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Updated: Sep 3, 2025

Author Spotlight: Decoding Mitochondrial Aging
Published on: June 30, 2023
Sex-Related Microglial Perturbation Is Related to Mitochondrial Changes in a Model of Alzheimer's Disease
Eoin O'Neill1, Virginia Mela1, Aline Sayd Gaban1
1Trinity College Institute of Neuroscience, Trinity College Dublin, Dublin, Ireland.
Abstract:
Many studies implicate microglia in the pathogenesis of Alzheimer's disease (AD) but precisely how these cells make their impact has not been determined to date. One contributory factor is likely to be the enhanced production of inflammatory mediators and it is now known that microglia with this secretory phenotype exhibit other adaptations including in their morphology, function, and metabolism. AD, like many neurological disorders, demonstrates a sex bias and recent evidence indicates that the sexual dimorphism in microglial function, which has been recognized for many years in early development, persists into adulthood and aging. Here, we demonstrate sex-related differences in microglia from post mortem tissue of male and female AD patients and a marked increase in the number of dystrophic and rod-shaped microglia in tissue from female AD patients compared with males. Furthermore, there was an increase in iron-laden microglia in tissue from female AD patients and this has been reported to reflect mitochondrial changes. To address this further, we assessed changes in microglia from male and female APP/PS1 mice and demonstrate that iron accumulation in microglia is increased to a greater extent in tissue prepared from females compared with males. This was associated with altered expression of genes coding for proteins that modulate mitochondrial function. The findings suggest that sex-related differences in the severity and perhaps incidence of AD may, at least in part, arise from sexual dimorphism in microglia.
Insights
Sex differences in microglia, the brain
Area of Science:
- Neuroscience
- Immunology
- Genetics
Background:
- Microglia play a role in Alzheimer's disease (AD) pathogenesis.
- Microglia exhibit altered morphology, function, and metabolism in AD.
- Neurological disorders, including AD, show sex bias, with persistent sexual dimorphism in microglia.
Purpose of the Study:
- To investigate sex-related differences in microglia from Alzheimer's disease patients and mouse models.
- To explore the impact of sexual dimorphism in microglia on AD pathogenesis.
Main Methods:
- Analysis of post-mortem human brain tissue from male and female AD patients.
- Assessment of microglia in male and female APP/PS1 mouse models of AD.
- Evaluation of microglial morphology, iron content, and gene expression related to mitochondrial function.
Main Results:
- Female AD patients showed increased numbers of dystrophic and rod-shaped microglia compared to males.
- Increased iron accumulation in microglia was observed in female AD patients and female mice.
- Iron accumulation in microglia correlated with altered expression of mitochondrial function genes, particularly in females.
Conclusions:
- Sexual dimorphism in microglia contributes to sex-related differences in Alzheimer's disease.
- Microglial iron accumulation and associated mitochondrial changes may underlie sex differences in AD severity and incidence.

