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Quantitative 3D In Silico Modeling q3DISM of Cerebral Amyloid-beta Phagocytosis in Rodent Models of Alzheimer's Disease
Published on: December 26, 2016
Human APOE4 increases microglia reactivity at Aβ plaques in a mouse model of Aβ deposition
Gustavo A Rodriguez, Leon M Tai, Mary Jo LaDu
1Department of Neuroscience, Georgetown University Medical Center, 3970 Reservoir Road, NW Washington, DC 20057, USA. gwr2@georgetown.edu.
Background:
Having the apolipoprotein E4 (APOE-ϵ4) allele is the strongest genetic risk factor for the development of Alzheimer's disease (AD). Accumulation of amyloid beta (Aβ) in the brain is influenced by APOE genotype. Transgenic mice co-expressing five familial AD mutations (5xFAD) in the presence of human APOE alleles (ϵ2, ϵ3 or ϵ4) exhibit APOE genotype-specific differences in early Aβ accumulation, suggesting an interaction between APOE and AD pathology. Whether APOE genotype affects Aβ-plaque-associated neuroinflammation remains unclear. In the current study, we address the role of APOE genotype on Aβ-associated microglial reactivity in the EFAD transgenic mouse model.
Methods:
We analyzed Aβ-induced glial activation in the brains of 6-month-old EFAD transgenic mice (E2FAD, E3FAD and E4FAD). Region-specific morphological profiles of Aβ plaques in EFAD brain sections were compared using immunofluorescence staining. We then determined the degree of glial activation in sites of Aβ deposition while comparing levels of the inflammatory cytokine Interleukin-1β (IL-1β) by ELISA. Finally, we quantified parameters of Aβ-associated microglial reactivity using double-stained EFAD brain sections.
Results:
Characterization of Aβ plaques revealed there were larger and more intensely stained plaques in E4FAD mice relative to E2FAD and E3FAD mice. E4FAD mice also had a greater percentage of compact plaques in the subiculum than E3FAD mice. Reactive microglia and dystrophic astrocytes were prominent in EFAD brains, and primarily localized to two sites of significant Aβ deposition: the subiculum and deep layers of the cortex. Cortical levels of IL-1β were nearly twofold greater in E4FAD mice relative to E3FAD mice. To control for differences in levels of Aβ in the different EFAD mice, we analyzed the microglia within domains of specific Aβ deposits. Morphometric analyses revealed increased measures of microglial reactivity in E4FAD mice, including greater dystrophy, increased fluorescence intensity and a higher density of reactive cells surrounding cortical plaques, than in E3FAD mice.
Conclusions:
In addition to altering morphological profiles of Aβ deposition, APOE genotype influences Aβ-induced glial activation in the adult EFAD cortex. These data support a role for APOE in modulating Aβ-induced neuroinflammatory responses in AD progression, and support the use of EFAD mice as a suitable model for mechanistic studies of Aβ-associated neuroinflammation.
Insights
The apolipoprotein E4 (APOE-ϵ4) allele exacerbates Alzheimer's disease (AD) pathology by increasing amyloid beta (Aβ) plaque size and promoting neuroinflammation. This study shows APOE genotype significantly impacts microglial reactivity around Aβ deposits in the brain.
Area of Science:
- Neuroscience
- Genetics
- Immunology
Background:
- The apolipoprotein E4 (APOE-ϵ4) allele is the primary genetic risk factor for Alzheimer's disease (AD).
- APOE genotype influences amyloid beta (Aβ) accumulation in the brain.
- The impact of APOE genotype on Aβ-associated neuroinflammation is not fully understood.
Purpose of the Study:
- To investigate the role of APOE genotype in Aβ-associated microglial reactivity in the EFAD transgenic mouse model.
- To determine how APOE genotype affects neuroinflammation in the context of AD pathology.
Main Methods:
- Analyzed Aβ-induced glial activation in 6-month-old E2FAD, E3FAD, and E4FAD mice.
- Compared Aβ plaque morphology using immunofluorescence staining.
- Quantified glial activation and Interleukin-1β (IL-1β) levels via ELISA and morphometric analyses of microglial reactivity.
Main Results:
- E4FAD mice exhibited larger, more intensely stained, and more compact Aβ plaques compared to E2FAD and E3FAD mice.
- Increased cortical levels of IL-1β were observed in E4FAD mice.
- E4FAD mice showed heightened microglial reactivity, including greater dystrophy and density, surrounding cortical plaques.
Conclusions:
- APOE genotype significantly influences Aβ deposition morphology and Aβ-induced glial activation in the EFAD mouse cortex.
- APOE plays a role in modulating Aβ-induced neuroinflammatory responses during AD progression.
- EFAD mice are a valuable model for studying Aβ-associated neuroinflammation in AD.

