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Isolation and Flow Cytometric Assessment of Neuroimmune Interactions in a Mini-Stroke Murine Model
Published on: June 20, 2025
Differential perivascular microglial activation in the deep white matter in vascular dementia developed post-stroke
Yoshiki Hase1, Kamar E Ameen-Ali1,2, Rachel Waller3
1Translational and Clinical Research Institute, Newcastle University, Newcastle upon Tyne, UK.
Abstract:
With the hypothesis that perivascular microglia are involved as neuroinflammatory components of the gliovascular unit contributing to white matter hyperintensities on MRI and pathophysiology, we assessed their status in stroke survivors who develop dementia. Immunohistochemical and immunofluorescent methods were used to assess the distribution and quantification of total and perivascular microglial cell densities in 68 brains focusing on the frontal lobe WM and overlying neocortex in post-stroke dementia (PSD), post-stroke non-dementia (PSND) and similar age control subjects. We primarily used CD68 as a marker of phagocytic microglia, as well as other markers of microglia including Iba-1 and TMEM119, and the myeloid cell marker TREM2 to assess dementia-specific changes. We first noted greater total densities of CD68+ and TREM2+ cells per mm2 in the frontal WM compared to the overlying cortex across the stroke cases and controls (p = 0.001). PSD subjects showed increased percentage of activated perivascular CD68+ cells distinct from ramified or primed microglia in the WM (p < 0.05). However, there was no apparent change in perivascular TREM2+ cells. Total densities of TREM2+ cells were only ~10% of CD68+ cells but there was high degree of overlap (>70%) between them in both the WM and the cortex. CD68 and Iba-1 or CD68 and TMEM119 markers were colocalised by ~55%. Within the deep WM, ~30% of CD68+ cells were co-localised with fragments of degraded myelin basic protein. Among fragmented CD68+ cells in adjacent WM of PSD subjects, >80% of the cells expressed cleaved caspase-3. Our observations suggest although the overall repertoire of perivascular microglial cells is not changed in the parenchyma, PSD subjects accrue more perivascular-activated CD68+ microglia rather than TREM2+ cells. This implies there is a subset of CD68+ cells, which are responsible for the differential response in perivascular inflammation within the gliovascular unit of the deep WM.
Insights
In stroke survivors with dementia, activated perivascular microglia (CD68+) accumulate in white matter, suggesting a role in neuroinflammation. This contrasts with TREM2+ cells, indicating a specific microglial response in post-stroke dementia.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Perivascular microglia are implicated in neuroinflammation and white matter hyperintensities.
- Understanding microglial changes in post-stroke dementia (PSD) is crucial for gliovascular unit pathophysiology.
Purpose of the Study:
- To investigate the role of perivascular microglia in the brains of stroke survivors with and without dementia.
- To assess microglial activation markers (CD68, TREM2) in the white matter and cortex.
Main Methods:
- Immunohistochemistry and immunofluorescence on 68 human brains (PSD, post-stroke non-dementia, controls).
- Quantification of total and perivascular microglial densities using CD68, Iba-1, TMEM119, and TREM2 markers.
- Analysis of microglial co-localization with myelin basic protein and cleaved caspase-3.
Main Results:
- Higher densities of CD68+ and TREM2+ cells were found in white matter compared to the cortex.
- PSD subjects showed an increased percentage of activated perivascular CD68+ microglia in white matter.
- No significant change in perivascular TREM2+ cells was observed; CD68+ cells overlapped with myelin debris and expressed cleaved caspase-3 in PSD.
Conclusions:
- Post-stroke dementia is associated with an accrual of activated perivascular CD68+ microglia in deep white matter.
- A specific subset of CD68+ microglia drives perivascular inflammation in the gliovascular unit of PSD.
- These findings highlight a distinct microglial response in the white matter of dementia patients post-stroke.
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