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Updated: Aug 5, 2026

Using Live Cell STED Imaging to Visualize Mitochondrial Inner Membrane Ultrastructure in Neuronal Cell Models
Published on: June 30, 2023
Mitochondrial accumulation and lysosomal dysfunction result in mitochondrial plaques in Alzheimer's disease
Xiuli Dan1,2, Deborah L Croteau1,3, Wenlong Liu4
1Section on DNA Repair, National Institute on Aging, NIH, Baltimore, MD, USA.
Abstract:
Dysfunctional mitophagy is proposed as a key component of Alzheimer's disease (AD) pathology, yet direct in vivo evidence and mechanistic insights are still lacking. Here we show that AD model mice expressing a mitophagy reporter (APP/PSEN1/mt-Keima) develop large accumulation of acidic and neutral mitochondria within neuronal processes that form a previously unrecognized pathological structure termed mitochondrial plaques (MPs). The development of MPs is driven by abnormal mitochondrial buildup and lysosomal recruitment occurs as a delayed response to promote mitochondrial degradation. However, degradation through mitophagy is incomplete due to impaired lysosomal functions, resulting in accumulation of both neutral and acidic mitochondria. MPs frequently codevelop with amyloid to form mixed plaques but can also emerge independently at early stages of disease. Notably, MPs were also identified in the 5xFAD AD mouse model and postmortem human AD brains. These findings establish MPs as a new pathological entity in AD.
Insights
Mitochondrial plaques (MPs), a new pathological structure in Alzheimer's disease (AD), were discovered in AD model mice and human brains. These plaques result from dysfunctional mitophagy and impaired lysosomal function in neurons.
Area of Science:
- Neuroscience
- Cell Biology
- Pathology
Background:
- Dysfunctional mitophagy is implicated in Alzheimer's disease (AD) pathology.
- Direct in vivo evidence and mechanistic insights into mitophagy's role in AD are limited.
Purpose of the Study:
- To investigate the in vivo role of mitophagy in Alzheimer's disease.
- To identify and characterize novel pathological structures associated with AD.
Main Methods:
- Utilized AD model mice (APP/PSEN1/mt-Keima) expressing a mitophagy reporter.
- Analyzed mitochondrial accumulation and lysosomal function in neuronal processes.
- Examined postmortem human AD brains for pathological features.
Main Results:
- Identified a previously unrecognized pathological structure termed mitochondrial plaques (MPs) in AD model mice.
- MPs are characterized by the accumulation of acidic and neutral mitochondria due to impaired mitophagy and lysosomal function.
- MPs were found to co-develop with amyloid plaques but can also emerge independently, and were present in 5xFAD mice and human AD brains.
Conclusions:
- Mitochondrial plaques (MPs) represent a novel pathological entity in Alzheimer's disease.
- Dysfunctional mitophagy and impaired lysosomal degradation contribute to MP formation.
- MPs are present in both mouse models and human AD brains, suggesting their significance in AD pathogenesis.
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