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Updated: Dec 29, 2025
Skin Diseases and Disorders
Morphine mimics preconditioning via free radical signals and mitochondrial K(ATP) channels in myocytes
1Department of Anesthesia and Critical Care, the University of Chicago, Chicago, IL 60637, USA.
Background:
We tried to determine whether morphine mimics preconditioning (PC) to reduce cell death in cultured cardiomyocytes and whether opioid delta(1) receptors, free radicals, and K(ATP) channels mediate this effect.
Methods And Results:
Chick embryonic ventricular myocytes were studied in a flow-through chamber while flow rate, pH, and O(2) and CO(2) tension were controlled. Cardiomyocyte viability was quantified with propidium iodide (5 micromol/L), and production of free radicals was measured with 2',7'-dichlorofluorescin diacetate. PC with 10 minutes of simulated ischemia before 10 minutes of reoxygenation or morphine (1 micromol/L) or BW373U86 (10 pmol/L) infusion for 10 minutes followed by a 10-minute drug-free period before 1 hour of ischemia and 3 hours of reoxygenation reduced cell death to the same extent (*P:<0.05) (PC, 20+/-1%, n=7*; morphine, 32+/-4%, n=8*; BW373U86, 21+/-6%; controls, 52+/-5%, n=8). Like PC, morphine and BW373U86 increased free radical production 2-fold before ischemia (0.35+/-0.10, n=6*; 0.41+/-0.08, n=4* versus controls, 0.15+/-0.05, n=8, arbitrary units). Protection and increased free radical signals during morphine infusion were abolished with either the thiol reductant 2-mercaptopropionyl glycine (400 micromol/L), an antioxidant; naloxone (10 micromol/L), a nonselective morphine receptor antagonist; BNTX (0.1 micromol/L), a selective opioid delta(1) receptor antagonist; or 5-hydroxydecanoate (100 micromol/L), a selective mitochondrial K(ATP) channel antagonist.
Conclusions:
These results suggest that direct stimulation of cardiocyte opioid delta(1) receptors leads to activation of mitochondrial K(ATP) channels. The resultant increase of intracellular free radical signals may be an important component of the signaling pathways by which morphine mimics preconditioning in cardiomyocytes.
Insights
Morphine mimics preconditioning (PC) in cardiomyocytes by activating opioid delta(1) receptors and mitochondrial K(ATP) channels. This process increases free radical signals, reducing cell death during simulated ischemia and reoxygenation.
Area of Science:
- Cardiology
- Pharmacology
- Cell Biology
Background:
- Investigating cardioprotective mechanisms is crucial for treating ischemic heart disease.
- Preconditioning (PC) protects cardiomyocytes from cell death, but its signaling pathways are not fully understood.
Purpose of the Study:
- To determine if morphine mimics preconditioning (PC) in reducing cultured cardiomyocyte cell death.
- To investigate the roles of opioid delta(1) receptors, free radicals, and K(ATP) channels in mediating morphine's protective effects.
Main Methods:
- Chick embryonic ventricular myocytes were subjected to simulated ischemia and reoxygenation.
- Cell viability was assessed using propidium iodide staining.
- Free radical production was measured using 2',7'-dichlorofluorescin diacetate.
- The effects of morphine, BW373U86, and PC on cell death and free radical production were evaluated.
- Specific antagonists (naloxone, BNTX) and inhibitors (2-mercaptopropionyl glycine, 5-hydroxydecanoate) were used to probe the signaling pathways.
Main Results:
- Morphine and BW373U86 significantly reduced cell death, similar to preconditioning (PC).
- Both morphine and BW373U86 increased free radical production prior to ischemia.
- The protective effects of morphine and BW373U86 were abolished by opioid delta(1) receptor antagonists, a nonselective opioid antagonist, an antioxidant, and a mitochondrial K(ATP) channel antagonist.
Conclusions:
- Morphine mimics preconditioning (PC) in cardiomyocytes by activating opioid delta(1) receptors.
- Activation of mitochondrial K(ATP) channels is involved in morphine-induced cardioprotection.
- Increased intracellular free radical signals are a key component of the signaling pathway through which morphine confers protection.
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