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Evidence of cardiac electrical remodeling in patients with Huntington disease
Ksenija Cankar1, Ziva Melik1, Jan Kobal2
1Faculty of medicine, Institute of Physiology, University of Ljubljana, Ljubljana, Slovenia.
Insights
Huntington's disease (HD) patients show cardiac electrical remodeling and autonomic nervous system dysfunction. Advanced ECG changes correlate with disease progression, potentially indicating arrhythmia risk.
Area of Science:
- Cardiology
- Neurology
- Genetics
Background:
- Huntington's disease (HD), a neurodegenerative disorder, is associated with significant mortality from heart disease.
- Cardiac dysfunction in HD may stem from mutant huntingtin protein effects or secondary health decline.
- Understanding heart muscle involvement is crucial for managing HD patients.
Purpose of the Study:
- To investigate cardiac electrical remodeling in Huntington's disease.
- To assess the relationship between ECG changes and disease severity.
Main Methods:
- Conventional and advanced resting ECG indices were measured.
- Thirty-one HD patients and 31 controls were included.
- HD patients were stratified by Unified Huntington's Disease Rating Scale (UHDRS) motor scores.
Main Results:
- Significant changes in advanced ECG variables indicating electrical ventricular remodeling were detected (p < 0.01).
- Increased QT variability and standard deviation of normal-to-normal intervals correlated with age and CAG repeat length (p < 0.05).
- No correlation was found between these ECG changes and autonomic nervous system activity.
Conclusions:
- Autonomic dysfunction and cardiac electrical remodeling are present in HD patients.
- Observed ECG changes progress with HD, suggesting evolving ventricular repolarization abnormalities.
- Increased QT variability may serve as a marker for arrhythmias in HD.
Objective:
Although Huntington's disease (HD) is a disease of the central nervous system, HD mortality surveys indicate heart disease as a major cause of death. Cardiac dysfunction in HD might be a primary consequence of peripherally expressed mutant huntingtin or secondary to either a general decline in health or the onset of neurological dysfunction. The aim of the study was to clarify the heart muscle involvement.
Materials And Methods:
We measured conventional and advanced resting ECG indices. Thirty-one subjects with a confirmed huntingtin gene mutation and 31 age- and gender-matched controls were included. The HD subjects were divided into four groups based on their Unified Huntington Disease Rating Scale (UHDRS) motor score.
Results:
We detected changes in advanced ECG variables connected with electrical ventricular remodeling (t test, p < 0.01). The increase in the unexplained part of both QT variability and the standard deviation of normal-to-normal QT intervals, presumably reflecting beat-to-beat changes in repolarization, was most pronounced. Further, both variables correlated with the product of the cytosine-adenine-guanine (CAG) triplets' repeat length and the subjects' age (CAP), the former R = 0.423 (p = 0.018) and the latter R = 0.499 (p = 0.004). There was no correlation between the CAP score and any of variables representing autonomic nervous system activity.
Conclusions:
Both autonomic nervous system dysfunction and cardiac electrical remodeling are present in patients with HD. The changes in advanced ECG variables observed in the study evolve with HD progression. The increased values of QT unexplained variability may be a marker of temporal inhomogeneity in ventricular repolarization associated with malignant ventricular arrhythmias.
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