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In vitro Assessment of Myocardial Protection following Hypothermia-Preconditioning in a Human Cardiac Myocytes Model
Published on: October 27, 2020
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.
Abstract:
Acute cardiac ischemia induces conduction velocity (CV) slowing and conduction block, promoting reentrant arrhythmias leading to sudden cardiac arrest. Previously, we found that mild hypothermia (MH; 32°C) attenuates ischemia-induced conduction block and CV slowing in a canine model of early global ischemia. Acute ischemia impairs cellular excitability and the gap junction (GJ) protein connexin (Cx)43. We hypothesized that MH prevented ischemia-induced conduction block and CV slowing by preserving GJ expression and localization. Canine left ventricular preparations at control (36°C) or MH (32°C) were subjected to no-flow prolonged (30 min) ischemia. Optical action potentials were recorded from the transmural left ventricular wall, and CV was measured throughout ischemia. Cx43 and Na+ channel (NaCh) remodeling was assessed using both confocal immunofluorescence (IF) and/or Western blot analysis. Cellular excitability was determined by microelectrode recordings of action potential upstroke velocity (dV/dtmax) and resting membrane potential (RMP). NaCh current was measured in isolated canine myocytes at 36 and 32°C. As expected, MH prevented conduction block and mitigated ischemia-induced CV slowing during 30 min of ischemia. MH maintained Cx43 at the intercalated disk (ID) and attenuated ischemia-induced Cx43 degradation by both IF and Western blot analysis. MH also preserved dV/dtmax and NaCh function without affecting RMP. No difference in NaCh expression was seen at the ID by IF or Western blot analysis. In conclusion, MH preserves myocardial conduction during prolonged ischemia by maintaining Cx43 expression at the ID and maintaining NaCh function. Hypothermic preservation of GJ coupling and NaCh may be novel antiarrhythmic strategies during resuscitation.NEW & NOTEWORTHY Therapeutic hypothermia is now a class I recommendation for resuscitation from cardiac arrest. This study determined that hypothermia preserves gap junction coupling as well as Na+ channel function during acute cardiac ischemia, attenuating conduction slowing and preventing conduction block, suggesting that induced hypothermia may be a novel antiarrhythmic strategy in resuscitation.
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