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Novel myofilament Ca2+-sensitizing property of xanthine oxidase inhibitors
1Department of Medicine, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.
Abstract:
Antioxidants are known to mitigate the cardiac contractile dysfunction that follows brief periods of ischemia ("myocardial stunning"). Stunning decreases contractility at the level of the contractile proteins; therefore, we asked whether antioxidant treatment preserves myofilament Ca2+ responsiveness after global ischemia and reflow. Right ventricular trabeculae were dissected from rat hearts subjected either to 20 minutes ischemia and reperfusion in the absence of drugs (stunned group) or to the same protocol in the presence of allopurinol, an inhibitor of xanthine oxidase (XO), and mercaptopropionylglycine (MPG), a hydroxyl radical scavenger (antioxidant group). At 20 minutes of reflow, isovolumic developed pressure recovered completely in the antioxidant group, but in the stunned group it recovered by only 57%. [Ca2+]i and contractile force measurements in trabeculae revealed the expected depression of myofilament function in the stunned group, with no change in Ca2+ transients relative to nonischemic controls. In contrast, Ca2+ transients were smaller, but force was greater, in the antioxidant group relative to both the stunned group and to nonischemic controls. Steady-state [Ca2+]i-force relationships revealed a striking increase of maximal force and a modest shift of activation to a lower range of [Ca2+]i. The increase in maximal force was reproduced by allopurinol+MPG or by allopurinol alone under nonischemic conditions and also by oxypurinol (100 micromol/L), a potent inhibitor of XO. We conclude that allopurinol and oxypurinol sensitize the cardiac myofilaments to Ca2+. This Ca2+-sensitizing effect underlies the preservation of contractility observed with an allopurinol+MPG antioxidant cocktail in a model of stunned myocardium. These serendipitous findings identify allopurinol and oxypurinol as the lead compounds of a novel class of inotropic agents.
Insights
Antioxidant treatment preserves heart muscle function after ischemia by improving calcium responsiveness. Allopurinol and oxypurinol act as novel inotropic agents, enhancing cardiac contractility.
Area of Science:
- Cardiology
- Biochemistry
- Pharmacology
Background:
- Myocardial stunning, a cardiac contractile dysfunction post-ischemia, impairs contractility at the protein level.
- Antioxidants are known to mitigate cardiac stunning, but their effect on myofilament calcium responsiveness is unclear.
Purpose of the Study:
- To investigate whether antioxidant treatment preserves myofilament calcium responsiveness after global ischemia and reflow.
- To explore the potential of allopurinol and oxypurinol as novel inotropic agents.
Main Methods:
- Rat right ventricular trabeculae were subjected to ischemia and reperfusion with or without antioxidants (allopurinol and mercaptopropionylglycine).
- Measurements included isovolumic developed pressure, intracellular calcium ([Ca2+]i), and contractile force.
- Steady-state calcium-force relationships were analyzed.
Main Results:
- Antioxidant treatment completely restored cardiac pressure recovery, unlike the stunned group (57% recovery).
- Antioxidants reduced calcium transients but increased contractile force, indicating enhanced myofilament calcium sensitivity.
- Allopurinol and oxypurinol significantly increased maximal force and shifted activation to lower calcium levels.
Conclusions:
- Allopurinol and oxypurinol sensitize cardiac myofilaments to calcium, preserving contractility in stunned myocardium.
- These findings identify allopurinol and oxypurinol as potential novel inotropic agents for treating cardiac dysfunction.