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Impact of Intracardiac Neurons on Cardiac Electrophysiology and Arrhythmogenesis in an Ex Vivo Langendorff System
Published on: May 22, 2018
The mode of action of several opioids on cardiac muscle
Abstract:
The objective of the experiments was to investigate the cellular basis of the inotropic effect on myocardium of several opioids which have been implicated in producing cardiotoxic effects in human poisoning. Opioids exerted negative inotropic effects, with half-maximal concentrations between 10 microM (dextropropoxyphene) and 118 microM (pethidine); all agents reduced the magnitude of the intracellular Ca2+ transient and the L-type Ca2+ current, ICa, over a similar concentration range to that which reduced twitch tension. The depression of ICa correlated positively with the value of the opioid oil-water partition coefficient. Effects were not antagonized by the opioid receptor antagonist naloxone. Action potential upstroke rate was also reduced but at significantly higher concentrations. Resting potential and action potential duration were not consistently affected; none of the opioids tested altered intracellular pH. These data suggest that opioids exert a negative inotropic effect by their action on ICa; blockade of the Na+ current is not great enough to exert a significant action. The lack of effect of naloxone implies the actions are independent of the opioid receptor. The correlation of effects with the oil water partition coefficient implies a non-specific effect dependent on the hydrophobicity of the agent.
Insights
Opioids negatively impact heart muscle contractility by reducing intracellular calcium (Ca2+) and L-type calcium current (ICa). These cardiotoxic effects are linked to opioid hydrophobicity, not opioid receptors.
Area of Science:
- Cardiology
- Pharmacology
- Molecular Biology
Background:
- Opioids are implicated in cardiotoxicity in human poisoning.
- Understanding the cellular mechanisms of opioid cardiotoxicity is crucial for patient safety.
Purpose of the Study:
- To investigate the cellular basis of the negative inotropic effect of opioids on myocardium.
- To determine the role of calcium handling and ion currents in opioid-induced cardiotoxicity.
Main Methods:
- Myocardial contractility measurements.
- Intracellular calcium transient and L-type calcium current (ICa) recordings.
- Action potential analysis.
Main Results:
- Opioids induced negative inotropic effects, reducing twitch tension and intracellular Ca2+ transient.
- ICa was depressed by opioids in a concentration-dependent manner, correlating with hydrophobicity.
- Effects were not antagonized by naloxone, suggesting non-opioid receptor mechanisms.
Conclusions:
- Opioids exert negative inotropic effects primarily through direct action on ICa, independent of opioid receptors.
- The cardiotoxicity of opioids is likely related to their lipophilicity and non-specific membrane interactions.
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