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Updated: May 4, 2026

Primary Culture of Adult Rat Heart Myocytes
Published on: June 16, 2009
Methamphetamine-induced toxicity in cultured adult rat cardiomyocytes
1Department of Forensic Medicine, Saga Medical School, Japan.
Abstract:
In an attempt to differentiate the direct effects of methamphetamine from the indirect sympathomimetic effects on the myocardium, primary culture of adult rat myocytes were established under serum-free conditions, and they were exposed to methamphetamine (1 x 10(-5) and 1 x 10(-3) M) for 1 to 24 h in the presence and absence of 1 x 10(-6) M propranolol. Cardiotoxicity was evaluated by light and ultramicroscopy, release of cytoplasmic enzymes (Lactate dehydrogenase: LDH and Creatine phosphokinase: CPK) and change in membrane permeability (Trypan blue stain). After 24 h methamphetamine treatment, light microscopy exhibited cellular granulation and swelling, myocyte hypercontraction, broken cellular membrane and cellular destruction. After the same time, electron microscopy revealed swelling and irregular mitochondria with disrupted cristaes, clump of sarcomeres with nearly complete loss of organized contractile elements, injury of intracellular membrane system and dissolution of myofibrils. These injurious features were more severe with the 1 x 10(-3) M methamphetamine. Propranolol (1 x 10(-6) M), a beta-adrenergic antagonist, failed to protect the myocytes against methamphetamine-induced cell injury. Release of LDH from methamphetamine (1 x 10(-5) and 1 x 10(-3) M)-treated myocytes increased significantly only after 24 h, while significant CPK release was observed in 1 x 10(-3) M methamphetamine-treated myocytes at 4 h. These findings suggest that methamphetamine exerts direct toxic effects on adult rat myocytes rather than indirect ones via receptors, although further experiments on more concentrations of propranolol are required.
Insights
Methamphetamine directly harms heart cells (myocytes), causing cellular damage and enzyme release. This direct cardiotoxicity occurs independently of indirect sympathomimetic effects, as shown in rat myocyte cultures.
Area of Science:
- Cardiology
- Pharmacology
- Cell Biology
Background:
- Methamphetamine's cardiovascular effects are complex, involving both direct and indirect sympathomimetic actions.
- Understanding the specific mechanisms of methamphetamine-induced cardiotoxicity is crucial for clinical management.
Purpose of the Study:
- To differentiate the direct cardiotoxic effects of methamphetamine from its indirect sympathomimetic effects on adult rat myocytes.
- To investigate the protective role of propranolol against methamphetamine-induced myocyte injury.
Main Methods:
- Primary cultures of adult rat myocytes were exposed to methamphetamine (1 x 10(-5) and 1 x 10(-3) M) for 1-24 hours.
- Evaluations included light and electron microscopy, cytoplasmic enzyme release (LDH, CPK), and membrane permeability assays.
- Cultures were treated with and without propranolol (1 x 10(-6) M) to assess its protective effects.
Main Results:
- Methamphetamine induced significant cellular damage, including swelling, hypercontraction, membrane disruption, and myofibril dissolution.
- Mitochondrial swelling and cristae disruption were observed via electron microscopy.
- Propranolol did not protect myocytes from methamphetamine-induced injury.
- Elevated LDH and CPK levels indicated myocyte damage, with CPK release occurring earlier at higher methamphetamine concentrations.
Conclusions:
- Methamphetamine exerts direct toxic effects on adult rat myocytes, independent of beta-adrenergic receptor-mediated pathways.
- Further research with varying propranolol concentrations is needed to fully elucidate the role of adrenergic receptors.

