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Updated: Apr 1, 2026

Longitudinal In Vivo Imaging of the Cerebrovasculature: Relevance to CNS Diseases
Published on: December 6, 2016
Exploring the effects of coexisting amyloid in subcortical vascular cognitive impairment
Elizabeth Dao1, Ging-Yuek Robin Hsiung2, Vesna Sossi3,4
1Djavad Mowafaghian Centre for Brain Health, University of British Columbia, 2215 Wesbrook Mall, Vancouver, BC, V6S 0A9, Canada. lizdao@mail.ubc.ca.
Background:
Mixed pathology, particularly Alzheimer's disease with cerebrovascular lesions, is reported as the second most common cause of dementia. Research on mixed dementia typically includes people with a primary AD diagnosis and hence, little is known about the effects of co-existing amyloid pathology in people with vascular cognitive impairment (VCI). The purpose of this study was to understand whether individual differences in amyloid pathology might explain variations in cognitive impairment among individuals with clinical subcortical VCI (SVCI).
Methods:
Twenty-two participants with SVCI completed an (11)C Pittsburgh compound B (PIB) position emission tomography (PET) scan to quantify global amyloid deposition. Cognitive function was measured using: 1) MOCA; 2) ADAS-Cog; 3) EXIT-25; and 4) specific executive processes including a) Digits Forward and Backwards Test, b) Stroop-Colour Word Test, and c) Trail Making Test. To assess the effect of amyloid deposition on cognitive function we conducted Pearson bivariate correlations to determine which cognitive measures to include in our regression models. Cognitive variables that were significantly correlated with PIB retention values were entered in a hierarchical multiple linear regression analysis to determine the unique effect of amyloid on cognitive function. We controlled for age, education, and ApoE ε4 status.
Results:
Bivariate correlation results showed that PIB binding was significantly correlated with ADAS-Cog (p < 0.01) and MOCA (p < 0.01); increased PIB binding was associated with worse cognitive function on both cognitive measures. PIB binding was not significantly correlated with the EXIT-25 or with specific executive processes (p > 0.05). Regression analyses controlling for age, education, and ApoE ε4 status indicated an independent association between PIB retention and the ADAS-Cog (adjusted R-square change of 15.0%, Sig F Change = 0.03). PIB retention was also independently associated with MOCA scores (adjusted R-Square Change of 27.0%, Sig F Change = 0.02).
Conclusion:
We found that increased global amyloid deposition was significantly associated with greater memory and executive dysfunctions as measured by the ADAS-Cog and MOCA. Our findings point to the important role of co-existing amyloid deposition for cognitive function in those with a primary SVCI diagnosis. As such, therapeutic approaches targeting SVCI must consider the potential role of amyloid for the optimal care of those with mixed dementia.
Trial Registration:
NCT01027858.
Insights
In individuals with subcortical vascular cognitive impairment (SVCI), higher amyloid deposition is linked to worse memory and executive functions. This highlights the importance of considering amyloid in treating mixed dementia for better patient outcomes.
Area of Science:
- Neurology
- Neuroscience
- Gerontology
Background:
- Mixed dementia, often Alzheimer's disease (AD) with cerebrovascular lesions, is a leading cause of cognitive decline.
- Research on mixed dementia predominantly focuses on primary AD, leaving a gap in understanding amyloid's impact on vascular cognitive impairment (VCI).
- Subcortical VCI (SVCI) is a common form of VCI, but the role of co-existing amyloid pathology in cognitive variations within this group remains unclear.
Purpose of the Study:
- To investigate whether individual differences in amyloid pathology explain cognitive impairment variations in patients with clinical SVCI.
- To determine the independent effect of global amyloid deposition on cognitive function in SVCI.
Main Methods:
- Twenty-two SVCI participants underwent amyloid positron emission tomography (PET) using (11)C Pittsburgh compound B (PIB).
- Cognitive function was assessed using the Montreal Cognitive Assessment (MOCA), Alzheimer's Disease Assessment Scale-Cognitive (ADAS-Cog), EXIT-25, and specific executive function tests.
- Pearson correlations identified cognitive measures linked to PIB retention, followed by hierarchical multiple linear regression, controlling for age, education, and ApoE ε4 status.
Main Results:
- Increased PIB retention significantly correlated with poorer performance on ADAS-Cog and MOCA (p < 0.01).
- No significant correlation was found between PIB binding and EXIT-25 or specific executive function tests (p > 0.05).
- Regression analyses revealed that amyloid deposition independently predicted ADAS-Cog scores (adjusted R-square change = 15.0%, p = 0.03) and MOCA scores (adjusted R-Square Change = 27.0%, p = 0.02) after controlling for covariates.
Conclusions:
- Elevated global amyloid deposition is significantly associated with increased memory and executive dysfunction in individuals with SVCI.
- These findings underscore the critical role of co-existing amyloid pathology in cognitive decline among patients with a primary SVCI diagnosis.
- Optimal treatment strategies for SVCI should incorporate the potential impact of amyloid, particularly in cases of mixed dementia.
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