Exploring the possible causal effects of cardiac blood biomarkers in dementia and cognitive performance: a Mendelian
Michelle H Zonneveld1,2, Stella Trompet3, J Wouter Jukema4,5
1Department of Internal Medicine, Section of Gerontology and Geriatrics, Leiden University Medical Center, Leiden, the Netherlands. m.h.zonneveld@lumc.nl.
Insights
This study investigated the causal link between cardiac biomarkers and dementia using Mendelian randomization. While most biomarkers showed no causal association, higher GDF15 levels were linked to increased dementia risk and poorer cognitive function.
Area of Science:
- Cardiovascular Medicine
- Neurology
- Genetics
Background:
- Observational studies suggest associations between cardiac biomarkers (troponin T/I, NT-proBNP, GDF15) and dementia/cognitive decline.
- Causal relationships remain unclear, necessitating robust investigation.
Purpose of the Study:
- To determine the causal associations of genetically predicted cardiac blood biomarkers with dementia and cognitive performance.
- To differentiate between correlation and causation in the biomarker-dementia relationship.
Main Methods:
- Two-sample Mendelian randomization (MR) utilizing genetic variants associated with cardiac biomarkers (troponin T/I, NT-proBNP, GDF15).
- Summary statistics from large-scale genome-wide association studies for cognitive performance and dementia in European ancestry populations.
- Inverse variance-weighted (IVW) analysis, complemented by sensitivity analyses (weighted median, MR-Egger, cis-SNPs only) to assess pleiotropy.
Main Results:
- No significant causal evidence was found for troponin T, troponin I, or NT-proBNP influencing dementia risk or cognitive function via IVW analysis.
- Sensitivity analyses revealed a significant association between higher genetically predicted GDF15 levels and increased dementia risk and worse cognitive function.
- Odds ratios for dementia per SD increase in biomarkers were: Troponin T (1.06), Troponin I (0.98), NT-proBNP (0.97), GDF15 (1.07) in IVW.
Conclusions:
- The study did not establish strong causal links between most cardiac biomarkers and dementia risk.
- Elevated GDF15 may have a causal role in dementia and cognitive decline, warranting further research into underlying biological pathways.
- Future research should focus on elucidating the mechanisms connecting cardiac biomarkers to neurodegenerative processes.
Abstract:
Prospective cohort studies have implied associations between blood levels of troponin T, troponin I, NT-proBNP, GDF15, dementia, and cognitive function, without providing evidence favoring possible causality. We aimed to assess the causal associations of these cardiac blood biomarkers with dementia and cognition using two-sample Mendelian randomization (MR). Independent genetic instruments (p < 5e-7) for troponin T and I, N-terminal pro B-type natriuretic peptide (NT-proBNP) and growth-differentiation factor 15 (GDF15) were obtained from previously-performed genome-wide association studies of predominantly European ancestry. Summary statistics for gene-outcome associations in European-ancestry participants, for the two-sample MR analyses, were obtained for general cognitive performance (n = 257,842) and dementia (n = 111,326 clinically diagnosed and "proxy" AD cases, and 677,663 controls). Two-sample MR analyses were performed using inverse variance-weighted (IWV) analyses. Sensitivity analyses to evaluate horizontal pleiotropy included weighted median estimator, MR-Egger, and MR using cis-SNPs only. Using IVW, we did not find evidence for possible causal associations between genetically influenced cardiac biomarkers with cognition and dementia. For example, per standard deviation (SD) higher cardiac blood biomarker, the odds ratio for risk of dementia was 1.06 (95%CI 0.90; 1.21) for troponin T, 0.98 (95%CI 0.72; 1.23) for troponin I, 0.97 (95%CI 0.90; 1.06) for NT-proBNP and 1.07 (95%CI 0.93; 1.21) for GDF15. Sensitivity analyses showed higher GDF15 was significantly associated with higher dementia risk and worse cognitive function. We did not find strong evidence that cardiac biomarkers causally influence dementia risk. Future research should aim at elucidating the biological pathways through which cardiac blood biomarkers associate with dementia.
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