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Correlative Light and Electron Microscopy to Study Microglial Interactions with β-Amyloid Plaques
Published on: June 1, 2016
Microglial response to increasing amyloid load saturates with aging: a longitudinal dual tracer in vivo μPET-study
Tanja Blume1,2, Carola Focke1, Finn Peters2
1Department of Nuclear Medicine, University Hospital, LMU Munich, Marchioninistraße 15, 81377, Munich, Germany.
Background:
Causal associations between microglia activation and β-amyloid (Aβ) accumulation during the progression of Alzheimer's disease (AD) remain a matter of controversy. Therefore, we used longitudinal dual tracer in vivo small animal positron emission tomography (μPET) imaging to resolve the progression of the association between Aβ deposition and microglial responses during aging of an Aβ mouse model.
Methods:
APP-SL70 mice (N = 17; baseline age 3.2-8.5 months) and age-matched C57Bl/6 controls (wildtype (wt)) were investigated longitudinally for 6 months using Aβ (18F-florbetaben) and 18 kDa translocator protein (TSPO) μPET (18F-GE180). Changes in cortical binding were transformed to Z-scores relative to wt mice, and microglial activation relative to amyloidosis was defined as the Z-score difference (TSPO-Aβ). Using 3D immunohistochemistry for activated microglia (Iba-1) and histology for fibrillary Aβ (methoxy-X04), we measure microglial brain fraction relative to plaque size and the distance from plaque margins.
Results:
Aβ-PET binding increased exponentially as a function of age in APP-SL70 mice, whereas TSPO binding had an inverse U-shape growth function. Longitudinal Z-score differences declined with aging, suggesting that microglial response declined relative to increasing amyloidosis in aging APP-SL70 mice. Microglial brain volume fraction was inversely related to adjacent plaque size, while the proximity to Aβ plaques increased with age.
Conclusions:
Microglial activity decreases relative to ongoing amyloidosis with aging in APP-SL70 mice. The plaque-associated microglial brain fraction saturated and correlated negatively with increasing plaque size with aging.
Insights
Microglial activation in Alzheimer's disease (AD) models declines with aging relative to beta-amyloid (Aβ) accumulation. This study used μPET imaging to show reduced microglial response as Aβ plaques grow larger and older.
Area of Science:
- Neuroscience
- Immunology
- Radiochemistry
Background:
- The relationship between microglia activation and beta-amyloid (Aβ) accumulation in Alzheimer's disease (AD) progression is debated.
- Investigating this association requires longitudinal studies tracking both pathologies over time.
Purpose of the Study:
- To longitudinally assess the evolving association between Aβ deposition and microglial responses in an AD mouse model.
- To clarify the dynamic interplay between amyloidosis and neuroinflammation during disease progression.
Main Methods:
- Longitudinal dual-tracer small animal positron emission tomography (μPET) imaging was employed in APP-SL70 mice and wildtype controls.
- Aβ deposition was measured using 18F-florbetaben, and microglia activation was assessed via 18F-GE180 targeting TSPO.
- 3D immunohistochemistry and histology quantified microglial fraction, plaque size, and proximity to Aβ plaques.
Main Results:
- Aβ deposition increased exponentially with age in APP-SL70 mice, while TSPO binding showed an inverse U-shape.
- The microglial response, measured by longitudinal Z-score differences, declined with aging relative to amyloidosis.
- Microglial brain volume fraction decreased with increasing plaque size and proximity to plaques increased with age.
Conclusions:
- Microglial activity diminishes relative to amyloidosis as APP-SL70 mice age.
- The plaque-associated microglial fraction saturates and negatively correlates with plaque size during aging, indicating a declining inflammatory response.
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