Does oral eugenol and its nano-emulsion mitigate cardiac fibrosis, vascular remodeling, and cardiac dysfunction in a D-galactose-induced aging rat model?
Male and female rats with D-galactose-induced aging (300 mg/kg, i.p.)
Oral eugenol and its nano-emulsion (20 mg/kg) for 12 weeks
Untreated D-galactose-induced aging rats
Cardiac dysfunction, dilatation, histopathological alterations, oxidative stress, and mitochondrial dysfunctionsurrogate
Eugenol nano-emulsion demonstrates promising anti-aging and cardioprotective potential in a rat model by regulating mitochondrial dynamics, oxidative stress, and inflammatory pathways.
Cardiac diseases are strongly associated with aging and pose a major threat to survival. This study evaluated the cardioprotective effects of oral eugenol and its nano-emulsion (20 mg/kg) in a D-galactose-induced aging model (300 mg/kg, i.p.) in male and female rats over 12 weeks. Particle size and zeta potential analyses confirmed the successful development of a stable, well-dispersed nano-emulsion system. At the end of treatment, echocardiography, biochemical assays, histopathology, and immunohistochemistry were performed. Cardiac dysfunction and dilatation were more pronounced in males than females following D-galactose administration, as evidenced by left ventricular internal diameter in diastole (LVIDd) and left ventricular internal diameter in systole (LVIDs), and reduced ejection fraction (EF) and fractional shortening (FS). Both eugenol and its nano-emulsion preserved cardiac architecture and mitigated histopathological alterations, including myofibrillar distortion, necrosis, vascular remodeling, and fibrosis. Treatment significantly reduced oxidative stress and mitochondrial dysfunction by restoring GSH, lowering MDA, and modulating the PINK1/Mfn2 pathway. Furthermore, eugenol and its nano-emulsion attenuated cardiac inflammation, apoptosis, and fibrosis through downregulation of TGF-β1, MMP-9, TNF-α, and caspase-3 expression. In conclusion, eugenol nano-emulsion demonstrates promising anti-aging potential against cardiac complications by regulating mitochondrial dynamics, mitophagy, oxidative stress, inflammatory and apoptotic responses, and the SIRT1/TGF-β/MMP9 signaling pathway.
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Rawan H. Hanafi
marwa khattab
Sara M. Baraka
Naunyn-Schmiedeberg s Archives of Pharmacology
Cairo University
National Research Centre
Egyptian Russian University
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Hanafi et al. (Mon,) studied this question.
www.synapsesocial.com/papers/69df2c62e4eeef8a2a6b1707 — DOI: https://doi.org/10.1007/s00210-026-05262-4