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Using Retinal Imaging to Study Dementia
Published on: November 6, 2017
Hippocampal Neurodegenerative Pathology in Post-stroke Dementia Compared to Other Dementias and Aging Controls
Rufus O Akinyemi1,2, Louise M Allan2, Arthur Oakley2
1Neuroscience and Ageing Research Unit, Institute for Advanced Medical Research and Training, College of Medicine, University of Ibadan, Oyo, Nigeria.
Abstract:
Neuroimaging evidence from older stroke survivors in Nigeria and Northeast England showed medial temporal lobe atrophy (MTLA) to be independently associated with post-stroke cognitive impairment and dementia. Given the hypothesis ascribing MTLA to neurodegenerative processes, we assessed Alzheimer pathology in the hippocampal formation and entorhinal cortex of autopsied brains from of post-stroke demented and non-demented subjects in comparison with controls and other dementias. We quantified markers of amyloid β (total Aβ, Aβ-40, Aβ-42, and soluble Aβ) and hyperphosphorylated tau in the hippocampal formation and entorhinal cortex of 94 subjects consisting of normal controls (n = 12), vascular dementia, VaD (17), post-stroke demented, PSD (n = 15), and post-stroke non-demented, PSND (n = 23), Alzheimer's disease, AD (n = 14), and mixed AD and vascular dementia, AD_VAD (n = 13) using immunohistochemical techniques. We found differential expression of amyloid and tau across the disease groups, and across hippocampal sub-regions. Among amyloid markers, the pattern of Aβ-42 immunoreactivity was similar to that of total Aβ. Tau immunoreactivity showed highest expression in the AD and mixed AD and vascular dementia, AD_VaD, which was higher than in control, post - stroke and VaD groups (p < 0.05). APOE ε4 allele positivity was associated with higher expression of amyloid and tau pathology in the subiculum and entorhinal cortex of post-stroke cases (p < 0.05). Comparison between PSND and PSD revealed higher total Aβ immunoreactivity in PSND compared to PSD in the CA1, subiculum and entorhinal cortex (p < 0.05) but no differences between PSND and PSD in Aβ-42, Aβ-40, soluble Aβ or tau immunoreactivities (p > 0.05). Correlation of MMSE and CAMCOG scores with AD pathological measures showed lack of correlation with amyloid species although tau immunoreactivity demonstrated correlation with memory scores (p < 0.05). Our findings suggest hippocampal AD pathology does not necessarily differ between demented and non-demented post-stroke subjects. The dissociation of cognitive performance with hippocampal AD pathological burden suggests more dominant roles for non-Alzheimer neurodegenerative and / or other non-neurodegenerative substrates for dementia following stroke.
Insights
Alzheimer
Area of Science:
- Neuropathology
- Neurodegenerative Diseases
- Stroke Research
Background:
- Medial temporal lobe atrophy (MTLA) is linked to cognitive impairment and dementia in stroke survivors.
- The role of Alzheimer's disease (AD) pathology in post-stroke dementia (PSD) requires further investigation.
Purpose of the Study:
- To investigate Alzheimer's disease pathology, including amyloid-beta (Aβ) and tau, in the brains of post-stroke demented (PSD) and non-demented (PSND) subjects.
- To compare AD pathology in PSD and PSND groups with normal controls, vascular dementia (VaD), and AD.
Main Methods:
- Immunohistochemical quantification of total Aβ, Aβ-40, Aβ-42, soluble Aβ, and hyperphosphorylated tau in hippocampal and entorhinal cortex.
- Analysis of 94 autopsied brains from normal controls, VaD, PSD, PSND, AD, and mixed AD/VaD groups.
- Correlation of pathological findings with APOE ε4 allele status and cognitive scores (MMSE, CAMCOG).
Main Results:
- Differential expression of amyloid and tau was observed across disease groups and hippocampal sub-regions.
- Tau immunoreactivity was highest in AD and mixed AD/VaD groups, significantly higher than controls, post-stroke, and VaD groups.
- APOE ε4 positivity correlated with increased amyloid and tau pathology in post-stroke cases.
- Total Aβ immunoreactivity was higher in PSND than PSD, but no differences were found for other Aβ markers or tau.
- Tau immunoreactivity correlated with memory scores, while amyloid species did not.
Conclusions:
- Hippocampal Alzheimer's disease pathology does not significantly differ between demented and non-demented post-stroke subjects.
- The dissociation between cognitive performance and hippocampal AD pathology suggests non-Alzheimer neurodegenerative or other mechanisms contribute to dementia post-stroke.
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