4.7 Article

Dapagliflozin protects against doxorubicin-induced cardiotoxicity by restoring STAT3

期刊

ARCHIVES OF TOXICOLOGY
卷 96, 期 7, 页码 2021-2032

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s00204-022-03298-y

关键词

Doxorubicin-induced cardiotoxicity; Dapagliflozin; STAT3; Apoptosis; ROS

资金

  1. Chi-Mei Medical Center, Ministry of Science and Technology [MOST105-2628-B-384-001-MY3, 108-2628-B-384]
  2. National Health Research Institute [NHRI-EX106-10618SC]

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This study found that DAPA has a protective effect against Dox-induced cardiotoxicity and demonstrated the important role of STAT3 in this process. DAPA improves cardiac function by reducing cardiac fibrosis and inhibiting cell apoptosis and reactive oxygen species generation. Furthermore, the study also showed that DAPA can restore Dox-suppressed STAT3 expression.
Doxorubicin (Dox), an effective therapy in different types of cancer, is known to exhibit cardiotoxic effects. Despite previous studies indicating the benefits of dapagliflozin (DAPA) in patients experiencing heart failure, it remains uncertain whether DAPA exerts a protective effect on Dox-induced cardiac dysfunction. Signal transducer and activator of transcription 3 (STAT3) participates in various mechanisms of cardioprotection. Herein, we aimed to investigate the effects of DAPA on Dox-induced cardiotoxicity and the role of STAT3. Sprague-Dawley rats were pretreated with oral DAPA for 6 weeks followed by Dox for 4 weeks. Sequential echocardiography was applied to assess cardiac function. For in vitro analysis, cardiomyocytes were treated with 10 mu M DAPA and subsequently exposed to 1 mu M Dox. The expression of reactive oxygen species- and apoptosis-related proteins was measured. Using STAT3 siRNA, we further examined the effects of STAT3 effect on DAPA-associated protection against Dox-induced apoptosis. In rats treated with Dox, DAPA significantly reduced cardiac fibrosis and improved cardiac function and hemodynamics. Additionally, DAPA effectively inhibited Dox-induced apoptosis and reactive oxygen species (ROS) in cardiomyocytes. Mechanistically, we showed that DAPA decreased cardiac expression of Bax and cleaved caspase 3 but increased Bcl-2 expression. DAPA also significantly rescued Dox-suppressed STAT3 expression. Conversely, knocking down STAT3 in cardiomyocytes reversed the DAPA-related protective effects on Dox-induced cell apoptosis and ROS. Collectively, our findings indicate that DAPA could be useful for preventing Dox-induced cardiotoxicity by restoring STAT3.

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