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Published on: June 1, 2022
Morphine-Induced Preconditioning: Involvement of Protein Kinase A and Mitochondrial Permeability Transition Pore
Marianne Dorsch1, Friederike Behmenburg1, Miriam Raible1
1Department of Anesthesiology, University Hospital Duesseldorf, Moorenstr. 5, 40225, Duesseldorf, Germany.
Background:
Morphine induces myocardial preconditioning (M-PC) via activation of mitochondrial large conductance Ca2+-sensitive potassium (mKCa) channels. An upstream regulator of mKCa channels is protein kinase A (PKA). Furthermore, mKCa channel activation regulates mitochondrial bioenergetics and thereby prevents opening of the mitochondrial permeability transition pore (mPTP). Here, we investigated in the rat heart in vivo whether 1) M-PC is mediated by activation of PKA, and 2) pharmacological opening of the mPTP abolishes the cardioprotective effect of M-PC and 3) M-PC is critically dependent on STAT3 activation, which is located upstream of mPTP within the signalling pathway.
Methods:
Male Wistar rats were randomised to six groups (each n = 6). All animals underwent 25 minutes of regional myocardial ischemia and 120 minutes of reperfusion. Control animals (Con) were not further treated. Morphine preconditioning was initiated by intravenous administration of 0.3 mg/kg morphine (M-PC). The PKA blocker H-89 (10 μg/kg) was investigated with and without morphine (H-89+M-PC, H-89). We determined the effect of mPTP opening with atractyloside (5 mg/kg) with and without morphine (Atr+M-PC, Atr). Furthermore, the effect of morphine on PKA activity was tested in isolated adult rat cardiomyocytes. In further experiments in isolated hearts we tested the protective properties of morphine in the presence of STAT3 inhibition, and whether pharmacological prevention of the mPTP-opening by cyclosporine A (CsA) is cardioprotective in the presence of STAT3 inhibition.
Results:
Morphine reduced infarct size from 64±5% to 39±9% (P<0.05 vs. Con). H-89 completely blocked preconditioning by morphine (64±9%; P<0.05 vs. M-PC), but H-89 itself had not effect on infarct size (61±10%; P>0.05 vs. Con). Also, atractyloside abolished infarct size reduction of morphine completely (65±9%; P<0.05 vs. M-PC) but had no influence on infarct size itself (64±5%; P>0.05 vs. Con). In isolated hearts STAT3 inhibitor Stattic completely abolished morphine-induced preconditioning. Administration of Stattic and mPTP inhibitor cyclosporine A reduced infarct size to 31±6% (Stat+CsA, P<0.05 vs. Con). Cyclosporine A alone reduced infarct size to 26±7% (CsA P<0.05 vs. Con). In cardiomyocytes, PKA activity was increased by morphine.
Conclusion:
Our data suggest that morphine-induced cardioprotection is mediated by STAT3-activation and inhibition of mPTP, with STA3 located upstream of mPTP. There is some evidence that protein kinase A is involved within the signalling pathway.
Insights
Morphine protects the heart by activating STAT3 and inhibiting the mitochondrial permeability transition pore (mPTP). This pathway is crucial for morphine-induced cardioprotection, highlighting a novel therapeutic target.
Area of Science:
- Cardiovascular Science
- Molecular Cardiology
- Pharmacology
Background:
- Morphine preconditioning (M-PC) activates mitochondrial KCa channels, regulated by PKA.
- M-PC prevents mitochondrial permeability transition pore (mPTP) opening, preserving cardiac function.
- STAT3 signaling is implicated upstream of mPTP in cardioprotective pathways.
Purpose of the Study:
- To investigate if M-PC involves PKA activation.
- To determine if mPTP opening abolishes M-PC's cardioprotective effects.
- To assess the critical dependence of M-PC on STAT3 activation.
Main Methods:
- Male Wistar rats underwent ischemia-reperfusion.
- Morphine was administered for M-PC.
- Protein kinase A (PKA) and mPTP opening were inhibited using H-89 and atractyloside, respectively.
- STAT3 inhibition was achieved using Stattic in isolated hearts.
- Cyclosporine A (CsA) was used to prevent mPTP opening.
Main Results:
- Morphine significantly reduced infarct size.
- H-89 and atractyloside abolished the cardioprotective effects of morphine.
- STAT3 inhibition completely blocked M-PC.
- Combined STAT3 inhibition and CsA, or CsA alone, reduced infarct size.
- Morphine increased PKA activity in cardiomyocytes.
Conclusions:
- Morphine-induced cardioprotection is mediated by STAT3 activation and mPTP inhibition.
- STAT3 acts upstream of mPTP in this signaling pathway.
- PKA plays a role in the M-PC signaling cascade.
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