Immunopharmacol Immunotoxicol. 2026 Aug 3:1-15. doi: 10.1080/08923973.2026.2713465. Online ahead of print.
ABSTRACT
BACKGROUND: Ivabradine (IVA), a broad-spectrum inhibitor of HCN cation channels, is recognized for enhancing cardiac function in the treatment of cardiovascular diseases and may serve as a potential therapeutic agent for mitigating drug-induced cardiotoxicity. This study aimed to investigate the protective effect of IVA against cardiac damage induced by cisplatin (Cis) and to elucidate the underlying mechanisms.
METHODS: We investigated the impact of IVA (5 mg/kg, orally for 28 consecutive days) on Cisplatin-induced cardiac injury (7.5 mg/kg intraperitoneally on day 5) in rats. Biomarkers of oxidative stress and levels of inflammatory cytokines in cardiac tissue were assessed. H&E staining was employed to identify histopathological alterations in cardiac tissue. The molecular mechanisms of IVA in ameliorating cardiac injury were examined.
RESULTS: The results indicated that IVA enhanced cardiac tissue structure by suppressing the pathological alterations observed in H&E staining. IVA demonstrated antioxidant and anti-inflammatory properties through reducing malonaldehyde (MDA), NADPH oxidase, tumor necrosis factor-α (TNF-α), and interleukins (IL-1β and IL-6) levels, while elevating superoxide dismutase (SOD), IL-10, and eNOS levels. IVA diminished the expression of cAMP response element-binding protein (CREB), Extracellular signal-regulated kinase (ERK), Mitogen-activated protein kinase kinase (MEK), Protein Kinase C-epsilon (PKC epsilon), and microRNA-34a (miRNA-34a), while enhancing the expression of Protein Kinase G (PKG), Myosin Light Chain Phosphatase (MLCP), and Rapidly Accelerated Fibrosarcoma (Raf-1), as confirmed by western blotting and PCR results. Furthermore, its impact on cardiac tissue viability was supported by increased B-cell lymphoma 2 (Bcl2) levels and decreased caspase-3 staining in immunohistopathology.
CONCLUSION: IVA may significantly mitigate cardiac injury in Cis-induced cardiotoxicity through regulating multiple pathways and miRNA-34a levels.
PMID:42544451 | DOI:10.1080/08923973.2026.2713465