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Immune surveillance of mouse brain perivascular spaces by blood-borne macrophages
I Bechmann1, J Priller, A Kovac
1Department of Cell and Neurobiology, Institute of Anatomy, Humboldt-University Hospital Charité, Schumannstrasse 20/21, D-10098 Berlin, Germany. ingo.bechmann@charite.de
Abstract:
Virchow-Robin's perivascular spaces lie between the basement membrane around pericytes and the basement membrane at the surface of the glia limitans of the brain vessels. They are directly connected to the subpial space and harbour a population of cells distinct from pericytes, perivascular microglia and other cells within perivascular spaces (e.g. T cells and mast cells) in their ability to quickly phagocytose particles from the cerebrospinal fluid (CSF). Morphology, function, and cell surface proteins of these perivascular cells suggest an origin from the monocyte/macrophage lineage. It is currently unclear to what extent these brain perivascular cells represent a resident population of histiocytes or undergo continuous supplementation from blood monocytes. Using transplants of green-fluorescent-protein (GFP)-transfected bone marrow cells, we therefore investigated the replacement of perivascular cells by blood-borne macrophages in adult mice. GFP-positive cells in the perivascular spaces were found as early as 2 weeks post transplantation. The substitution of host perivascular cells by donor-derived macrophages was then evaluated using immunocytochemistry and intraventricular injection of hydrophilic rhodamine-fluorescent tracers. Such tracers diffuse along perivascular spaces and are subsequently phagocytosed by perivascular cells leading to stable phagocytosis-dependent labelling. Thus, the population of newly immigrated macrophages could be related to the total number of perivascular macrophages. This approach revealed a continuous increase of donor-derived perivascular cells. At 14 weeks post transplantation, all perivascular cells were donor-derived. These data show that brain perivascular cells are a population of migratory macrophages and not resident histiocytes.
Insights
Brain perivascular cells, found in Virchow-Robin spaces, are rapidly replaced by blood-borne macrophages. These cells are migratory, not resident, and originate from the monocyte/macrophage lineage.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Virchow-Robin's perivascular spaces contain unique cells with phagocytic capabilities.
- The origin of these brain perivascular cells (resident histiocytes vs. blood monocytes) remains unclear.
Purpose of the Study:
- To investigate the replacement dynamics of brain perivascular cells by blood-borne macrophages in adult mice.
Main Methods:
- Transplantation of green-fluorescent-protein (GFP)-transfected bone marrow cells into adult mice.
- Evaluation of donor-derived cell contribution using immunocytochemistry and fluorescent tracers injected into the cerebrospinal fluid (CSF).
Main Results:
- GFP-positive cells were detected in perivascular spaces within 2 weeks post-transplantation.
- A continuous increase in donor-derived perivascular cells was observed.
- By 14 weeks post-transplantation, all perivascular cells were donor-derived.
Conclusions:
- Brain perivascular cells represent a population of migratory macrophages.
- These cells are continuously replenished by blood monocytes, rather than being resident histiocytes.