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Published on: February 5, 2015
Dendritic cells in multiple sclerosis lesions: maturation stage, myelin uptake, and interaction with proliferating T
Barbara Serafini1, Barbara Rosicarelli, Roberta Magliozzi
1Department of Cell Biology and Neurosciences, Istituto Superiore di Sanità, Viale Regina Elena 299, 00161 Rome, Italy.
Insights
Dendritic cells (DCs) in multiple sclerosis (MS) brain lesions engulf myelin debris. These mature DCs may activate T cells, contributing to CNS inflammation and autoimmune responses in MS patients.
Area of Science:
- Neuroimmunology
- Cellular immunology
- Pathology
Background:
- Dendritic cells (DCs) are implicated in regulating autoimmune responses in multiple sclerosis (MS).
- Understanding DC behavior within the central nervous system (CNS) is crucial for elucidating MS pathogenesis.
Purpose of the Study:
- To investigate the role of dendritic cells (DCs) in CNS inflammation in multiple sclerosis (MS).
- To analyze DC maturation markers and their relationship with T cells in MS brain tissue.
- To identify DCs containing myelin debris within MS lesions.
Main Methods:
- Immunohistochemical analysis of autopsy brain tissue from MS patients.
- Identification of myeloid DC subsets using markers: CD1a, DC-SIGN, fascin, CD83, DC-LAMP, and CCR7.
- Detection of myelin components within DCs.
Main Results:
- Cells expressing DC-SIGN and containing myelin were frequently found in perivascular areas of MS lesions.
- Mature DC markers were detected in inflamed meninges and perivascular cuffs of active MS lesions.
- Some perivascular DCs were observed near proliferating lymphocytes expressing DC-SIGN ligand ICAM-3 and CD8.
Conclusions:
- DCs recruited to MS lesions accumulate myelin debris and mature.
- These DCs may contribute to the local activation and expansion of pathogenic T cells in the CNS.
- Myelin-laden DCs in MS lesions suggest a role in antigen presentation and T-cell mediated autoimmune responses.
Abstract:
In multiple sclerosis (MS), dendritic cells (DCs) recruited to the central nervous system (CNS) are thought to be involved in the regulation of autoimmune responses directed against myelin antigens. To better understand the role of DCs in CNS inflammation, we performed a detailed immunohistochemical analysis of DC maturation markers and of DC relationship to CNS-infiltrating T cells in autopsy brain tissue of patients with MS. We also investigated the presence of DCs containing myelin debris in MS lesions. Myeloid DC subsets were identified using the following markers: CD1a for immature DCs; DC-SIGN for immature and mature DCs; and fascin, CD83, DC-LAMP, and CCR7 for mature DCs. The most common finding was the presence of cells expressing DC-SIGN and containing myelin components in the perivascular cuffs of early active and chronic (both active and inactive) MS lesions. Perivascular CD1a DCs were detected in active lesions in only one of 10 patients with MS who were examined. Although less numerous than DC-SIGN DCs, cells expressing mature DC markers were consistently detected in the inflamed meninges and perivascular cuffs of most active lesions examined. CCR7 immunostaining was predominantly confined to activated microglia at the lesion edges. Some perivascular DC-SIGN cells were found in close proximity to or contacting rare proliferating lymphocytes, most of which expressed the DC-SIGN ligand ICAM-3 and CD8. These data suggest that DCs recruited and maturing in MS lesions, where self-antigens are made available by continuous myelin destruction, may contribute to the local activation and expansion of presumably pathogenic T cells.
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