Function of human intrinsic cardiac neurons in situ

Author:

Arora Rakesh Christopher1,Hirsch Gregory Matthew1,Hirsch Kristine Johnson2,Friesen Camille Hancock1,Armour John Andrew3

Affiliation:

1. Departments of Surgery,

2. Anesthesiology, and

3. Physiology and Biophysics, Dalhousie University, Halifax, Nova Scotia, B3H 4H7, Canada

Abstract

We sought to determine the behavior of intrinsic cardiac neurons in human subjects undergoing cardiac surgery and to correlate their activity with hemodynamics status. A lead II electrocardiogram, pulmonary artery pressure, and systemic arterial pressure were recorded along with extracellular activity generated by right atrial neurons in 10 patients undergoing coronary artery bypass surgery. Identified neurons generated spontaneously activity that was, for the most part, unrelated to the cardiac cycle. Most neurons were activated by gentle mechanical distortion of ventricular epicardial loci. The activity generated by neurons in each patient increased when arterial pressure increased and decreased when arterial pressure fell. Intrinsic cardiac neurons continued to generate activity during cardioplegia and cardiopulmonary bypass, but at reduced levels. Normal neuronal activity was restored postbypass. It is concluded that human intrinsic cardiac neurons generate spontaneous activity and that many receive inputs from ventricular mechanosensory neurites. The latter may account for the fact that their behavior depends, in part, on cardiac dynamics. They are also sensitive to intravenously administered pharmacological agents. These data also indicate that cardiopulmonary bypass and cardioplegia do not induce residual depression of their function.

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology

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