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Updated: Jul 9, 2026

Isolation and Flow Cytometric Analysis of Immune Cells from the Ischemic Mouse Brain
Published on: February 12, 2016
CCR2+ monocytes promote white matter injury and cognitive dysfunction after myocardial infarction
Edward B Thorp1, Mallory Filipp1, Maria Dima2
1Department of Pathology, Northwestern University, Chicago, IL, United States.
Insights
Myocardial infarction survivors face higher vascular dementia risk. Monocyte brain infiltration after heart attack drives neuroinflammation, white matter injury, and cognitive decline, suggesting new therapeutic targets.
Area of Science:
- Neuroscience
- Immunology
- Cardiology
Background:
- Survivors of myocardial infarction (MI) have an increased risk of vascular dementia.
- Neuroinflammation is a key factor in vascular dementia, but its mediators post-MI are unclear.
Purpose of the Study:
- To investigate the cellular and molecular mechanisms of neuroinflammation following myocardial infarction.
- To determine the role of monocytes in post-MI brain changes and cognitive dysfunction.
Main Methods:
- Utilized a mouse model of myocardial infarction.
- Employed flow cytometry, immunohistochemistry, and spatial/single-cell transcriptomic profiling.
- Analyzed post-mortem human brain tissue from MI patients.
Main Results:
- Increased monocyte abundance and activation in the brain post-MI, observed in both mice and humans.
- Elevated expression of monocyte chemoattractant proteins and increased myeloid cell-oligodendrocyte crosstalk.
- MI-induced neuroinflammation, white matter injury, and cognitive dysfunction were linked to monocyte infiltration.
Conclusions:
- Monocyte infiltration into the brain following myocardial infarction initiates neuropathological events.
- Inhibiting monocyte recruitment preserves white matter integrity and cognitive function, highlighting monocytes as key drivers of post-MI vascular dementia.
Abstract:
Survivors of myocardial infarction are at increased risk for vascular dementia. Neuroinflammation has been implicated in the pathogenesis of vascular dementia, yet little is known about the cellular and molecular mediators of neuroinflammation after myocardial infarction. Using a mouse model of myocardial infarction coupled with flow cytometric analyses and immunohistochemistry, we discovered increased monocyte abundance in the brain after myocardial infarction, which was associated with increases in brain-resident perivascular macrophages and microglia. Myeloid cell recruitment and activation was also observed in post-mortem brains of humans that died after myocardial infarction. Spatial and single cell transcriptomic profiling of brain-resident myeloid cells after experimental myocardial infarction revealed increased expression of monocyte chemoattractant proteins. In parallel, myocardial infarction increased crosstalk between brain-resident myeloid cells and oligodendrocytes, leading to neuroinflammation, white matter injury, and cognitive dysfunction. Inhibition of monocyte recruitment preserved white matter integrity and cognitive function, linking monocytes to neurodegeneration after myocardial infarction. Together, these preclinical and clinical results demonstrate that monocyte infiltration into the brain after myocardial infarction initiate neuropathological events that lead to vascular dementia.
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