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Updated: Apr 10, 2026

Correlative Light and Electron Microscopy to Study Microglial Interactions with β-Amyloid Plaques
Published on: June 1, 2016
Layer-Specific Colocalization of Microglia with Amyloid Plaques in the Middle Temporal Gyrus Predicts Cognitive
Wellydo Kesllowd Marinho Escarião1, Guilherme Henrique Viana da Silva1, Hellen Suzane Clemente de Castro1
1Graduate Program in Neuroengineering, Edmond and Lily Safra International Institute of Neuroscience, Santos Dumont Institute, 59280-000, Macaíba, RN, Brazil.
Abstract:
Alzheimer's disease (AD), the most common form of dementia, is marked by cognitive decline and amyloid-beta (Aβ) plaque deposition in the brain. Microglia cluster around Aβ plaques shifting to a plaque-associated microglia (PAM) immunophenotype. This study investigates the association between Aβ, microglia and PAM with cognitive performance in 75 older adults, 39 with normal cognition and 36 with AD. Postmortem brain samples containing the middle temporal gyrus (MTG) underwent duplex immunohistochemistry for ionized calcium-binding adaptor molecule 1 (IBA1) and Aβ. A machine learning pipeline quantified parameters of Aβ, microglia and PAM expression. This study evaluated sex- and layer-specific patterns of expression of these parameters and the relationship with global cognitive performance, as measured by the Cognitive Abilities Screening Instrument (CASI) and the Mini-Mental State Examination (MMSE). Additionally, four specific cognitive domains, memory, executive function, language, and visuospatial processing, were evaluated. Aβ and PAM were significantly higher in AD, with no sex- or layer-specific differences. In layers 3 and 4, Aβ plaque size was inversely correlated with MMSE. In all layers, total and activated microglial densities were related to executive function, but in a cognitive status-dependent manner. In layers 5 and 6, higher PAM expression correlated with lower CASI and MMSE scores. PAM expressions in layers 3, 5, and 6 were negatively associated with memory scores. This study characterizes Aβ, microglia, and PAM patterns in the MTG, revealing layer-specific associations between histopathological metrics and cognitive domains. It also highlights PAM as a potential therapeutic target to mitigate cognitive decline in AD.
Insights
Alzheimer's disease (AD) involves amyloid-beta (Aβ) plaques and plaque-associated microglia (PAM). This study found PAM in specific brain layers negatively impacts cognitive functions like memory and executive function in AD patients.
Area of Science:
- Neuroscience
- Neuropathology
- Gerontology
Background:
- Alzheimer's disease (AD) is characterized by cognitive decline and brain amyloid-beta (Aβ) plaque accumulation.
- Microglia, the brain's immune cells, adopt a plaque-associated microglia (PAM) phenotype around Aβ plaques.
Purpose of the Study:
- To investigate the association between Aβ, microglia, and PAM with cognitive performance in older adults with and without AD.
- To explore sex- and layer-specific patterns of these markers in the middle temporal gyrus (MTG) and their relationship with cognitive domains.
Main Methods:
- Postmortem brain samples (MTG) from 75 older adults were analyzed using duplex immunohistochemistry for Aβ and ionized calcium-binding adaptor molecule 1 (IBA1).
- A machine learning pipeline quantified Aβ, microglia, and PAM expression.
- Cognitive performance was assessed using global measures (CASI, MMSE) and specific domains (memory, executive function, language, visuospatial processing).
Main Results:
- Aβ and PAM levels were significantly higher in AD patients compared to controls.
- Aβ plaque size in layers 3 and 4 correlated inversely with Mini-Mental State Examination (MMSE) scores.
- Microglial density related to executive function in all layers, dependent on cognitive status.
- Higher PAM expression in layers 5 and 6 correlated with lower CASI and MMSE scores.
- PAM in layers 3, 5, and 6 was negatively associated with memory scores.
Conclusions:
- This study characterizes Aβ, microglia, and PAM patterns in the MTG, demonstrating layer-specific links to cognitive decline.
- Plaque-associated microglia (PAM) emerge as a potential therapeutic target for mitigating cognitive impairment in Alzheimer's disease.
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