Associations of Arterial Stiffness With Cognitive Performance, and the Role of Microvascular Dysfunction

Author:

Rensma Sytze P.12,Stehouwer Coen D.A.12,Van Boxtel Martin P.J.34,Houben Alfons J.H.M.12,Berendschot Tos T.J.M.5,Jansen Jaap F.A.367,Schalkwijk Casper G.12,Verhey Frans R.J.34,Kroon Abraham A.12,Henry Ronald M.A.12,Backes Walter H.36,Dagnelie Pieter C.128,van Dongen Martin C.J.M.89,Eussen Simone J.P.M.18,Bosma Hans910,Köhler Sebastian3,Reesink Koen D.111,Schram Miranda T.123,van Sloten Thomas T.12

Affiliation:

1. From the CARIM School for Cardiovascular Diseases (S.P.R., C.D.A.S., A.J.H.M.H., C.G.S., A.A.K., R.M.A.H., P.C.D., S.J.P.M.E., K.D.R., M.T.S., T.T.v.S.)

2. Department of Internal Medicine (S.P.R., C.D.A.S., A.J.H.M.H., C.G.S., A.A.K., R.M.A.H., P.C.D., M.T.S., T.T.v.S.)

3. MheNs School for Mental Health and Neuroscience (M.P.J.V.B., J.F.A.J., F.R.J.V., W.H.B., S.K., M.T.S.)

4. Department of Psychiatry and Neuropsychology (M.P.J.V.B., F.R.J.V.)

5. Department of Ophthalmology (T.T.J.M.B.)

6. Department of Radiology and Nuclear Medicine (J.F.A.J., W.H.B.)

7. Department of Electrical Engineering, Eindhoven University of Technology, the Netherlands (J.F.A.J.).

8. Department of Epidemiology (P.C.D., M.C.J.M.v.D., S.J.P.M.E.)

9. CAPHRI Care and Public Health Research Institute (M.C.J.M.v.D., H.B.)

10. Department of Social Medicine (H.B.)

11. Department of Biomedical Engineering, Maastricht University Medical Centre, Maastricht, the Netherlands (K.D.R.)

Abstract

The mechanisms underlying cognitive impairment are incompletely understood but may include arterial stiffness and microvascular dysfunction. In the population-based Maastricht Study, we investigated the association between arterial stiffness and cognitive performance, and whether any such association was mediated by microvascular dysfunction. We included cross-sectional data of 2544 participants (age, 59.7 years; 51.0% men; 26.0% type 2 diabetes mellitus). We used carotid-femoral pulse wave velocity and carotid distensibility coefficient as measures of aortic and carotid stiffness, respectively. We calculated a composite score of microvascular dysfunction based on magnetic resonance imaging features of cerebral small vessel disease, flicker light-induced retinal arteriolar and venular dilation response, albuminuria, and plasma biomarkers of microvascular dysfunction (sICAM-1 [soluble intercellular adhesion molecule-1], sVCAM-1 [soluble vascular adhesion molecule-1], sE-selectin [soluble E-selectin], and vWF [von Willebrand factor]). Cognitive domains assessed were memory, processing speed, and executive function. A cognitive function score was calculated as the average of these domains. Higher aortic stiffness (per m/s) was associated with lower cognitive function (β, −0.018 SD [95% CI, −0.036 to −0.000]) independent of age, sex, education, and cardiovascular risk factors, but higher carotid stiffness was not. Higher aortic stiffness (per m/s) was associated with a higher microvascular dysfunction score (β, 0.034 SD [95% CI, 0.014 to 0.053]), and a higher microvascular dysfunction score (per SD) was associated with lower cognitive function (β, −0.089 SD [95% CI, −0.124 to −0.053]). Microvascular dysfunction significantly explained 16.2% of the total effect of aortic stiffness on cognitive function. The present study showed that aortic stiffness, but not carotid stiffness, is independently associated with worse cognitive performance, and that this association is in part explained by microvascular dysfunction.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Internal Medicine

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