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Updated: Nov 11, 2025

Evaluation of the Cognitive Performance of Hypertensive Patients with Silent Cerebrovascular Lesions
Published on: April 23, 2021
Haemodynamic impairment along the Alzheimer's disease continuum
Marina Diomedi1, Alessandro Rocco1, Chiara Giuseppina Bonomi2
1Stroke Center, Policlinico Tor Vergata, Rome University 'Tor Vergata', Rome, Italy.
Insights
Alzheimer's disease (AD) continuum shows reduced breath-holding index, linked to amyloid-beta 42 levels. This vascular hypoperfusion is influenced by apolipoprotein E genotype, particularly E3 carriers.
Area of Science:
- Neuroscience
- Neurology
- Vascular Dementia
Background:
- Alzheimer's disease (AD) is a continuum defined by biomarkers.
- Chronic hypoperfusion is a key feature of AD, contributing to neuronal damage.
- The link between hypoperfusion and amyloid peptides is an area of active research.
Purpose of the Study:
- To investigate changes in hypoperfusion measures across the AD continuum.
- To explore the relationship between amyloid pathology and vascular dysfunction in AD.
- To assess the influence of apolipoprotein E genotype on these relationships.
Main Methods:
- Seventy patients with mild AD were stratified by CSF biomarkers (A+T-, A+T+).
- Transcranial Doppler measured cerebral blood flow velocity and pulsatility index.
- Breath-holding index was calculated and compared to 17 healthy controls.
Main Results:
- The breath-holding index was significantly reduced in patients along the AD continuum.
- Reduced breath-holding index correlated inversely with CSF amyloid-beta 42 levels.
- This correlation was stronger in the A+T+ group and significant only in APOE E3 carriers.
Conclusions:
- A strong link exists between amyloid-beta 42, vascular hypoperfusion, and cerebrovascular reactivity.
- The apolipoprotein E genotype modulates the relationship between AD pathology and vascular function.
- These findings highlight the interplay between amyloid, vascular health, and genetics in AD progression.
Background And Purpose:
Alzheimer's disease (AD) is considered a clinical and biological continuum identified via cerebrospinal fluid (CSF) or imaging biomarkers. Chronic hypoperfusion is held as one of the main features of Alzheimer's disease, as part of the processes causing neuronal degeneration. The mechanism responsible for such condition is still debated, although recently a direct connection with amyloid peptides has been shown. Here the aim was to investigate whether measures of hypoperfusion change along the AD continuum.
Methods:
Seventy patients with mild AD were recruited and stratified according to their CSF biomarker profile-as indicated by the National Institute on Aging and Alzheimer's Association research framework-into patients with either isolated amyloid pathology (A+T-) or full-blown AD (A+T+), and further layered according to apolipoprotein E genotype. After evaluation of vascular risk factors, a transcranial Doppler was performed on each patient, to evaluate mean flow velocity and pulsatility index in the middle cerebral artery, and to calculate the breath-holding index. Patients were compared to a cohort of 17 healthy controls.
Results:
The breath-holding index was reduced in the AD continuum and was inversely correlated to CSF amyloid β42 levels. Such correlation was stronger in the A+T+ than in the A+T- group, and unexpectedly reached statistical significance only in the E3 and not in the E4 genotype carriers.
Conclusions:
These results suggest a tight and effective relationship between amyloid β42, vascular hypoperfusion, cerebrovascular reactivity and epsilon genotype.
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