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Published on: March 7, 2019
Association between brain amyloid deposition and longitudinal changes of white matter hyperintensities
Woo-Jin Cha1, Dahyun Yi2, Hyejin Ahn3
1Department of Neuropsychiatry, Seoul National University Hospital, Seoul, Republic of Korea.
Background:
Growing evidence suggests that not only cerebrovascular disease but also Alzheimer's disease (AD) pathological process itself cause cerebral white matter degeneration, resulting in white matter hyperintensities (WMHs). Some preclinical evidence also indicates that white matter degeneration may precede or affect the development of AD pathology. This study aimed to clarify the direction of influence between in vivo AD pathologies, particularly beta-amyloid (Aβ) and tau deposition, and WMHs through longitudinal approach.
Methods:
Total 282 older adults including cognitively normal and cognitively impaired individuals were recruited from the Korean Brain Aging Study for the Early Diagnosis and Prediction of Alzheimer's Disease (KBASE) cohort. The participants underwent comprehensive clinical and neuropsychological assessment, [11C] Pittsburgh Compound B PET for measuring Aβ deposition, [18F] AV-1451 PET for measuring tau deposition, and MRI scans with fluid-attenuated inversion recovery image for measuring WMH volume. The relationships between Aβ or tau deposition and WMH volume were examined using multiple linear regression analysis. In this analysis, baseline Aβ or tau were used as independent variables, and change of WMH volume over 2 years was used as dependent variable to examine the effect of AD pathology on increase of WMH volume. Additionally, we set baseline WMH volume as independent variable and longitudinal change of Aβ or tau deposition for 2 years as dependent variables to investigate whether WMH volume could precede AD pathologies.
Results:
Baseline Aβ deposition, but not tau deposition, had significant positive association with longitudinal change of WMH volume over 2 years. Baseline WMH volume was not related with any of longitudinal change of Aβ or tau deposition for 2 years. We also found a significant interaction effect between baseline Aβ deposition and sex on longitudinal change of WMH volume. Subsequent subgroup analyses showed that high baseline Aβ deposition was associated with increase of WMH volume over 2 years in female, but not in male.
Conclusions:
Our findings suggest that Aβ deposition accelerates cerebral WMHs, particularly in female, whereas white matter degeneration appears not influence on longitudinal Aβ increase. The results also did not support any direction of influence between tau deposition and WMHs.
Insights
Beta-amyloid (Aβ) deposition accelerates white matter hyperintensities (WMHs) in older adults, especially females. However, white matter degeneration does not influence Aβ increase, and tau pathology shows no link to WMHs.
Area of Science:
- Neuroscience
- Neurology
- Radiology
Background:
- Cerebral white matter degeneration, leading to white matter hyperintensities (WMHs), is linked to both cerebrovascular disease and Alzheimer's disease (AD) pathology.
- Emerging evidence suggests white matter degeneration may precede or influence AD pathology development.
- The precise direction of influence between in vivo AD pathologies (beta-amyloid [Aβ] and tau) and WMHs requires clarification.
Purpose of the Study:
- To longitudinally investigate the causal relationship between in vivo Aβ and tau deposition and white matter hyperintensities (WMHs) in older adults.
- To determine if AD pathologies influence WMH progression or if WMHs precede AD pathology development.
Main Methods:
- Recruited 282 older adults from the Korean Brain Aging Study for the Early Diagnosis and Prediction of Alzheimer's Disease (KBASE) cohort.
- Utilized [11C] Pittsburgh Compound B PET for Aβ, [18F] AV-1451 PET for tau, and MRI for WMH volume measurement.
- Employed multiple linear regression to analyze baseline AD pathologies and WMH volume in relation to longitudinal changes over 2 years.
Main Results:
- Baseline Aβ deposition positively correlated with WMH volume increase over 2 years, but baseline WMH volume did not predict longitudinal Aβ or tau changes.
- A significant interaction between baseline Aβ deposition and sex was observed, with Aβ driving WMH increase primarily in females.
- No significant associations were found between tau deposition and WMH volume changes in either direction.
Conclusions:
- Aβ deposition accelerates cerebral WMHs, particularly in females, while WMH progression does not appear to influence longitudinal Aβ increase.
- The study did not find evidence for a bidirectional relationship between tau deposition and WMHs.
- Findings highlight the role of Aβ in white matter degeneration, with sex-specific effects, in the context of aging and AD.
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