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February 9, 2018AJP Heart and Circulatory Physiology30 citationsOpen Access

Atrial arrhythmias and autonomic dysfunction in rats exposed to chronic intermittent hypoxia

SBS BoberJCJohn CirielloDJDouglas L. Jones

Key Result

Exposure to chronic intermittent hypoxia for 7 days enhanced vulnerability to atrial arrhythmia induction in adult male rats, driven principally by parasympathetic activation.

Structured PICO

Does chronic intermittent hypoxia increase vulnerability to atrial fibrillation in adult male Sprague-Dawley rats?

P
Population
Adult male Sprague-Dawley rats exposed to chronic intermittent hypoxia or normoxia for 7 days to evaluate atrial electrophysiology and arrhythmia vulnerability.
I
Intervention
Chronic intermittent hypoxia (CIH) for 8 h/day for 7 days
C
Comparator
Normoxia for 7 days
O
Outcome
Atrial effective refractory periods (AERPs) and AF inducibilitysurrogate

Chronic intermittent hypoxia alone enhances vulnerability to atrial arrhythmia induction, principally dependent on parasympathetic activation.

Abstract

Obstructive sleep apnea, which involves chronic intermittent hypoxia (CIH), is a major risk factor for developing atrial fibrillation (AF). Whether or not CIH alone alters cardiac mechanisms to support AF is unknown. This study investigated the effects of CIH on atrial electrophysiology and arrhythmia vulnerability and evaluated the role of autonomics in CIH promotion of AF. Adult male Sprague-Dawley rats were exposed to 8 h/day of CIH or normoxia for 7 days. After exposure, rats were anesthetized for intracardiac electrophysiological experiments. Atrial effective refractory periods (AERPs) and AF inducibility were determined using programmed electrical stimulation and burst pacing in the absence and presence of autonomic receptor agonists and antagonists. Western blot analysis measured atrial protein expression of muscarinic M2, M3, and β 1 -adrenergic receptors. Compared with normoxia-exposed control rats, CIH-exposed rats had enhanced AF vulnerability using both programmed electrical stimulation and burst pacing, accompanied by greater AERP responses to carbachol and propranolol, lesser responses to isoproterenol, and higher atrial M2 receptor protein levels. Enhanced atrial vulnerability was accentuated by carbachol and abolished by atropine, indicating that the AF-promoting effects of CIH depended principally on parasympathetic activation. Enhancement of atrial vulnerability and AERP shortening with cholinergic agonists in CIH-exposed rats is consistent with sensitivity to parasympathetic activation. Higher responses to adrenergic receptor blockade in CIH-exposed rats is consistent with sympathetic potentiation. These findings implicate CIH as an important mediator of enhanced AF susceptibility in obstructive sleep apnea and provide novel insights into the underlying mechanisms. NEW & NOTEWORTHY Our study demonstrates, for the first time, that chronic intermittent hypoxia alone enhances vulnerability to atrial arrhythmia induction, which depends principally on parasympathetic activation. Enhanced atrial vulnerability was accompanied by heightened electrophysiological responses of the atrial myocardium to carbachol and isoproterenol, dampened responses to propranolol, and increased atrial M2 receptor protein levels.

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Cite This Study

Bober et al. (2018) studied Atrial fibrillation vulnerability. Chronic intermittent hypoxia vs. Normoxia was evaluated on Atrial fibrillation vulnerability and atrial effective refractory periods. Exposure to chronic intermittent hypoxia for 7 days enhanced vulnerability to atrial arrhythmia induction in adult male rats, driven principally by parasympathetic activation.

synapsesocial.com/papers/6a6f265126770c2b8ddfdc75https://doi.org/10.1152/ajpheart.00173.2017
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