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A Simple and Efficient Method for In Vivo Cardiac-specific Gene Manipulation by Intramyocardial Injection in Mice
Published on: April 16, 2018
Melatonin prevents adverse myocardial infarction remodeling via Notch1/Mfn2 pathway
Haifeng Pei1, Jin Du2, Xiaofeng Song2
1Department of Cardiology, Chengdu Military General Hospital, Chengdu 610083, China; Third Military Medical University, Chongqing 400042, China.
Abstract:
Mitochondrial dysfunction is linked with myocardial infarction (MI), a disorder in which Notch1 has attracted increasing attention. However, the involvement of Notch1 in mitochondrial impairment after an MI is poorly understood, as is the role of mitochondrial fusion-associated protein 2 (Mfn2). Moreover, whether melatonin potentiates the Notch1/Mfn2 pathway in post-MI cardiac damage remains unclear. In our study, small interfering RNAs against Notch1 or Mfn2 and Jagged1 peptide were delivered via intramyocardial injection. At 3 days after these treatments, MI was induced by ligation of the anterior descending branch. We found that this ablation of Notch1 or Mfn2 aggravated post-MI injury, including worsened mitochondrial damage and increased generation of reactive oxygen species (ROS). In contrast, Jagged1 improved mitochondrial structure and function, decreased ROS production and attenuated post-MI injury. Interestingly, though Mfn2 expression was mildly regulated by Notch1 signaling in myocardium, Mfn2 deficiency nearly eliminated the cardioprotection by Jagged1, as evidenced by suppressed cardiac function, aggravated myocardial fibrosis, increased cell apoptosis, worsened mitochondrial impairment and enhanced oxidative stress. These observations revealed that Mfn2 plays an indispensable role in protection against MI-induced injury by Notch1. The mechanism might involve disrupting a damaging cycle of mitochondrial damage and ROS generation. Furthermore, melatonin activated Notch1 signaling and increased Mfn2 expression were reversed by luzindole, a nonselective antagonist of the melatonin receptor. Notably, melatonin attenuated post-MI injury in normal mice, but not in mice deficient in Notch1 or Mfn2. These results demonstrate that melatonin attenuates post-MI injury via the Notch1/Mfn2 pathway in a receptor-dependent manner.
Insights
Melatonin protects against heart attack (myocardial infarction) by activating the Notch1/Mfn2 pathway. This pathway is crucial for mitochondrial health and reducing oxidative stress after injury.
Area of Science:
- Cardiovascular Biology
- Mitochondrial Medicine
- Pharmacology
Background:
- Mitochondrial dysfunction is a key factor in myocardial infarction (MI) pathology.
- The roles of Notch1 and Mfn2 in post-MI mitochondrial impairment are not fully understood.
- The potential of melatonin to modulate the Notch1/Mfn2 pathway in cardiac damage requires investigation.
Purpose of the Study:
- To investigate the involvement of Notch1 and Mfn2 in mitochondrial dysfunction following MI.
- To determine if melatonin enhances the Notch1/Mfn2 pathway to protect against post-MI cardiac damage.
- To elucidate the mechanism of melatonin's cardioprotective effects.
Main Methods:
- Utilized intramyocardial injection of small interfering RNAs (siRNA) against Notch1 or Mfn2, and Jagged1 peptide.
- Induced myocardial infarction (MI) via ligation of the anterior descending branch.
- Administered melatonin and luzindole (melatonin receptor antagonist) to assess pathway activation and therapeutic effects.
Main Results:
- Ablation of Notch1 or Mfn2 exacerbated post-MI injury, mitochondrial damage, and reactive oxygen species (ROS) generation.
- Jagged1 peptide improved mitochondrial function, reduced ROS, and attenuated post-MI injury.
- Mfn2 deficiency abrogated Jagged1's cardioprotection, highlighting Mfn2's indispensable role.
- Melatonin attenuated post-MI injury via the Notch1/Mfn2 pathway in a receptor-dependent manner, as shown by luzindole reversal and lack of effect in Notch1/Mfn2 deficient mice.
Conclusions:
- Mfn2 is essential for Notch1-mediated protection against MI-induced injury, likely by disrupting mitochondrial damage and ROS cycles.
- Melatonin exerts cardioprotection after MI by activating the Notch1/Mfn2 pathway through its receptor.
- Targeting the Notch1/Mfn2 pathway with agents like melatonin offers a potential therapeutic strategy for myocardial infarction.
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