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Potential Anticancer Activity of Donkey Milk in Human Gastric Adenocarcinoma (AGS) Cell Line
Mariangela Mazzone1, Maria Carmela Di Marcantonio1, Maria Sindaco1
1Department of Innovative Technologies in Medicine & Dentistry, University "G. d'Annunzio" Chieti-Pescara, 66100 Chieti, Italy.
Abstract:
Gastric cancer (GC) remains a major global health challenge, ranking among the most lethal malignancies due to late diagnosis, high tumor heterogeneity, and limited treatment efficacy. The search for safer, nutritionally based adjuncts to conventional therapies is therefore a research priority. Donkey milk (DM), traditionally used as a hypoallergenic substitute for infants, is emerging as a functional food with remarkable bioactivity. Its composition closely resembles human milk, with high levels of bioactive proteins, a favorable polyunsaturated lipid profile, antioxidant vitamins, and immune-supportive minerals. Despite its growing nutraceutical appeal, the anticancer potential of DM in GC has not yet been explored. This study represents the first investigation of DM in human gastric adenocarcinoma (AGS) cells. Using increasing concentrations of whole DM (25-100%), a dose-dependent inhibition of cell viability and migration was observed. Mechanistic insights reveal that DM induces mitochondrial oxidative stress, disrupts cell cycle progression (S/G2 accumulation at 75%, G2 arrest at 100%), and unexpectedly triggers a pro-inflammatory gene signature suggesting stress-driven immunostimulation rather than canonical apoptosis. These findings highlight a non-classical, context-dependent cytotoxic mechanism that distinguishes DM from conventional pro-apoptotic agents. DM may represent a promising nutraceutical candidate for GC management, bridging traditional food resources with modern oncology. By inhibiting hallmark cancer traits while engaging unique immunological pathways, DM offers a sustainable, low-toxicity approach with translational potential. Future studies will focus on the characterization of active components, validation in organoid and animal models, and exploring clinical applications of DM-derived bioactive components in cancer prevention and therapy.
Insights
Donkey milk (DM) shows anticancer effects against gastric cancer (GC) cells by reducing viability and migration. It induces oxidative stress and cell cycle arrest, suggesting potential as a novel nutraceutical for GC management.
Area of Science:
- Oncology
- Nutraceuticals
- Food Science
Background:
- Gastric cancer (GC) is a leading cause of cancer mortality globally, characterized by late diagnosis and limited treatment options.
- There is a growing need for safe, nutritionally based adjuncts to conventional cancer therapies.
- Donkey milk (DM), known for its hypoallergenic properties and resemblance to human milk, is gaining attention as a functional food with bioactive components.
Purpose of the Study:
- To investigate the anticancer potential of donkey milk (DM) in human gastric adenocarcinoma (AGS) cells for the first time.
- To explore the mechanisms underlying DM's effects on gastric cancer cells.
- To assess DM's viability as a nutraceutical candidate for GC management.
Main Methods:
- Treatment of human gastric adenocarcinoma (AGS) cells with varying concentrations of whole donkey milk (25-100%).
- Assessment of cell viability and migration.
- Analysis of cell cycle progression, mitochondrial oxidative stress, and gene expression profiles.
Main Results:
- Donkey milk demonstrated a dose-dependent inhibition of AGS cell viability and migration.
- DM induced mitochondrial oxidative stress and disrupted cell cycle progression, leading to S/G2 accumulation and G2 arrest.
- A pro-inflammatory gene signature was observed, indicating stress-driven immunostimulation rather than classical apoptosis.
Conclusions:
- Donkey milk exhibits a unique, non-classical cytotoxic mechanism against gastric cancer cells.
- DM's ability to inhibit cancer cell proliferation and migration, coupled with its low toxicity, positions it as a promising nutraceutical candidate for GC management.
- Further research into DM's bioactive components and validation in preclinical models is warranted for its translational application in cancer therapy.