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Updated: Jun 29, 2026

Isolation of Cortical Microglia with Preserved Immunophenotype and Functionality From Murine Neonates
Published on: January 30, 2014
Microglial activation occurs late during preclinical Alzheimer's disease
Wolfgang J Streit1, Heiko Braak2, Kelly Del Tredici2
1Department of Neuroscience, University of Florida College of Medicine, Gainesville, Florida.
Abstract:
Sporadic Alzheimer's disease (AD) is marked by a lengthy preclinical phase during which patients are nonsymptomatic but show pathology in variable manifestations. Whether or not neuroinflammation occurs in such nondemented individuals is unknown. We evaluated the medial temporal lobe of 66 nondemented subjects, aged 42-93, in terms of tau pathology, Aβ deposition, and microglial activation. We show that 100% of subjects had neurofibrillary degeneration (NFD), 35% had Aβ deposits, and 8% revealed microglial activation in individuals where early amyloid formation was apparent by Congo Red staining. Amyloid-induced neuroinflammatory clusters of Iba1, CD68, and ferritin-positive microglia were evident in the immediate vicinity of aggregated Aβ. Microglia in the adjacent neuropil were nonactivated. Thus, neuroinflammation in AD represents a highly localized phagocyte reaction, essentially a foreign body response, geared toward removal of insoluble Aβ. Because clustered microglia in some amyloid plaques were dystrophic and ferritin-positive, we hypothesize that these cells were exhausted by their attempts to remove the aggregated, insoluble Aβ. Our findings show that the sequence of pathologic events in AD begins with tau pathology, followed by Aβ deposition, and then by microglial activation. Because only 8% of our subjects revealed all three hallmark pathologic features, we propose that these nondemented individuals were near the threshold of transitioning from nonsymptomatic to symptomatic disease. The onset of neuroinflammation in AD may thus represent a tipping point in AD pathogenesis. Our study suggests that the role of microglia in AD pathogenesis entails primarily the attempted removal of potentially toxic, extracellular material.
Insights
Neuroinflammation in Alzheimer's disease (AD) is a localized response to amyloid-beta (Aβ) plaques, suggesting microglia attempt to clear toxic material. This immune response may signal a transition to symptomatic AD disease.
Area of Science:
- Neuroscience
- Neuropathology
- Immunology
Background:
- Sporadic Alzheimer's disease (AD) has a long preclinical phase with unknown neuroinflammation status.
- Nondemented individuals may exhibit early AD pathology.
Purpose of the Study:
- To investigate the presence and nature of neuroinflammation in nondemented individuals with early Alzheimer's disease pathology.
- To determine the sequence of pathological events in early AD pathogenesis.
Main Methods:
- Evaluation of medial temporal lobe tissue from 66 nondemented subjects (aged 42-93).
- Assessment of tau pathology (neurofibrillary degeneration), amyloid-beta (Aβ) deposition, and microglial activation (Iba1, CD68, ferritin).
- Congo Red staining to identify amyloid formation.
Main Results:
- 100% of subjects showed neurofibrillary degeneration; 35% had Aβ deposits; 8% exhibited microglial activation near amyloid plaques.
- Neuroinflammation was localized to clusters of microglia around aggregated Aβ, suggesting a foreign body response.
- Microglia appeared exhausted (dystrophic, ferritin-positive) in some cases, indicating attempts to clear insoluble Aβ.
Conclusions:
- The pathological sequence in AD begins with tau pathology, followed by Aβ deposition, and then microglial activation.
- The onset of neuroinflammation may represent a tipping point in AD pathogenesis.
- Microglia's primary role in AD pathogenesis appears to be the attempted removal of toxic extracellular Aβ material.
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