Mild hypothermia preserves myocardial conduction during ischemia by maintaining gap junction intracellular

Michelle M J Nassal1, Xiaoping Wan1, Zack Dale2

  • 1The Heart and Vascular Research Center and Department of Physiology, MetroHealth Campus, Case Western Reserve University, Cleveland, Ohio; and.

Insights

Mild hypothermia (MH) preserves cardiac conduction during ischemia by maintaining connexin 43 (Cx43) and Na+ channel function. This prevents conduction block and slowing, offering a potential antiarrhythmic strategy during resuscitation.

Area of Science:

  • Cardiovascular Physiology
  • Cardiac Electrophysiology
  • Hypothermia Research

Background:

  • Acute cardiac ischemia causes conduction slowing and block, leading to arrhythmias and sudden cardiac arrest.
  • Mild hypothermia (MH) has shown promise in attenuating these effects, but the underlying mechanisms require further investigation.
  • Ischemia impairs cellular excitability and gap junction (GJ) protein connexin 43 (Cx43) function.

Purpose of the Study:

  • To investigate if MH preserves GJ expression and localization during ischemia.
  • To determine if MH maintains cellular excitability and Na+ channel (NaCh) function during ischemia.
  • To elucidate the molecular mechanisms by which MH protects against ischemia-induced conduction abnormalities.

Main Methods:

  • Canine left ventricular preparations were subjected to 30 minutes of no-flow ischemia under normothermic (36°C) or MH (32°C) conditions.
  • Optical mapping recorded action potentials and measured conduction velocity (CV).
  • Confocal immunofluorescence and Western blot analyzed Cx43 and NaCh expression; cellular excitability assessed via microelectrode recordings and NaCh currents measured in isolated myocytes.

Main Results:

  • MH prevented conduction block and significantly mitigated ischemia-induced CV slowing.
  • MH maintained Cx43 expression at the intercalated disk (ID) and reduced ischemia-induced Cx43 degradation.
  • MH preserved cellular excitability (d<0xC2><0xA0>V/<0xC2><0xA0>dtmax) and NaCh function without altering resting membrane potential.

Conclusions:

  • Mild hypothermia preserves myocardial conduction during prolonged ischemia by maintaining Cx43 expression at the ID and preserving NaCh function.
  • Hypothermic preservation of GJ coupling and NaCh function represents a novel antiarrhythmic strategy for cardiac resuscitation.
  • Therapeutic hypothermia may offer significant benefits in preventing arrhythmias post-cardiac arrest.