Dapagliflozin Protects Cardiomyocytes against Doxorubicin-Induced Toxicity by Modulating Sirtuin 1/Sirtuin 3 and

Hnin Ei Ei Khine1, Supachoke Mangmool2, Warisara Parichatikanond1,3,4

  • 1Department of Pharmacology, Faculty of Pharmacy, Mahidol University, Bangkok 10400, Thailand.

Insights

Dapagliflozin protects heart cells from doxorubicin damage by regulating sirtuin (SIRT1/SIRT3) signaling and ferroptosis pathways, crucial for preserving cardiac function.

Area of Science:

  • Biochemistry
  • Cardiology
  • Pharmacology

Background:

  • Chemotherapy, like doxorubicin, causes cardiac dysfunction via mitochondrial issues, oxidative stress, and apoptosis.
  • Sirtuin (SIRT1/SIRT3) signaling and ferroptosis pathways are implicated in doxorubicin-induced cardiotoxicity.
  • Dapagliflozin, an SGLT2 inhibitor, shows cardioprotective potential, but its role in sirtuin and ferroptosis regulation is unclear.

Purpose of the Study:

  • To investigate the mechanisms of dapagliflozin's cardioprotection against doxorubicin-induced stress.
  • To elucidate the interplay between sirtuin signaling and ferroptosis in dapagliflozin's protective effects.

Main Methods:

  • Utilized H9c2 cardiomyoblasts exposed to doxorubicin.
  • Assessed cellular function, apoptosis, oxidative stress, and lipid peroxidation.
  • Analyzed gene and protein expression of key signaling molecules (SIRT1, SIRT3, GPX4, BAX, etc.).
  • Investigated the effects of sirtuin inhibition and ferroptosis modulation on dapagliflozin's efficacy.

Main Results:

  • Dapagliflozin restored cellular function, reduced apoptosis and oxidative stress, and preserved mitochondrial/glycolytic function.
  • Dapagliflozin reversed doxorubicin-induced changes in SIRT1, SIRT3, GPX4, BCL2, OPA1, PGC1α, ACSL4, BAX, and DNM1 expression.
  • Cardioprotection was dependent on SIRT1/SIRT3 signaling and ferroptosis regulation, with sirtuin inhibition abolishing protective effects.

Conclusions:

  • Dapagliflozin mitigates doxorubicin cardiotoxicity through coordinated regulation of SIRT1/SIRT3 signaling and ferroptosis.
  • Sirtuins act as upstream regulators of dapagliflozin's cardioprotective effects by suppressing ferroptosis.
  • Findings highlight the necessity of sirtuin activity for ferroptosis suppression in mitigating chemotherapy-induced cardiac damage.