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Updated: Mar 14, 2026

A Simple and Efficient Method for In Vivo Cardiac-specific Gene Manipulation by Intramyocardial Injection in Mice
Published on: April 16, 2018
Melatonin attenuates postmyocardial infarction injury via increasing Tom70 expression
Hai-Feng Pei1, Juan-Ni Hou1, Fei-Peng Wei2
1Department of Cardiology, Chengdu Military General Hospital, Chengdu, China.
Abstract:
Mitochondrial dysfunction leads to reactive oxygen species (ROS) overload, exacerbating injury in myocardial infarction (MI). As a receptor for translocases in the outer mitochondrial membrane (Tom) complex, Tom70 has an unknown function in MI, including melatonin-induced protection against MI injury. We delivered specific small interfering RNAs against Tom70 or lentivirus vectors carrying Tom70a sequences into the left ventricles of mice or to cultured neonatal murine ventricular myocytes (NMVMs). At 48 h post-transfection, the left anterior descending coronary arteries of mice were permanently ligated, while the NMVMs underwent continuous hypoxia. At 24 h after ischemia/hypoxia, oxidative stress was assessed by dihydroethidium and lucigenin-enhanced luminescence, mitochondrial damage by transmission electron microscopy and ATP content, and cell apoptosis by terminal deoxynucleotidyl transferase dUTP nick-end labeling and caspase-3 assay. At 4 weeks after ischemia, cardiac function and fibrosis were evaluated in mice by echocardiography and Masson's trichrome staining, respectively. Ischemic/hypoxic insult reduced Tom70 expression in cardiomyocytes. Tom70 downregulation aggravated post-MI injury, with increased mitochondrial fragmentation and ROS overload. In contrast, Tom70 upregulation alleviated post-MI injury, with improved mitochondrial integrity and decreased ROS production. PGC-1α/Tom70 expression in ischemic myocardium was increased with melatonin alone, but not when combined with luzindole. Melatonin attenuated post-MI injury in control but not in Tom70-deficient mice. N-acetylcysteine (NAC) reversed the adverse effects of Tom70 deficiency in mitochondria and cardiomyocytes, but at a much higher concentration than melatonin. Our findings showed that Tom70 is essential for melatonin-induced protection against post-MI injury, by breaking the cycle of mitochondrial impairment and ROS generation.
Insights
Tom70 is crucial for melatonin
Area of Science:
- Mitochondrial Biology
- Cardiovascular Research
- Oxidative Stress
Background:
- Mitochondrial dysfunction and reactive oxygen species (ROS) overload worsen myocardial infarction (MI) injury.
- The role of Tom70 in MI and melatonin's protective effects remains unclear.
Purpose of the Study:
- To investigate the function of Tom70 in myocardial infarction (MI) and its role in melatonin-induced cardioprotection.
- To elucidate the mechanisms underlying Tom70's involvement in mitigating MI-related mitochondrial damage and oxidative stress.
Main Methods:
- Mice and neonatal murine ventricular myocytes (NMVMs) were subjected to MI or hypoxia.
- Tom70 expression was manipulated using small interfering RNAs and lentivirus vectors.
- Mitochondrial function, ROS production, apoptosis, cardiac function, and fibrosis were assessed.
Main Results:
- Tom70 downregulation exacerbated MI injury, increasing mitochondrial fragmentation and ROS.
- Tom70 upregulation alleviated MI injury, improving mitochondrial integrity and reducing ROS.
- Melatonin's cardioprotective effects were dependent on Tom70 expression and PGC-1α.
- N-acetylcysteine partially reversed Tom70 deficiency effects.
Conclusions:
- Tom70 is essential for melatonin-mediated protection against post-MI injury.
- Tom70 mitigates MI by preventing mitochondrial impairment and ROS generation.
- Targeting Tom70 may offer a therapeutic strategy for myocardial infarction.

