Targeting the SP1/ACSL4 axis attenuates ferroptosis in trastuzumab-induced cardiotoxicity

Qiyuan Hu1, Bincheng Zhong2, Yajie Zheng3

  • 1Department of Cardiology, Tongren Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.

PubMed

Insights

Trastuzumab treatment causes heart damage through ferroptosis, a process involving lipid peroxidation. Inhibiting the SP1 transcription factor may prevent this cardiotoxicity, improving cancer treatment safety.

Area of Science:

  • Oncology
  • Cardiology
  • Molecular Biology

Background:

  • Trastuzumab is a key therapy for HER2-positive cancers.
  • Cardiotoxicity limits Trastuzumab's clinical application.
  • The precise mechanism of Trastuzumab-induced cardiotoxicity remains unclear.

Purpose of the Study:

  • To elucidate the mechanism underlying Trastuzumab-associated cardiotoxicity.
  • To investigate the role of ferroptosis in Trastuzumab-induced myocardial injury.
  • To identify potential therapeutic targets for mitigating Trastuzumab cardiotoxicity.

Main Methods:

  • Analysis of ferroptosis-related protein expression (ACSL4, SLC7A11) in response to Trastuzumab.
  • Assessment of lipid peroxidation levels.
  • Identification and manipulation of the transcription factor SP1.
  • Silencing SP1 to evaluate its effect on Trastuzumab-induced ferroptosis.

Main Results:

  • Trastuzumab treatment induces myocardial injury mechanistically linked to ferroptosis.
  • Trastuzumab dysregulates ferroptosis markers, increasing ACSL4 and decreasing SLC7A11 expression, leading to elevated lipid peroxidation.
  • The transcription factor SP1 was identified as a regulator of ACSL4 and silencing SP1 significantly reduced Trastuzumab-induced myocardial ferroptosis.

Conclusions:

  • Ferroptosis is the primary pathway mediating Trastuzumab-associated cardiotoxicity.
  • SP1 is a critical regulator in this process.
  • Inhibition of SP1 presents a potential therapeutic strategy to prevent Trastuzumab-induced cardiotoxicity.

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