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Associations between single and multiple cardiometabolic diseases and cognitive abilities in 474 129 UK Biobank
Donald M Lyall1, Carlos A Celis-Morales2, Jana Anderson1
1Public Health, Institute of Health and Wellbeing, 1 Lilybank Gardens, University of Glasgow, Glasgow G11 5HE, UK.
Insights
Multiple cardiometabolic diseases, such as hypertension, coronary artery disease (CAD), and diabetes, are linked to worse cognitive function. The negative impact on cognition appears to be additive as the number of conditions increases.
Area of Science:
- Neuroscience
- Cardiology
- Endocrinology
Background:
- Cardiometabolic diseases like hypertension, coronary artery disease (CAD), and diabetes are known risk factors for cognitive decline.
- Limited data exist on the combined effects of multiple cardiometabolic diseases on cognitive abilities.
Purpose of the Study:
- To quantify the association between single and multiple cardiometabolic diseases and cognitive abilities.
- To determine if the effects of these diseases on cognition are additive.
Main Methods:
- Analysis of cognitive test scores (reasoning, processing speed, memory) from the UK Biobank cohort (N=474,129).
- Adjustment for potential confounding variables.
- Examination of dose-response relationships for the number of cardiometabolic diseases present.
Main Results:
- Hypertension, CAD, and diabetes were associated with poorer cognitive scores across all tested domains compared to individuals with none of these conditions.
- Evidence of an additive deleterious effect was observed with an increasing number of cardiometabolic diseases.
- Specifically, each additional disease was associated with lower reasoning scores, slower processing speed, and more memory errors.
Conclusions:
- Cardiometabolic diseases are associated with diminished cognitive abilities.
- The cumulative effect of multiple cardiometabolic conditions on cognition appears to be additive.
- Preventing or delaying cardiometabolic diseases may be crucial for mitigating cognitive decline and potentially delaying dementia.
Aims:
Cardiometabolic diseases (hypertension, coronary artery disease [CAD] and diabetes are known to associate with poorer cognitive ability but there are limited data on whether having more than one of these conditions is associated with additive effects. We aimed to quantify the magnitude of their associations with non-demented cognitive abilities and determine the extent to which these associations were additive.
Methods And Results:
We examined cognitive test scores in domains of reasoning, information processing speed and memory, included as part of the baseline UK Biobank cohort assessment (N = 474 129 with relevant data), adjusting for a range of potentially confounding variables. The presence of hypertension, CAD and diabetes generally associated with poorer cognitive scores on all tests, compared with a control group that reported none of these diseases. There was evidence of an additive deleterious dose effect of an increasing number of cardiometabolic diseases, for reasoning scores (unstandardized additive dose beta per disease = -0.052 score points out of 13, 95% CI [confidence intervals] -0.063 to - 0.041, P < 0.001), log reaction time scores (exponentiated beta = 1.005, i.e. 0.5% slower, 95% CI 1.004-1.005, P < 0.001) and log memory errors (exponentiated beta = 1.005 i.e. 0.5% more errors; 95% CI 1.003-1.008).
Conclusion:
Cardiometabolic diseases are associated with worse cognitive abilities, and the potential effect of an increasing number of cardiometabolic conditions appears additive. These results reinforce the notion that preventing or delaying cardiovascular disease or diabetes may delay cognitive decline and possible dementia.
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