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Cardiometabolic multimorbidity, genetic risk, and dementia: a prospective cohort study
Xin You Tai1,2, Michele Veldsman3,4, Donald M Lyall5
1Nuffield Department of Clinical Neurosciences, University of Oxford, Oxford, UK.
Insights
Cardiometabolic multimorbidity significantly increases dementia risk, independent of genetic predisposition. Managing conditions like stroke, diabetes, and heart attack may reduce dementia risk, even in genetically susceptible individuals.
Area of Science:
- Neurology
- Genetics
- Cardiology
Background:
- Individual cardiometabolic disorders and genetic factors are linked to higher dementia risk.
- The specific relationship between cardiometabolic multimorbidity and dementia risk remains unclear.
- This study investigates cardiometabolic multimorbidity's impact on dementia risk, independent of genetic factors, and associated brain changes.
Purpose of the Study:
- To determine if cardiometabolic multimorbidity increases dementia risk, irrespective of genetic risk.
- To examine the association between cardiometabolic multimorbidity and structural brain changes.
- To evaluate the independent and combined effects of genetic risk and cardiometabolic multimorbidity on dementia.
Main Methods:
- Utilized UK Biobank data from over 203,000 participants aged 60+ without dementia.
- Calculated a cardiometabolic multimorbidity index (stroke, diabetes, myocardial infarction) and a polygenic dementia risk score.
- Analyzed incident all-cause dementia and brain structural metrics in a subsample of 12,236 participants.
Main Results:
- High cardiometabolic multimorbidity elevated dementia risk significantly (HR 5.55), exceeding the risk from high genetic risk (HR 1.68).
- Individuals with high genetic risk and significant cardiometabolic multimorbidity (index ≥2) faced the highest dementia risk (HR 5.74).
- Cardiometabolic multimorbidity was independently linked to widespread brain structure changes, including reduced hippocampal and grey matter volume.
Conclusions:
- Cardiometabolic multimorbidity is a significant independent risk factor for dementia.
- The impact of cardiometabolic multimorbidity on dementia risk and brain structure is substantial, regardless of genetic predisposition.
- Interventions targeting cardiometabolic health may be crucial for dementia risk reduction across diverse genetic backgrounds.
Background:
Individual cardiometabolic disorders and genetic factors are associated with an increased dementia risk; however, the relationship between dementia and cardiometabolic multimorbidity is unclear. We investigated whether cardiometabolic multimorbidity increases the risk of dementia, regardless of genetic risk, and examined for associated brain structural changes.
Methods:
We examined health and genetic data from 203 038 UK Biobank participants of European ancestry, aged 60 years or older without dementia at baseline assessment (2006-10) and followed up until March 31, 2021, in England and Scotland and Feb 28, 2018, in Wales, as well as brain structural data in a nested imaging subsample of 12 236 participants. A cardiometabolic multimorbidity index comprising stroke, diabetes, and myocardial infarction (one point for each), and a polygenic risk score for dementia (with low, intermediate, and high risk groups) were calculated for each participant. The main outcome measures were incident all-cause dementia and brain structural metrics.
Findings:
The dementia risk associated with high cardiometabolic multimorbidity was three times greater than that associated with high genetic risk (hazard ratio [HR] 5·55, 95% CI 3·39-9·08, p<0·0001, and 1·68, 1·53-1·84, p<0·0001, respectively). Participants with both a high genetic risk and a cardiometabolic multimorbidity index of two or greater had an increased risk of developing dementia (HR 5·74, 95% CI 4·26-7·74, p<0·0001), compared with those with a low genetic risk and no cardiometabolic conditions. Crucially, we found no interaction between cardiometabolic multimorbidity and polygenic risk (p=0·18). Cardiometabolic multimorbidity was independently associated with more extensive, widespread brain structural changes including lower hippocampal volume (F2, 12 110 = 10·70; p<0·0001) and total grey matter volume (F2, 12 236 = 55·65; p<0·0001).
Interpretation:
Cardiometabolic multimorbidity was independently associated with the risk of dementia and extensive brain imaging differences to a greater extent than was genetic risk. Targeting cardiometabolic multimorbidity might help to reduce the risk of dementia, regardless of genetic risk.
Funding:
Wellcome Trust, Alzheimer's Research UK, Alan Turing Institute/Engineering and Physical Sciences Research Council, the National Institute for Health Research Applied Research Collaboration South West Peninsula, National Health and Medical Research Council, JP Moulton Foundation, and National Institute on Aging/National Institutes of Health.
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