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Microglial activation and blood-brain barrier permeability in cerebral small vessel disease
Jessica Walsh1, Dan J Tozer1, Hasan Sari1
1Department of Clinical Neurosciences, University of Cambridge, Cambridge, UK.
Abstract:
Cerebral small vessel disease (SVD) is a major cause of stroke and dementia. The underlying pathogenesis is poorly understood, but both neuroinflammation and increased blood-brain barrier permeability have been hypothesized to play a role, and preclinical studies suggest the two processes may be linked. We used PET magnetic resonance to simultaneously measure microglial activation using the translocator protein radioligand 11C-PK11195, and blood-brain barrier permeability using dynamic contrast enhanced MRI. A case control design was used with two disease groups with sporadic SVD (n = 20), monogenic SVD (cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy, CADASIL), and normal controls (n = 20) were studied. Hotspots of increased glial activation and blood-brain barrier permeability were identified as values greater than the 95th percentile of the distribution in controls. In sporadic SVD there was an increase in the volume of hotspots of both 11C-PK11195 binding (P = 0.003) and blood-brain barrier permeability (P = 0.007) in the normal appearing white matter, in addition to increased mean blood-brain barrier permeability (P < 0.001). In CADASIL no increase in blood-brain barrier permeability was detected; there was a non-significant trend to increased 11C-PK11195 binding (P = 0.073). Hotspots of 11C-PK11195 binding and blood-brain barrier permeability were not spatially related. A panel of 93 blood biomarkers relating to cardiovascular disease, inflammation and endothelial activation were measured in each participant; principal component analysis was performed and the first component related to blood-brain barrier permeability and microglial activation. Within the sporadic SVD group both hotspot and mean volume blood-brain barrier permeability values in the normal appearing white matter were associated with dimension 1 (β = 0.829, P = 0.017, and β = 0.976, P = 0.003, respectively). There was no association with 11C-PK11195 binding. No associations with blood markers were found in the CADASIL group. In conclusion, in sporadic SVD both microglial activation and increased blood-brain barrier permeability occur, but these are spatially distinct processes. No evidence of increased blood-brain barrier permeability was found in CADASIL.
Insights
Cerebral small vessel disease involves neuroinflammation and blood-brain barrier issues. Sporadic SVD shows distinct microglial activation and permeability changes, unlike CADASIL.
Area of Science:
- Neurology
- Neuroimaging
- Vascular Dementia Research
Background:
- Cerebral small vessel disease (SVD) is a primary cause of stroke and dementia.
- Pathogenesis of SVD is unclear, with neuroinflammation and blood-brain barrier (BBB) permeability implicated.
- Preclinical data suggest a link between neuroinflammation and BBB permeability in SVD.
Purpose of the Study:
- To simultaneously measure microglial activation and BBB permeability in sporadic SVD and CADASIL.
- To investigate the spatial relationship between these two processes in SVD.
- To explore associations between imaging findings and blood biomarkers.
Main Methods:
- Positron Emission Tomography (PET) with 11C-PK11195 for microglial activation.
- Dynamic Contrast-Enhanced MRI for BBB permeability.
- Case-control study: sporadic SVD (n=20), CADASIL (n=20), and controls (n=20).
Main Results:
- Sporadic SVD showed increased hotspot volume for both microglial activation and BBB permeability in normal-appearing white matter.
- Increased mean BBB permeability was observed in sporadic SVD.
- No significant increase in BBB permeability was found in CADASIL; a trend towards increased microglial activation was noted.
- Microglial activation and BBB permeability hotspots were not spatially related.
- A principal component analysis of 93 blood biomarkers revealed a component related to BBB permeability and microglial activation.
Conclusions:
- Sporadic SVD exhibits both microglial activation and increased BBB permeability as distinct processes.
- No evidence of increased BBB permeability in CADASIL.
- Blood biomarkers associated with BBB permeability in sporadic SVD, but not microglial activation.
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