Key result
Morphine restores contractile function, ischemic tolerance, and mitochondrial integrity in diabetic murine hearts.
Why the study?
While opioids are cardioprotective, type II diabetes mellitus causes opioid receptor signaling dysfunction, prompting investigation into whether sustained opioid receptor stimulus can overcome diabetes-induced cardiac dysfunction.
Does morphine improve cardiac function and ischemia-reperfusion tolerance in a murine model of type II diabetes?
Does morphine improve cardiac function and ischemia-reperfusion tolerance in a murine model of type II diabetes?
Short-term, high-dose morphine administration may have translational value for protecting the diabetic myocardium during acute ischemic events.
Does not support clinical morphine use in diabetes; leaves open whether opioid signaling can be harnessed for diabetic cardioprotection.
The obesity epidemic has increased type II diabetes mellitus (T2DM) across developed countries. Cardiac T2DM risks include ischemic heart disease, heart failure with preserved ejection fraction, intolerance to ischemia‐reperfusion (I‐R) injury, and refractoriness to cardioprotection. While opioids are cardioprotective, T2DM causes opioid receptor signaling dysfunction. We tested the hypothesis that sustained opioid receptor stimulus may overcome diabetes mellitus‐induced cardiac dysfunction via membrane/mitochondrial‐dependent protection. In a murine T2DM model, we investigated effects of morphine on cardiac function, I‐R tolerance, ultrastructure, subcellular cholesterol expression, mitochondrial protein abundance, and mitochondrial function. T2DM induced 25% weight gain, hyperglycemia, glucose intolerance, cardiac hypertrophy, moderate cardiac depression, exaggerated postischemic myocardial dysfunction, abnormalities in mitochondrial respiration, ultrastructure and Ca 2+ ‐induced swelling, and cell death were all evident. Morphine administration for 5 days: (1) improved glucose homeostasis; (2) reversed cardiac depression; (3) enhanced I‐R tolerance; (4) restored mitochondrial ultrastructure; (5) improved mitochondrial function; (6) upregulated Stat3 protein; and (7) preserved membrane cholesterol homeostasis. These data show that morphine treatment restores contractile function, ischemic tolerance, mitochondrial structure and function, and membrane dynamics in type II diabetic hearts. These findings suggest potential translational value for short‐term, but high‐dose morphine administration in diabetic patients undergoing or recovering from acute ischemic cardiovascular events.
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Zemljic‐Harpf et al. (2021) studied Type II diabetes mellitus (murine model) (n=60). Morphine vs. Placebo was evaluated on Cardiac function, ischemia-reperfusion tolerance, and mitochondrial function. Morphine administration for 5 days restored contractile function, ischemic tolerance, mitochondrial structure and function, and membrane dynamics in type II diabetic murine hearts.
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