Hepatoprotective potential of Vernonanthura polyanthes against doxorubicin-induced oxidative stress in a murine model
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The present study aimed to evaluate the redox activity of Vernonanthura polyanthes leaf aqueous extract (VpLAE)
and its n-butanol fraction (n-BF) in mouse liver in the absence or in the presence of doxorubicin (DXR). For this,
the concentration of malondialdehyde (MDA), the activities of superoxide dismutase (SOD), catalase (CAT),
glutathione S-transferase (GST), and glutathione peroxidase (GPx) were determined in the liver of Swiss Webster
mice (n = 5 animals per group). Immunohistochemical analyses on hepatocytes labeled with anti-4-
hydroxynonenal (4HNE) were also performed to confirm the decrease in lipid peroxidation in animals treated
with DXR and VpLAE or n-BF. MDA levels and GST activity increased in the livers of mice that received just
VpLAE at a dose of 1000 mg/kg compared with the negative control. Moreover, n-BF alone increased CAT ac-
tivity at 250 mg/kg, SOD and GST at 1000 mg/kg, and MDA at 250, 500, and 1000 mg/kg. These data indicate
that VpLAE or n-BF alone can promote oxidative stress in hepatocytes. In contrast, when VpLAE was associated
with DXR in a pre-treatment regimen, or when n-BF was associated with DXR in co- or pre-treatment regimens,
MDA levels decreased, suggesting a protective effect against DXR-induced damage. The decrease in 4HNE la-
beling in the livers of mice treated with DXR and VpLAE or n-BF confirmed that pre-treatment with VpLAE or pre-
and co-treatments with n-BF reduced DXR-induced lipid peroxidation. In conclusion, VpLAE and n-BF could
present a dual behavior, promoting oxidative stress in hepatocytes in the absence of DXR or reducing oxidative
stress in the livers of mice treated with DXR. This shift in perspective motivates future studies of VpLAE and n-BF
as promising candidates to overcome DXR-induced hepatotoxicity.
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ROCHA, Jamira Dias et al. Hepatoprotective potential of Vernonanthura polyanthes against doxorubicin-induced oxidative stress in a murine model. South African Journal of Botany, Amsterdam, v. 193, p. 311-322, 2026. DOI: 10.1016/j.sajb.2026.04.014. Disponível em: https://www.sciencedirect.com/science/article/pii/S0254629926001973. Acesso em: 16 jun. 2026.