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A Doxorubicin-induced Cardiomyopathy Model in Adult Zebrafish
Published on: June 7, 2018
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.
Abstract:
Cardiac dysfunction can be aggravated by chemotherapeutic agents, including doxorubicin, through mechanisms involving mitochondrial dysfunction, elevated oxidative stress, suppression of sirtuin (SIRT1/SIRT3) signaling, and activation of apoptotic and ferroptotic pathways. Dapagliflozin, a selective sodium-glucose cotransporter 2 (SGLT2) inhibitor, has been demonstrated to possess cardioprotective effects; however, the interplay between sirtuin signaling and ferroptosis in dapagliflozin-mediated cardioprotection under doxorubicin-induced stress remains unclear. In the present study, dapagliflozin restored cellular function in H9c2 cardiomyoblasts exposed to doxorubicin by reducing apoptosis, oxidative stress, and lipid peroxidation, while preserving mitochondrial respiration and glycolytic function. Dapagliflozin reversed doxorubicin-induced downregulation of SIRT1, SIRT3, GPX4, BCL2, OPA1, and PGC1α, and mitigated the upregulation of ACSL4, BAX, and DNM1 at both transcriptional and translational levels. The cardioprotective efficacy of dapagliflozin under cellular stress depends critically on SIRT1/SIRT3 signaling and ferroptosis regulation, as pharmacological inhibition of these sirtuins abolished its protective potentials; conversely, these effects were enhanced by ferroptosis suppression and attenuated by its induction. Furthermore, dapagliflozin-mediated inhibition of ferroptosis downregulated SIRT1/SIRT3 expression, suggesting a potential feedback mechanism under chemotherapeutic stress. Notably, sirtuin inhibition compromised these protective responses despite ferroptosis blockade, highlighting SIRT1/SIRT3 as upstream regulators of dapagliflozin-mediated cardioprotection and underscoring the necessity of sirtuin activity for ferroptosis suppression. Collectively, these findings reveal that dapagliflozin mitigates doxorubicin-induced cardiotoxicity via the coordinated regulation of SIRT1/SIRT3 signaling and ferroptosis pathways, involving key mediators of apoptosis, mitochondrial dynamics, and lipid metabolism.
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.
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