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APOE genotype and sex affect microglial interactions with plaques in Alzheimer's disease mice
T L Stephen1, M Cacciottolo1, D Balu2
1Leonard Davis School of Gerontology, University of Southern California, 3715 McClintock Avenue, Los Angeles, CA, 90089-0191, USA.
Abstract:
Microglia affect Alzheimer's disease (AD) pathogenesis in opposing manners, by protecting against amyloid accumulation in early phases of the disease and promoting neuropathology in advanced stages. Recent research has identified specific microglial interactions with amyloid plaques that exert important protective functions including attenuation of early pathology. It is unknown how these protective microglial interactions with plaques are affected by apolipoprotein E (APOE) genotype and sex, two well-established AD risk factors that modulate microglial function. We investigated this question using quantitative confocal microscopy to compare microglial interactions with amyloid plaques in male and female EFAD mice across APOE3 and APOE4 genotypes at 6 months of age. We observed that microglial coverage of plaques is highest in male APOE3 mice with significant reductions in coverage observed with both APOE4 genotype and female sex. Plaque compaction, a beneficial consequence of microglial interactions with plaques, showed a similar pattern in which APOE4 genotype and female sex were associated with significantly lower values. Within the plaque environment, microglial expression of triggering receptor expressed on myeloid cells 2 (TREM2), a known regulator of microglial plaque coverage, was highest in male APOE3 mice and reduced by APOE4 genotype and female sex. These differences in plaque interactions were unrelated to the number of microglial processes in the plaque environment across groups. Interestingly, the pattern of amyloid burden across groups was opposite to that of microglial plaque coverage, with APOE4 genotype and female sex showing the highest amyloid levels. These findings suggest a possible mechanism by which microglia may contribute to the increased AD risk associated with APOE4 genotype and female sex.
Insights
Microglia
Area of Science:
- Neuroscience
- Immunology
- Genetics
Background:
- Microglia play a dual role in Alzheimer's disease (AD) pathogenesis, offering protection early on and contributing to pathology later.
- Specific microglial interactions with amyloid plaques are protective, but their modulation by apolipoprotein E (APOE) genotype and sex remains unclear.
- APOE genotype and sex are significant risk factors for AD, influencing microglial function.
Purpose of the Study:
- To investigate how APOE genotype and sex affect microglial interactions with amyloid plaques in early-stage Alzheimer's disease.
- To compare microglial coverage, plaque compaction, and TREM2 expression in relation to APOE3/APOE4 genotype and sex.
- To explore the relationship between microglial plaque interactions and amyloid burden.
Main Methods:
- Quantitative confocal microscopy was used to analyze microglial interactions with amyloid plaques.
- Male and female EFAD mice with APOE3 and APOE4 genotypes were studied at 6 months of age.
- Microglial plaque coverage, plaque compaction, TREM2 expression, and amyloid burden were quantified.
Main Results:
- Microglial coverage of plaques was highest in male APOE3 mice, with significant reductions in APOE4 genotype and female sex.
- Plaque compaction and TREM2 expression followed a similar pattern, being reduced in APOE4 and female mice.
- Amyloid burden showed an inverse correlation with microglial plaque coverage, being highest in APOE4 and female mice.
Conclusions:
- APOE4 genotype and female sex are associated with reduced protective microglial-APOE interactions in early AD.
- These altered microglial interactions may contribute to the increased AD risk observed with APOE4 genotype and female sex.
- Findings suggest a mechanism linking APOE genotype, sex, and microglial function to AD pathogenesis.
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