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March 10, 2026Brain Communications0 citationsOpen Access

Ventricular enlargement is associated with early Alzheimer’s disease pathophysiology

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SHSeyyed Ali HosseiniEAEtienne AumontNRNesrine Rahmouni

Key Points

  • This research examines how changes in cerebrospinal fluid (CSF) dynamics relate to brain protein aggregation in Alzheimer’s disease.
  • Examined 378 individuals from the TRIAD cohort using T1-weighted MRI, amyloid-PET, and tau-PET.
  • Measured lateral ventricle and choroid plexus volumes corrected for intracranial volume.
  • Used linear models to associate ventricular volume and choroid plexus volume with amyloid-beta and tau aggregations.
  • Larger ventricular and choroid plexus volumes correlated with higher neocortical amyloid-beta-PET SUVR.
  • Lower ventricular radioactivity showed strong negative associations with specific neocortical regions.
  • Ventricular volume mediated the relationship between ventricular parameters and amyloid load, but not tau load.

Abstract

Abstract Alzheimer’s disease (AD) is characterized by progressive brain changes, including protein aggregation and structural changes. Cerebrospinal fluid (CSF) system abnormalities such as ventricular dilation, increased choroid plexus volume, or positron emission tomography (PET) ligand uptake in the CSF have also been consistently described. We aimed to examine whether changes in CSF production and clearance might be associated with brain protein aggregation across biological stages of AD. We hypothesized an association between brain protein aggregation and changes on the CSF system. We examined 378 individuals from the Translational Biomarkers in Aging and Dementia (TRIAD) cohort with T1-weighted magnetic resonance imaging (MRI), amyloid-PET, and tau-PET assessments. We assessed the lateral ventricle and choroid plexus volumes, both corrected for intracranial volume, in the MRI native space. Non-specific ventricular tracer standardized uptake value ratio (SUVR), derived from amyloid- and tau-PET images, was used as an indirect marker of choroid plexus-related clearance activity and served as a metric of CSF dynamics. Linear models tested associations among lateral ventricular volume (reflecting CSF space enlargement), choroid plexus volume (reflecting secretory tissue morphology), and ventricular SUVR (reflecting tracer activity within the CSF compartment and serving as an indirect marker of choroid plexus-related clearance function and CSF dynamics) with amyloid-beta (Aβ) and tau aggregations. Analyses were restricted to within-modality associations, relating ventricular radioactivity to cortical pathology for each PET tracer. We found that when considered independently, larger ventricular and choroid plexus volumes were associated with higher neocortical Aβ-PET SUVR, particularly in the precuneus and cingulate cortices. Additionally, lower ventricular radioactivity (derived from amyloid-PET) showed strong negative associations in the dorsal apex of the neocortex. However, when all three ventricular parameters were included in the same model, these effects were mediated by ventricular volume. By contrast, the effect of the ventricular parameters on tau load was mediated by Aβ in the neocortex. Therefore, ventricular enlargement appears to be associated with Aβ load. Distinct from neurodegeneration, changes in ventricular parameters, particularly ventricular volume, are associated with upstream AD pathophysiology. While ventricular volume significantly mediated ventricular amyloid clearance, no such effect was observed for tau, suggesting distinct clearance mechanisms for these pathologies in AD.

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Cite This Study

Hosseini et al. (2026) studied this question.

synapsesocial.com/papers/69af94fa70916d39fea4c114https://doi.org/10.1093/braincomms/fcag066
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