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Published on: January 18, 2018
Atorvastatin therapy is associated with greater and faster cerebral hemodynamic response
Guofan Xu1, Michele E Fitzgerald, Zhifei Wen
1William S. Middleton VA Hospital, Madison, WI.
Insights
Atorvastatin improved brain activity and reduced response times in healthy adults during a memory task. This suggests potential benefits for cerebral small vessel function and cognitive health, even without changes in resting blood flow.
Area of Science:
- Neuroscience
- Pharmacology
- Medical Imaging
Background:
- Midlife hypercholesterolemia elevates risks for cognitive decline, neurovascular issues, and Alzheimer's disease (AD).
- Statins are linked to reduced prevalence of these adverse outcomes.
- Limited data exists on statin effects on cerebral hemodynamics and cognition in healthy, asymptomatic individuals.
Purpose of the Study:
- To investigate the effects of atorvastatin on cerebral hemodynamic responses and cognitive function in asymptomatic middle-aged adults.
- To assess brain activity using functional magnetic resonance imaging (fMRI) during a memory recognition task.
Main Methods:
- A 4-month randomized, double-blind, placebo-controlled study.
- 15 healthy, asymptomatic middle-aged adults received either atorvastatin 40 mg daily or placebo.
- fMRI (BOLD, ASL) and DSC imaging were used to measure brain activity, cerebral blood flow (CBF), and perfusion.
Main Results:
- Atorvastatin group showed significantly greater BOLD signal amplitude in key brain regions (e.g., right angular gyrus) compared to placebo.
- Decreased hemodynamic response latencies were observed in the atorvastatin group in areas like the right middle frontal gyrus.
- No significant differences in resting CBF or mean transit time (MTT) were found between groups.
Conclusions:
- Atorvastatin may enhance cerebral small vessel vasoreactivity, potentially via improved endothelial function, as indicated by BOLD signal changes during a memory task.
- The observed effects on task-induced BOLD signals suggest atorvastatin's benefits may not solely stem from baseline flow alterations.
- These findings suggest a potential role for atorvastatin in maintaining cognitive health in asymptomatic individuals.
Abstract:
Hypercholesterolemia in midlife increases the risk of subsequent cognitive decline, neurovascular disease, and Alzheimer's disease (AD), and statin use is associated with reduced prevalence of these outcomes. While statins improve vasoreactivity in peripheral arteries and large cerebral arteries, little is known about the effects of statins on cerebral hemodynamic responses and cognition in healthy asymptomatic adults. At the final visit of a 4-month randomized, controlled, double-blind study comparing atorvastatin 40 mg daily to placebo, 16 asymptomatic middle-aged adults (15 had useable data) underwent blood oxygen level dependent (BOLD) functional magnetic resonance imaging (fMRI), arterial spin labeling (ASL) quantitative cerebral blood flow (qCBF), dynamic susceptibility contrast (DSC) and structural imagings of the brain. Using a memory recognition task requiring discrimination of previously viewed (PV) and novel (NV) human faces, fMRI was used to elicit activation from brain regions known to be vulnerable to changes associated with AD. The BOLD signal amplitude (PV > NV) and latency to each stimulus were tested on a voxel basis between the atorvastatin (n=8) and placebo (n=7) groups. Persons randomized to atorvastatin not only showed significantly greater BOLD amplitude in the right angular gyrus, left superior parietal lobule, right middle temporal and superior sulcus than the placebo group, but also decreased hemodynamic response latencies in the right middle frontal gyrus, left precentral gyrus, left cuneus and right posterior middle frontal gyrus. However, neither the resting cerebral blood flow (CBF) measured with ASL nor the mean transit time (MTT) of cerebral perfusion calculated from DSC showed differences in these regions in either group. The drug related BOLD differences during memory recognition suggest that atorvastatin may have improved cerebral small vessel vasoreactivity, possibly through an effect on endothelial function. Furthermore, these results suggest that the effect of atorvastatin on the task-induced BOLD signal may not be a simple consequence of baseline flow change.
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