Key result
Clozapine administration in young male rats induced dose-dependent cardiotoxicity characterized by increased myocardial oxidative stress, inflammatory cytokines, DNA damage, and apoptosis.
Why the study?
Does clozapine induce cardiotoxicity through oxidative stress, inflammation, and apoptosis in a rat model?
Does clozapine induce cardiotoxicity through oxidative stress, inflammation, and apoptosis in a rat model?
Clozapine induces dose-dependent cardiotoxicity in rats mediated by oxidative stress, inflammation, and apoptosis, providing a mechanistic explanation for clinical clozapine-induced myocarditis.
Does not warrant changes in clozapine prescribing; leaves open mechanistic translation to human myocarditis.
Clozapine, an ideal antipsychotic drug for the treatment of resistant schizophrenia, is considered the most underutilised treatment for schizophrenia. However, safety concerns have been raised about clozapine-induced cardiotoxicity, which may lead to sudden death, particularly in young patients. The exact mechanism of clozapine cardiotoxicity has not yet been thoroughly studied. This study aimed to investigate the possible mechanisms of clozapine-induced cardiotoxicity in a rat model. Young male Wistar rats were treated with clozapine (10, 15 and 25 mg/kg/day, i.p.) for 21 days. Haemodynamic and echocardiographic studies were performed for assessment of cardiac functions. Heart sections were studied histopathologically and immunohistochemically. Serum and cardiac markers of cardiotoxicity, oxidative stress, inflammation and apoptosis were evaluated. Heart sections of CLZ-treated animals showed increased cardiac inflammation that correlated with the clozapine dose. Serum levels of CK-MB and LDH levels increased, as did cardiac levels of TNF-α, MDA, NO, myeloperoxidase (MPO), 8-OHdG, caspase-3 and NF-κB p65. In contrast, GSH levels and GSH-Px activity decreased. Furthermore, immunohistochemical examination of the heart sections showed positive immunostaining for both 3-nitrotyrosine and caspase-3 in all clozapine-treated groups. Clozapine, particularly in relatively high doses, has a clear cardiotoxic effect. This cardiotoxicity is accompanied by increased myocardial oxidative stress, inflammatory cytokines, DNA damage and apoptosis with attenuation in antioxidant defences, thus explaining the previously reported myocarditis and pericarditis during clozapine therapy in clinical studies.
No takes yet. Share an insight, caveat, or question.
Abdel‐Wahab et al. (2014) studied Clozapine-induced cardiotoxicity. Clozapine was evaluated on Cardiac inflammation, oxidative stress, and apoptosis markers. Clozapine administration in young male rats induced dose-dependent cardiotoxicity characterized by increased myocardial oxidative stress, inflammatory cytokines, DNA damage, and apoptosis.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: