filaments, like cytokeratins, change in conditions such as hyperplasia, tuberculosis, and lymphoma.
Area of Science:
- Immunohistochemistry
- Lymph Node Pathology
- Cell Biology
Background:
- Extrafollicular reticulum cells in lymph nodes are heterogeneous.
- These cells express cytokeratins, desmin, and/or vimentin as their intermediate filament profile.
Purpose of the Study:
- To investigate the distribution of extrafollicular reticulum cells in human lymph nodes under various pathological conditions using immunohistochemistry.
- To identify the intermediate filament profiles of these cells in different disease states.
Main Methods:
- Immunohistochemical study of human lymph node samples.
- Inclusion of samples from simple reactive lymph nodes, follicular hyperplasia, necrotizing lymphadenitis, tuberculous lymphadenitis, malignant lymphoma, and metastatic adenocarcinoma.
- SDS-PAGE and immunoblotting to identify cytokeratin polypeptides.
Main Results:
- In follicular hyperplasia, cytokeratin/desmin-expressing reticulum cells formed a dendritic meshwork in specific lymph node regions.
- Distribution patterns were altered in necrotizing and tuberculous lymphadenitis, with increased cell presence.
- The reticular meshwork was obliterated in lymphomas and metastatic carcinoma, with rare reticulum cells found within tumors.
Conclusions:
- Extrafollicular reticulum cells exhibit characteristic distribution patterns in various pathological conditions of the lymph node.
- These cells may play a role in the pathogenesis of these lymph node pathologies.
Abstract:
Extrafollicular reticulum cells in lymph nodes are heterogeneous. They express cytokeratins, desmin, and/or vimentin as their intermediate filament profile. Using those markers, we undertook an immunohistochemical study of human lymph nodes under various pathologic conditions. Samples included 15 simple reactive lymph nodes, 7 follicular hyperplasia, 1 necrotizing lymphadenitis, 4 tuberculous lymphadenitis, 13 malignant lymphoma (9 non-Hodgkin's and 4 Hodgkin's lymphomas), and 11 metastatic adenocarcinoma. In lymph nodes with follicular hyperplasia, cytokeratin and/or desmin expressing reticulum cells displayed a characteristic dendritic meshwork in the subcapsular, perisinusoidal, and paracortical regions. In other forms reactive lymph nodes, they were similarly distributed but were less prominent. By SDS-PAGE and immunoblotting, cytokeratin polypeptides were identified. In necrotizing lymphadenitis, they were increased and the pattern of distribution was disturbed. In tuberculous lymphadenitis, they were also increased and located at nongranulomatous as well as in perigranulomatous areas. In lymphomas the reticular meshwork was entirely obliterated. Cytokeratin or desmin expressing reticulum cells were rarely seen within tumors. The reticular meshwork was also obliterated in metastatic carcinoma. However, the meshwork was maintained in uninvolved areas. In conclusion, extrafollicular reticulum cells displayed characteristic patterns of distribution under various pathologic conditions, and may be implicated in the pathogenesis of those pathologic conditions in human lymph nodes.
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