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Impact of Intracardiac Neurons on Cardiac Electrophysiology and Arrhythmogenesis in an Ex Vivo Langendorff System
Published on: May 22, 2018
Activated cranial cervical cord neurons affect left ventricular infarct size and the potential for sudden cardiac
E Marie Southerland1, David D Gibbons, S Brooks Smith
1Department of Pharmacology, East Tennessee State University, Johnson City, TN, United States.
Insights
Cervical spinal cord stimulation protects the heart from ischemia by influencing both adrenergic and cholinergic pathways. This stimulation reduces infarct size and lethal arrhythmias, offering a novel therapeutic target.
Area of Science:
- Cardiovascular Physiology
- Neuroscience
- Cardiac Electrophysiology
Background:
- Cervical spinal neurons' role in cardiac protection is not fully understood.
- Investigating the influence of cervical spinal cord stimulation (SCS) on acute myocardial ischemia.
Purpose of the Study:
- To determine if cervical spinal neurons can modulate cardiac function and myocyte survival during acute ischemia.
- To elucidate the neural pathways involved in SCS-induced cardioprotection.
Main Methods:
- Anesthetized rabbits underwent LAD coronary artery occlusion (CAO) followed by reperfusion.
- High cervical cord stimulation (C1-C2 SCS) was applied pre-emptively and during CAO.
- Interventions included vagotomy, spinal cord transection, and pharmacological blockade (muscarinic, adrenergic).
- Infarct size (IS) and sudden cardiac death (SCD) incidence were assessed.
Main Results:
- C1-C2 SCS reduced ischemia-induced infarct size by 43% without affecting SCD incidence.
- SCS-induced IS reduction was preserved after vagotomy but abolished by C6 dorsal column transection or atropinization.
- Beta-blockade eliminated SCD, while alpha-blockade increased its incidence.
- During SCS, vagotomy eliminated SCD, but atropinization did not.
Conclusions:
- Cranial cervical spinal neurons influence both adrenergic and cholinergic cardiac outflows.
- Activation of cervical spinal neurons modifies infarct size and lethal arrhythmogenesis.
- SCS demonstrates potential for cardioprotection against acute ischemia.
Abstract:
To evaluate whether cervical spinal neurons can influence cardiac indices and myocyte viability in the acutely ischemic heart, the hearts of anesthetized rabbits subjected to 30 min of LAD coronary arterial occlusion (CAO) were studied 3h after reperfusion. Control animals were compared to those exposed to pre-emptive high cervical cord stimulation (SCS; the dorsal aspect of the C1-C2 spinal cord was stimulated electrically at 50 Hz; 0.2 ms; 90% of motor threshold, starting 15 min prior to and continuing throughout CAO). Four groups of animals were so tested: 1) neuroaxis intact; 2) prior cervical vagotomy; 3) prior transection of the dorsal spinal columns at C6; and 4) following pharmacological treatment [muscarinic (atropine) or adrenergic (atenolol, prazosin or yohimbine) receptor blockade]. Infarct size (IS) was measured by tetrazolium, expressed as percentage of risk zone. C1-C2 SCS reduced acute ischemia induced IS by 43%, without changing the incidence of sudden cardiac death (SCD). While SCS-induced reduction in IS was unaffected by vagotomy, it was no longer evident following transection of C6 dorsal columns or atropinization. Beta-adrenoceptor blockade eliminated ischemia induced SCD, while alpha-receptor blockade doubled its incidence. During SCS, myocardial ischemia induced SCD was eliminated following vagotomy while remaining unaffected by atropinization. These data indicate that, in contrast to thoracic spinal neurons, i) cranial cervical spinal neurons affect both adrenergic and cholinergic motor outflows to the heart such that ii) their activation modifies ventricular infarct size and lethal arrhythmogenesis.
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