1. Phoenix Dactylifera L. Tree Fruit Exerts Cardioprotective Effect Against DoxorubicinInduced Heart Damage in Rats via Inhibition of Oxidative Stress
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  2. Integrated Transcriptomics and Reverse Pharmacophore Mapping-based Network Pharmacology to Explore the Mechanisms of Natural Compounds against Doxorubicin-induced Cardiotoxicity
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  3. Tranilast prevents doxorubicin-induced myocardial hypertrophy and angiotensin II synthesis in rats
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  5. Mitochondrial-Targeted Therapy for Doxorubicin-Induced Cardiotoxicity
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  6. The Implications of Connexin 43 Deficiency during the Early Stages of Chemically Induced Mouse Colon Carcinogenesis
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  7. Mechanisms of Cardiovascular Toxicities Induced by Cancer Therapies and Promising Biomarkers for Their Prediction: A Scoping Review
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  8. Trastuzumab and Doxorubicin Sequential Administration Increases Oxidative Stress and Phosphorylation of Connexin 43 on Ser368
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  9. Chemotherapeutic drugs
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  10. The mutual interplay of redox signaling and connexins
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  11. Connexin 43 in Mitochondria: What Do We Really Know About Its Function?
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  12. Molecular chaperones HSP40, HSP70, STIP1, and HSP90 are involved in stabilization of Cx43
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  13. RNA methylation and cellular response to oxidative stress-promoting anticancer agents
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  14. Connexins in the Heart: Regulation, Function and Involvement in Cardiac Disease
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  15. Research advances on molecular mechanism and natural product therapy of iron metabolism in heart failure
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  16. Molecular mechanisms of endothelial remodeling under doxorubicin treatment
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  17. Diazoxide Needs Mitochondrial Connexin43 to Exert Its Cytoprotective Effect in a Cellular Model of CoCl2-Induced Hypoxia
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  18. Protective effect of diindolylmethane‐enriched dietary cabbage against doxorubicin‐induced cardiotoxicity in mice
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  19. Role of oxidative stress and inflammation-related signaling pathways in doxorubicin-induced cardiomyopathy
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  20. RNA sequencing of formalin fixed paraffin-embedded heart tissue provides transcriptomic information about chemotherapy-induced cardiotoxicity
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  21. Simvastatin Reduces Doxorubicin-Induced Cardiotoxicity: Effects beyond Its Antioxidant Activity
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  22. SIRT1 activation and its effect on intercalated disc proteins as a way to reduce doxorubicin cardiotoxicity
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