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Circulating cell-free DNA and its association with cardiovascular disease: what we know and future perspectives
Steffen Ullitz Thorsen1, Kristine Frøsig Moseholm2, Frederik Banch Clausen1
1Department of Clinical Immunology, Copenhagen University Hospital, Rigshospitalet.
Insights
Cell-free DNA (cfDNA) shows potential as a diagnostic biomarker for cardiovascular disease (CVD). Further research may establish cfDNA as a valuable circulating cardiovascular risk marker for improved risk stratification.
Area of Science:
- Biomarkers
- Cardiovascular Disease
- Molecular Diagnostics
Background:
- Cell-free DNA (cfDNA) is a biomarker with established roles in oncology, prenatal testing, and transplantation.
- cfDNA's potential role in biological processes, including inflammation, is increasingly recognized.
- Elevated cfDNA levels are linked to cardiovascular disease (CVD) risk factors and autoimmune conditions.
Conclusions:
- cfDNA is a valuable biomarker with underexplored potential in CVD diagnostics.
- Future studies may identify cfDNA as a key circulating cardiovascular risk marker.
- Large-scale prospective studies, such as in pregnant women, are suggested to validate cfDNA's predictive value for CVD.
Purpose Of Review:
The aim of this review is to explore a possible link between cell-free DNA (cfDNA) and cardiovascular disease (CVD), which may hold valuable potential for future diagnostics.
Recent Findings:
cfDNA has become topic of high interest across several medical fields. cfDNA is used as a diagnostic biomarker in cancer, prenatal care, and transplantation. In addition, cfDNA may play an unrecognized role in biological processes that are involved in or underlying various disease states, for example, inflammation. Elevated levels of cfDNA are associated with various elements of CVD, cardio-metabolic risk factors, and autoimmune diseases. Mitochondrial cfDNA and neutrophil extracellular traps may play distinct roles. Total circulating cfDNA may reflect the unspecific accumulation of stressors and the organism's susceptibility and resilience to such stressors. As such, cfDNA, in a stressful situation, may provide predictive value for future development of CVD. We suggest exploring such possibility through a large-scale prospective cohort study of pregnant women.
Summary:
There is no doubt that cfDNA is a valuable biomarker. For CVD, its potential is indicated but less explored. New studies may identify cfDNA as a valuable circulating cardiovascular risk marker to help improve risk stratification.
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