Microglial burden, activation and dystrophy patterns in frontotemporal lobar degeneration
Ione O C Woollacott1, Christina E Toomey2,3, Catherine Strand2
1Dementia Research Centre, Department of Neurodegenerative Disease, UCL Queen Square Institute of Neurology, London, UK.
Background:
Microglial dysfunction is implicated in frontotemporal lobar degeneration (FTLD). Although studies have reported excessive microglial activation or senescence (dystrophy) in Alzheimer's disease (AD), few have explored this in FTLD. We examined regional patterns of microglial burden, activation and dystrophy in sporadic and genetic FTLD, sporadic AD and controls.
Methods:
Immunohistochemistry was performed in frontal and temporal grey and white matter from 50 pathologically confirmed FTLD cases (31 sporadic, 19 genetic: 20 FTLD-tau, 26 FTLD-TDP, four FTLD-FUS), five AD cases and five controls, using markers to detect phagocytic (CD68-positive) and antigen-presenting (CR3/43-positive) microglia, and microglia in general (Iba1-positive). Microglial burden and activation (morphology) were assessed quantitatively for each microglial phenotype. Iba1-positive microglia were assessed semi-quantitatively for dystrophy severity and qualitatively for rod-shaped and hypertrophic morphology. Microglia were compared in each region between FTLD, AD and controls, and between different pathological subtypes of FTLD, including its main subtypes (FTLD-tau, FTLD-TDP, FTLD-FUS), and subtypes of FTLD-tau, FTLD-TDP and genetic FTLD. Microglia were also compared between grey and white matter within each lobe for each group.
Results:
There was a higher burden of phagocytic and antigen-presenting microglia in FTLD and AD cases than controls, but activation was often not increased. Burden was generally higher in white matter than grey matter, but activation was greater in grey matter. However, microglia varied regionally according to FTLD subtype and disease mechanism. Dystrophy was more severe in FTLD and AD than controls, and more severe in white than grey matter, but this also varied regionally and was particularly extensive in FTLD due to progranulin (GRN) mutations. Presence of rod-shaped and hypertrophic microglia also varied by FTLD subtype.
Conclusions:
This study demonstrates regionally variable microglial involvement in FTLD and links this to underlying disease mechanisms. This supports investigation of microglial dysfunction in disease models and consideration of anti-senescence therapies in clinical trials.
Insights
Microglial dysfunction is observed in frontotemporal lobar degeneration (FTLD) and Alzheimer
Area of Science:
- Neuroscience
- Neuropathology
- Immunology
Background:
- Microglial dysfunction is linked to frontotemporal lobar degeneration (FTLD).
- While microglial changes are known in Alzheimer's disease (AD), they are less understood in FTLD.
- This study investigates microglial burden, activation, and dystrophy in FTLD, AD, and controls.
Purpose of the Study:
- To examine regional patterns of microglial burden, activation, and dystrophy in sporadic and genetic FTLD, AD, and control brains.
- To compare microglial characteristics across different FTLD subtypes (FTLD-tau, FTLD-TDP, FTLD-FUS) and genetic forms.
- To analyze microglial differences between grey and white matter within each disease group.
Main Methods:
- Immunohistochemistry using markers for phagocytic (CD68), antigen-presenting (CR3/43), and general microglia (Iba1).
- Quantitative assessment of microglial burden and activation (morphology).
- Semi-quantitative and qualitative assessment of microglial dystrophy, rod-shaped, and hypertrophic morphology in frontal and temporal grey and white matter.
Main Results:
- FTLD and AD cases showed higher microglial burden than controls, with often unchanged activation.
- Microglial burden was higher in white matter, while activation was greater in grey matter.
- Microglial dystrophy was more severe in FTLD and AD, particularly in white matter and in FTLD linked to GRN mutations; regional variations and subtype-specific morphologies were observed.
Conclusions:
- Microglial involvement in FTLD is regionally variable and linked to specific disease mechanisms.
- Findings support further research into microglial dysfunction in FTLD models.
- Consideration of anti-senescence therapies for FTLD is warranted.
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