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Analysis of Microglia and Monocyte-derived Macrophages from the Central Nervous System by Flow Cytometry
Published on: June 22, 2017
Brain perivascular macrophages: characterization and functional roles in health and disease
Giuseppe Faraco1, Laibaik Park2, Josef Anrather2
1Feil Family Brain and Mind Research Institute, Weill Cornell Medicine, 407 E61st Street, New York, NY, USA. gif2004@med.cornell.edu.
Abstract:
Perivascular macrophages (PVM) are a distinct population of resident brain macrophages characterized by a close association with the cerebral vasculature. PVM migrate from the yolk sac into the brain early in development and, like microglia, are likely to be a self-renewing cell population that, in the normal state, is not replenished by circulating monocytes. Increasing evidence implicates PVM in several disease processes, ranging from brain infections and immune activation to regulation of the hypothalamic-adrenal axis and neurovascular-neurocognitive dysfunction in the setting of hypertension, Alzheimer disease pathology, or obesity. These effects involve crosstalk between PVM and cerebral endothelial cells, interaction with circulating immune cells, and/or production of reactive oxygen species. Overall, the available evidence supports the idea that PVM are a key component of the brain-resident immune system with broad implications for the pathogenesis of major brain diseases. A better understanding of the biology and pathobiology of PVM may lead to new insights and therapeutic strategies for a wide variety of brain diseases.
Insights
Perivascular macrophages (PVM) are key brain immune cells residing near blood vessels. Understanding PVM biology is crucial for developing new treatments for major brain diseases like Alzheimer's and hypertension.
Area of Science:
- Neuroimmunology
- Vascular Biology
- Cell Biology
Background:
- Perivascular macrophages (PVM) are specialized brain macrophages associated with cerebral vasculature.
- They originate from the yolk sac and are likely self-renewing, distinct from circulating monocytes.
Purpose of the Study:
- To highlight the significant role of PVM in brain health and disease.
- To underscore the need for further research into PVM biology and pathobiology.
Main Methods:
- Review of existing literature on PVM origin, characteristics, and functions.
- Analysis of PVM involvement in various neurological conditions.
Main Results:
- PVM are implicated in brain infections, immune activation, and neurovascular dysfunction.
- PVM interact with endothelial cells and circulating immune cells, influencing disease pathogenesis.
Conclusions:
- PVM are integral to the brain's immune system.
- Further understanding of PVM offers potential for novel therapeutic strategies for diverse brain diseases.

