ArticleFrontiers in pharmacology2024
Calycosin alleviates ferroptosis and attenuates doxorubicin-induced myocardial injury via the Nrf2/SLC7A11/GPX4 signaling pathway.
Article in Frontiers in pharmacology, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 17 papers.
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Who cites it
17 citing papers in PubMed.
- Calycosin Safeguards Mitochondrial Genomic Stability and Iron Homeostasis via the NRF2/NRF1-TFAM Axis to Mitigate Doxorubicin-Induced Cardiotoxicity.Antioxidants (Basel, Switzerland) · 2026Article
- Morroniside Attenuates Doxorubicin-Induced Cardiotoxicity by Activating the PI3K/AKT/Nrf2/HO-1 Pathway to Inhibit Ferroptosis and Oxidative Stress.Journal of biochemical and molecular toxicology · 2026Article
- Qishen Granules attenuate adverse ventricular remodeling in chronic heart failure by promoting Legumain/Arg1/Rac1-mediated efferocytosis of resident cardiac macrophages.Chinese medicine · 2026Article
- Polygala Tenuifolia Willd. Ameliorates Neuronal Damage in Alzheimer's Disease Model Mice by Regulating Ferroptosis Through Modulation of the Nrf2/SLC7A11/GPX4 Axis.Applied biochemistry and biotechnology · 2026Article
- Knockdown of PTEN Inhibits Autophagy-Dependent Ferroptosis to Alleviate LPS-Induced Sepsis-Associated Acute Kidney Injury.Inflammation · 2026Article
- Metabolomic fingerprint of volatile and non-volatile compounds of Ganoderma vinegar, Astragalus vinegar, and Winter jujube vinegar based on integrated HS-SPME/GC-MS and UPLC-MS/MS technologies.Food chemistry: X · 2026Article
- Calycosin accelerates wound healing in diabetic rats by alleviating oxidative stress and promoting angiogenesis.Histology and histopathology · 2026Article
- Flavonoids in Medicine and Food Homology Substances: Structure-Activity Relationship, Application Challenges, and Cutting-Edge Technological Breakthroughs.Foods (Basel, Switzerland) · 2026Review
- Disulfidptosis in heart failure: an emerging mechanism awaiting exploration.Frontiers in cardiovascular medicine · 2026Review
- Calycosin attenuates mitochondrial damage and pyroptosis in heart failure via the Nrf2/ROS/TXNIP pathway.International journal of molecular medicine · 2025Article
- The emerging role of Nrf2 in heart failure: From cardioprotection to therapeutic approaches.ESC heart failure · 2025Review
- RRM2 attenuates the renal tubular ferroptosis in diabetic kidney disease through PI3K/Akt/Nrf2 pathway.World journal of diabetes · 2025Article
- Effects of solamargine in hepatic metastasis of colorectal cancer: induction of ferroptosis and elimination of cancer stem cells.Chinese medicine · 2025Article
- Programmed Cell Death in Heart Failure: Mechanisms, Impacts, and Therapeutic Prospects.Reviews in cardiovascular medicine · 2025Review
- From Traditional Efficacy to Drug Design: A Review of Astragali Radix.Pharmaceuticals (Basel, Switzerland) · 2025Review
- Bioinformatics analysis of ferroptosis-related biomarkers and potential drug predictions in doxorubicin-induced cardiotoxicity.Frontiers in cardiovascular medicine · 2025Article
- Calycosin suppresses the activating effect of granulocyte-macrophage-colony-stimulating factor-producing T helper cells on macrophages in experimental atherosclerosis.Frontiers in pharmacology · 2025Article
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8 authors.
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Abstract
Background: Heart failure is primarily characterized by damage to the structure and function of the heart. Ferroptosis represents a form of programmed cell death, and studies indicate that it constitutes one of the primary mechanisms underlying cardiomyocyte death in heart failure. Calycosin, a natural compound derived from astragalus, exhibits various pharmacological properties, including anti-ferroptosis, antioxidant effects, and cardiovascular protection. Nonetheless, the specific role of Calycosin in the treatment of ferroptosis in heart failure remains poorly understood. Objective: This study aims to elucidate the regulatory effect of Calycosin on ferroptosis and its influence on the treatment mechanisms of heart failure through Methods: A rat model of heart failure was induced using doxorubicin, and the cardiac function was evaluated through cardiac ultrasound examination and NT-Pro BNP detection. Myocardial injury was assessed using H&E staining and Masson staining. The extent of mitochondrial damage was evaluated through transmission electron microscopy. Concurrently, the level of ferroptosis was analyzed by measuring ferroptosis markers, including MDA, ferrous ions, the GSH/GSSG ratio, and GPX4 activity. Subsequently, the molecular mechanism by which Calycosin exerts its therapeutic effects in heart failure was investigated through immunofluorescence and Western blotting. Finally, H9c2 cardiomyocytes were treated with doxorubicin to simulate myocardial injury, and the mechanism by which Calycosin mediates its effects in the treatment of heart failure was further verified through Nrf2 gene silencing. Results: Calycosin significantly improves cardiac function in rats, reduces serum NT-Pro BNP levels, and alleviates myocardial cell damage. Additionally, it significantly decreases the levels of ferroptosis in myocardial tissue, as confirmed through transmission electron microscopy and the assessment of ferroptosis markers, including MDA, ferrous ions, GSH, and GPX4 activity. At the molecular level, Calycosin exerts its effects by activating the Nrf2/SLC7A11/GPX4 signaling pathway, evidenced by the upregulation of Nrf2, SLC7A11, GPX4, GSS, and GCL protein expression. This process substantially enhances the antioxidant capacity of rat myocardial tissue and effectively suppresses ferroptosis in myocardial cells. The results obtained from both Conclusion: Calycosin effectively treats doxorubicin-induced cardiac injury, and its therapeutic effect is likely closely associated with the activation of the Nrf2/SLC7A11/GPX4 signaling pathway and the inhibition of ferroptosis in myocardial cells. Consequently, Calycosin, as a promising compound against doxorubicin-induced cardiotoxicity, warrants further investigation.
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