The nitroxide 4-methoxy TEMPO inhibits neutrophil-stimulated kinase activation in H9c2 cardiomyocytes
1Discipline of Pathology, Charles Perkins Centre, Sydney Medical School, The University of Sydney, NSW 2006, Australia.
Insights
Neutrophil-derived hypochlorous acid (HOCl) damages heart cells after myocardial infarction. The nitroxide MetT protected cardiomyocytes by reducing HOCl-induced damage and improving cell function.
Area of Science:
- Biochemistry
- Cardiology
- Immunology
Background:
- Neutrophils infiltrate the myocardium post-acute myocardial infarction (AMI).
- Neutrophil myeloperoxidase (MPO) produces hypochlorous acid (HOCl), which can damage cardiomyocytes and expand infarct size.
Purpose of the Study:
- To investigate the protective effects of the nitroxide 4-methoxy-Tempo (MetT) against neutrophil-derived HOCl-induced damage in cardiomyocytes.
Main Methods:
- Cultured rat cardiomyocyte-like cells were exposed to activated human neutrophils or reagent HOCl.
- Cells were treated with or without MetT (25 μM) for 4, 6, or 24 hours.
- Assessed protein tyrosine chlorination, protein tyrosine phosphatase (PTP) activity, MAPK phosphorylation (p38, ERK1/2), caspase-3/7 activity, and transferrin uptake.
Main Results:
- Activated neutrophils and HOCl increased protein tyrosine chlorination, decreased PTP activity, and elevated MAPK phosphorylation.
- Cell viability decreased, indicated by increased caspase-3/7 activity.
- MetT treatment ameliorated protein tyrosine chlorination, reduced MAPK activity, restored PTP activity, and improved transferrin uptake.
Conclusions:
- Neutrophil-derived HOCl contributes to cardiomyocyte injury following AMI.
- MetT demonstrated protective effects by mitigating HOCl-induced cellular damage.
- Nitroxides like MetT may offer therapeutic benefits in inflammatory conditions involving neutrophil activation.
Abstract:
After acute myocardial infarction (AMI), neutrophils are recruited to the affected myocardium. Hypochlorous acid (HOCl) produced by neutrophil myeloperoxidase (MPO) damages cardiomyocytes and potentially expands the primary infarct. Rat cardiomyocyte-like cells were incubated with isolated human neutrophils treated with chemical activators in the absence or presence of nitroxide 4-methoxy-Tempo (MetT; 25 μM) for 4, 6 or 24 h; studies with reagent HOCl served as positive control. Treating cardiomyocytes with activated neutrophils or reagent HOCl resulted in a marked increase in protein tyrosine chlorination and a decline in protein tyrosine phosphatase (PTP) activity. On balance our data also supported an increase in phosphorylation of MAPK p38 and ERK1/2 suggestive of an intracellular hyperphosphorylation status and this was accompanied by decreases in cell viability, as judged by assessing caspases-3/7 activity. For cells exposed to activated neutrophils receptor-mediated uptake of transferrin decreased although total matrix metalloproteinase (MMP) activity was unaffected. Addition of MetT ameliorated protein tyrosine chlorination, decreased MAPK activity and restored receptor-mediated transferrin uptake and PTP activity in cardiomyocytes. Overall, adverse effects of neutrophil-derived HOCl on cultured cardiomyocytes were ameliorated by MetT suggesting that nitroxides may be beneficial to inflammatory pathologies, where neutrophil recruitment/activation is a prominent and early feature.
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