Multifunctional bioactivity of ellagic acid and pomegranate oil: selective anticancer in melanoma models

Melasma and skin cancer require effective and safe topical treatments. The aim of this study was to investigate the potential cytotoxic and antioxidant effects attributed to exposure to ellagic acid (EA) and pomegranate oil (PO) using human keratinocytes (HaCaT) and melanoma cell lines (A375 and B16F10). Cell viability assay (MTT) demonstrated that EA and PO (5% or 10%) were not cytotoxic to HaCaT cells at 24 hr, but induced significant time-dependent cytotoxicity in melanoma cells after 72 hr. In DCFH-DA assay, PO exhibited greater potential in mitigating production of reactive oxygen species (ROS) in melanoma cells, while EA was more effective in promoting generation of reactive nitrogen species (RNS), a mechanism associated with antineoplastic activity. Thus, EA and PO, especially at concentrations of 5% or 10%, may be considered promising and safe bioactive candidates for dermocosmetic formulations, combining selective cytotoxicity against melanoma cells with valuable antioxidant properties. Furthermore, phytotoxicity assays revealed no adverse environmental effects, with EA even showing a biostimulant profile.

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Publication Details

Journal
Journal of Toxicology and Environmental Health
Published
2026-10-07
DOI
https://doi.org/10.1080/15287394.2026.2742181
Primary Topic
Pomegranate: compositions and health benefits
Type
article
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article

Multifunctional bioactivity of ellagic acid and pomegranate oil: selective anticancer in melanoma models

Camila Franco, Altevir Rossato Viana, Francine Carla Cadoná, LARISSA GINDRI WENNING et al.
Journal of Toxicology and Environmental Health
Pomegranate: compositions and health benefits
article

Multifunctional bioactivity of ellagic acid and pomegranate oil: selective anticancer in melanoma models

Camila Franco, Altevir Rossato Viana, Francine Carla Cadoná, LARISSA GINDRI WENNING, Alana Torres Viero
article en

Abstract

Melasma and skin cancer require effective and safe topical treatments. The aim of this study was to investigate the potential cytotoxic and antioxidant effects attributed to exposure to ellagic acid (EA) and pomegranate oil (PO) using human keratinocytes (HaCaT) and melanoma cell lines (A375 and B16F10). Cell viability assay (MTT) demonstrated that EA and PO (5% or 10%) were not cytotoxic to HaCaT cells at 24 hr, but induced significant time-dependent cytotoxicity in melanoma cells after 72 hr. In DCFH-DA assay, PO exhibited greater potential in mitigating production of reactive oxygen species (ROS) in melanoma cells, while EA was more effective in promoting generation of reactive nitrogen species (RNS), a mechanism associated with antineoplastic activity. Thus, EA and PO, especially at concentrations of 5% or 10%, may be considered promising and safe bioactive candidates for dermocosmetic formulations, combining selective cytotoxicity against melanoma cells with valuable antioxidant properties. Furthermore, phytotoxicity assays revealed no adverse environmental effects, with EA even showing a biostimulant profile.

Journal of Toxicology and Environmental Health
Universidade Franciscana (BR)
Openalex Percentile: Top 12%
Pomegranate: compositions and health benefits
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Multifunctional bioactivity of ellagic acid and pomegranate oil: selective anticancer in melanoma models — Camila Franco, Altevir Rossato Viana, et al. · Journal of Toxicology and Environmental Health (2026) | TGRS Research Map | TGRS