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High-Throughput Analysis of Optical Mapping Data Using ElectroMap
Published on: June 4, 2019
Common electrocardiogram measures are not associated with telomere length
Aenne S von Falkenhausen1,2, Rebecca Freudling1, Melanie Waldenberger2,3,4
1Department of Cardiology, University Hospital, LMU Munich, Munich, Germany.
Insights
Aging shortens telomeres, a marker of biological aging. This study found that while electrocardiogram (ECG) measures change with age, they are not associated with telomere length in a large community cohort.
Area of Science:
- Cardiology
- Genetics
- Gerontology
Background:
- Aging is linked to telomere shortening, a potential marker for biological aging.
- Cardiac aging is associated with pathologies like atrial fibrillation.
- Electrocardiogram (ECG) measures prolong with age and correlate with cardiac issues.
Purpose of the Study:
- To investigate the association between telomere length and ECG measures.
- To determine if premature ECG measure prolongation is linked to telomere shortening.
Main Methods:
- Utilized data from the KORA F4 Study (n=2,575).
- Measured leukocyte telomere length using real-time quantitative PCR.
- Employed multivariable adjusted linear regression to analyze ECG intervals (RR, PR, QRS, QTc) against telomere length.
Main Results:
- Older age and male sex were associated with shorter telomere length.
- Unadjusted analyses showed associations between heart rate, PR-interval, QTc-interval, and shorter telomere length.
- These associations disappeared after adjusting for age, sex, and other covariates.
Conclusions:
- Age-dependent ECG measures are not significantly associated with telomere length.
- Further research is needed to explore the link between telomere length and cardiac pathologies such as atrial fibrillation.
Aims:
Aging is accompanied by telomere shortening. Increased telomere shortening is considered a marker of premature aging. Cardiac aging results in the development of cardiac pathologies. Electrocardiogram (ECG) measures reflect cardiac excitation, conduction, and repolarization. ECG measures also prolong with aging and are associated with cardiac pathologies including atrial fibrillation. As premature prolongation of ECG measures is observed, we hypothesized that such prolongation may be associated with telomere length.
Methods And Results:
We studied the large, community-based KORA F4 Study. Of 3,080 participants enrolled between 2006 and 2007 with detailed information on demographic, anthropometric, clinical, and ECG characteristics, 2,575 presented with available data on leukocyte telomere length. Telomere length was determined by real-time quantitative PCR and expressed relative to a single copy gene. We fitted multivariable adjusted linear regression models to associate the ECG measures RR-interval, PR-interval, QRS-duration, and heart rate corrected QTc with telomere length. In our cohort, the mean age was 54.9±12.9 years and 46.6% were men. Increased age was associated with shorter telomere length (p<0.01), and men had shorter telomere length than women (p<0.05). In unadjusted models, heart rate (p=0.023), PR-interval (p<0.01), and QTc-interval (p<0.01) were significantly associated with shorter telomere length. However, no significant associations remained after accounting for age, sex, and covariates.
Conclusions:
ECG measures are age-dependent, but not associated with shortened telomere length as a marker of biological aging. Further research is warranted to clarify if shortened telomeres are associated with clinical cardiac pathologies including atrial fibrillation.
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