Loss of 'homeostatic' microglia and patterns of their activation in active multiple sclerosis
Tobias Zrzavy1, Simon Hametner1, Isabella Wimmer1
1Center for Brain Research, Medical University of Vienna, Austria.
Abstract:
Microglia and macrophages accumulate at the sites of active demyelination and neurodegeneration in the multiple sclerosis brain and are thought to play a central role in the disease process. We used recently described markers to characterize the origin and functional states of microglia/macrophages in acute, relapsing and progressive multiple sclerosis. We found microglia activation in normal white matter of controls and that the degree of activation increased with age. This microglia activation was more pronounced in the normal-appearing white matter of patients in comparison to controls and increased with disease duration. In contrast to controls, the normal-appearing white matter of patients with multiple sclerosis showed a significant reduction of P2RY12, a marker expressed in homeostatic microglia in rodents, which was completely lost in active and slowly expanding lesions. Early stages of demyelination and neurodegeneration in active lesions contained microglia with a pro-inflammatory phenotype, which expressed molecules involved in phagocytosis, oxidative injury, antigen presentation and T cell co-stimulation. In later stages, the microglia and macrophages in active lesions changed to a phenotype that was intermediate between pro- and anti-inflammatory activation. In inactive lesions, the density of microglia/macrophages was significantly reduced and microglia in part converted to a P2RY12+ phenotype. Analysis of TMEM119, which is expressed on microglia but not on recruited macrophages, demonstrated that on average 45% of the macrophage-like cells in active lesions were derived from the resident microglia pool. Our study demonstrates the loss of the homeostatic microglial signature in active multiple sclerosis with restoration associated with disease inactivity.
Insights
Microglia activation increases with age and multiple sclerosis (MS) disease duration. In active MS, microglia lose their homeostatic signature, adopting inflammatory roles, but regain it in inactive lesions.
Area of Science:
- Neuroimmunology
- Cellular Biology
Background:
- Microglia and macrophages are key players in multiple sclerosis (MS) pathogenesis.
- Their role in different MS disease courses requires detailed characterization.
Purpose of the Study:
- To investigate the origin and functional states of microglia/macrophages in various MS stages.
- To understand the dynamic changes in microglial phenotypes throughout MS progression.
Main Methods:
- Utilized novel markers (P2RY12, TMEM119) to analyze microglia/macrophages in control and MS brain tissue.
- Compared cellular states in normal-appearing white matter, active lesions, and inactive lesions.
Main Results:
- Microglial activation increases with age and MS disease duration, even in normal-appearing white matter.
- Active MS lesions show pro-inflammatory microglia losing homeostatic markers (P2RY12), with a shift to intermediate phenotypes later.
- Resident microglia contribute significantly (45%) to macrophage-like cells in active lesions.
- Inactive lesions exhibit reduced cell density and partial restoration of the homeostatic P2RY12+ signature.
Conclusions:
- Homeostatic microglial signatures are lost in active multiple sclerosis.
- Microglial phenotypes dynamically change with disease activity, shifting from inflammatory to homeostatic states as lesions inactivate.
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