Key result
High-aggressive rats exhibited significantly lower resting heart rate variability and a greater susceptibility to stress- and pharmacologically-induced ventricular tachyarrhythmias compared to non-aggressive rats.
Why the study?
Does high trait aggressiveness increase susceptibility to cardiac arrhythmias and alter cardiac autonomic modulation in a rat model?
Does high trait aggressiveness increase susceptibility to cardiac arrhythmias and alter cardiac autonomic modulation in a rat model?
Absolute Event Rate: 1.91% vs 2.45%
p-value: p=<0.01
High trait aggressiveness in rats is associated with reduced vagal tone and increased susceptibility to stress- and beta-agonist-induced ventricular arrhythmias, providing a potential mechanistic link between personality traits and cardiac vulnerability.
Rodent model associates aggressiveness with autonomic changes; leaves open human cardiac disease mechanisms.
Personality characteristics, e.g. aggressiveness, have long been associated with an increased risk of cardiac disease. However, the underlying mechanisms remain unclear. In this study we used a rodent model for characterizing cardiac autonomic modulation in rats that differ widely in their level of aggressive behavior. To reach this goal, high-aggressive (HA, n = 10) and non-aggressive (NA, n = 10) rats were selected from a population (n = 121) of adult male Wild-type Groningen rats on the basis of their latency time to attack (ALT, s) a male intruder in a resident-intruder test lasting 600 s. In order to obtain information on their cardiac autonomic modulation, ECG recordings were subsequently obtained via radiotelemetry at rest, during stressful stimuli and under autonomic pharmacological manipulations, and analyzed by means of time- and frequency-domain indexes of heart rate variability. During resting conditions, HA rats (ALT<90 s) displayed reduced heart rate variability, mostly in terms of lower vagal modulation compared to NA rats (ALT>600 s). Exposure to stressful stimuli (i.e. restraint and psychosocial stress) provoked similar tachycardic responses between the two groups. However, under stress conditions HA rats displayed a reduced vagal antagonism and an increased incidence of tachyarrhythmias compared to NA rats. In addition, beta-adrenergic pharmacological stimulation induced a much larger incidence of ventricular tachyarrhythmias in HA rats compared to NA counterparts. These findings are consistent with the view that high levels of aggressive behavior in rats are associated to signs of cardiac autonomic impairment and increased arrhythmogenic susceptibility that may predict vulnerability to cardiac morbidity and mortality.
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Carnevali et al. (2013) studied High trait aggressiveness (n=20). High trait aggressiveness vs. Non-aggressive trait was evaluated on Resting heart rate variability (RMSSD in ms during dark phase) (p=<0.01). High-aggressive rats exhibited significantly lower resting heart rate variability and a greater susceptibility to stress- and pharmacologically-induced ventricular tachyarrhythmias compared to non-aggressive rats.
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