Mitochondrial Ferritin Overexpression Attenuates Ferroptosis and Mitochondrial Dysfunction by Reducing VDAC1 to

Yong Yuan1,2, Xiuqi Wang2, Huaihuan Xu1

  • 1Department of Cardiovascular Surgery, The First Affiliated Hospital, Jiangxi Medical College, Nanchang University, Nanchang, Jiangxi, China.

Insights

FTMT overexpression alleviates myocardial infarction-reperfusion injury by reducing ferroptosis and mitochondrial dysfunction. This study highlights FTMT as a potential therapeutic target for ischemic cardiomyopathy.

Area of Science:

  • Cardiovascular Biology
  • Mitochondrial Medicine
  • Cellular Metabolism

Background:

  • Ischemic cardiomyopathy is a leading cause of death in the elderly, with poorly understood molecular underpinnings.
  • Voltage-dependent anion channel 1 (VDAC1) and Ferritinophagy regulatory element binding protein (FTMT) are implicated in myocardial infarction with reperfusion (MI/RI) injury.
  • The precise roles of VDAC1 and FTMT in MI/RI pathogenesis require further elucidation.

Purpose of the Study:

  • To investigate the molecular mechanisms of VDAC1 and FTMT in MI/RI.
  • To determine the therapeutic potential of FTMT in mitigating MI/RI-induced damage.

Main Methods:

  • In vitro H9c2 cell models of A/R and in vivo Sprague-Dawley rat MI/RI models were utilized.
  • VDAC1 and FTMT levels were modulated via overexpression and knockdown techniques.
  • Biochemical assays, oxidative stress markers, mitochondrial function assessments, and histological analyses were performed.

Main Results:

  • VDAC1 levels increased, while FTMT levels decreased in A/R conditions.
  • VDAC1 overexpression exacerbated A/R injury, increasing oxidative stress and iron deposition.
  • FTMT overexpression reversed these detrimental effects, improving cardiac function, reducing infarct size, and inhibiting ferroptosis in vivo and in vitro.
  • FTMT mitigated mitochondrial dysfunction by downregulating VDAC1 and PTGS2, upregulating GPX4, and stabilizing mitochondrial membrane potential.

Conclusions:

  • FTMT overexpression alleviates MI/RI injury by inhibiting ferroptosis and improving mitochondrial function through VDAC1 regulation.
  • This study identifies FTMT as a novel therapeutic target for treating ischemic cardiomyopathy.

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