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Primary motor cortex involvement in Alzheimer disease
1University Institute of Pathology, CHUV, Lausanne, Switzerland.
Abstract:
In Alzheimer disease (AD) the involvement of entorhinal cortex, hippocampus, and associative cortical areas is well established. Regarding the involvement of the primary motor cortex the reported data are contradictory. In order to determine whether the primary motor cortex is involved in AD, the brains of 29 autopsy cases were studied, including, 17 cases with severe cortical AD-type changes with definite diagnoses of AD, 7 age-matched cases with discrete to moderate cortical AD-type changes, and 5 control cases without any AD-type cortical changes. Morphometric analysis of the cortical surface occupied by senile plaques (SPs) on beta-amyloid-immunostained sections and quantitative analysis of neurofibrillary tangles (NFTs) on Gallyas-stained sections was performed in 5 different cortical areas including the primary motor cortex. The percentage of cortical surface occupied by SPs was similar in all cortical areas, without significant difference and corresponded to 16.7% in entorhinal cortex, 21.3% in frontal associative, 16% in parietal associative, and 15.8% in primary motor cortex. The number of NFTs in the entorhinal cortex was significantly higher (41 per 0.4 mm2), compared with those in other cortical areas (20.5 in frontal, 17.9 in parietal and 11.5 in the primary motor cortex). Our findings indicate that the primary motor cortex is significantly involved in AD and suggest the appearance of motor dysfunction in late and terminal stages of the disease.
Insights
Alzheimer disease (AD) significantly impacts the primary motor cortex, not just memory areas. This study found neurofibrillary tangles in motor regions, suggesting motor dysfunction in late-stage AD.
Area of Science:
- Neuropathology
- Neurodegenerative Diseases
Background:
- Alzheimer disease (AD) pathology is well-documented in the entorhinal cortex, hippocampus, and associative cortical areas.
- Contradictory findings exist regarding the primary motor cortex's involvement in AD.
Purpose of the Study:
- To investigate the involvement of the primary motor cortex in Alzheimer disease.
- To compare the distribution of senile plaques (SPs) and neurofibrillary tangles (NFTs) in the primary motor cortex versus other cortical areas.
Main Methods:
- Autopsy brains from 29 cases (17 AD, 7 mild AD-type changes, 5 controls) were analyzed.
- Morphometric analysis of SPs (beta-amyloid-immunostained sections) and quantitative analysis of NFTs (Gallyas-stained sections) were performed.
- Five cortical areas were examined, including the primary motor cortex.
Main Results:
- SPs occupied a similar cortical surface percentage across all analyzed areas (e.g., 15.8% in primary motor cortex).
- NFTs were significantly more abundant in the entorhinal cortex (41 per 0.4 mm²) compared to other areas, including the primary motor cortex (11.5 per 0.4 mm²).
Conclusions:
- The primary motor cortex shows significant involvement in Alzheimer disease.
- The presence of NFTs in the primary motor cortex suggests potential motor dysfunction in the late and terminal stages of AD.