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Updated: Apr 20, 2026

Induction and Validation of Cellular Senescence in Primary Human Cells
Published on: June 20, 2018
Autophagy and senescence, stress responses induced by the DNA-damaging mycotoxin alternariol
A Solhaug1, M L Torgersen2, J A Holme3
1Norwegian Veterinary Institute, 0454 Oslo, Norway.
Abstract:
The mycotoxin alternariol (AOH), a frequent contaminant in fruit and grain, is known to induce cellular stress responses such as reactive oxygen production, DNA damage and cell cycle arrest. Cellular stress is often connected to autophagy, and we employed the RAW264.7 macrophage model to test the hypothesis that AOH induces autophagy. Indeed, AOH treatment led to a massive increase in acidic vacuoles often observed upon autophagy induction. Moreover, expression of the autophagy marker LC3 was markedly increased and there was a strong accumulation of LC3-positive puncta. Increased autophagic activity was verified biochemically by measuring the degradation rate of long-lived proteins. Furthermore, AOH induced expression of Sestrin2 and phosphorylation of AMPK as well as reduced phosphorylation of mTOR and S6 kinase, common mediators of signaling pathways involved in autophagy. Transmission electron microscopy analyzes of AOH treated cells not only clearly displayed structures associated with autophagy such as autophagosomes and autolysosomes, but also the appearance of lamellar bodies. Prolonged AOH treatment resulted in changed cell morphology from round into more star-shaped as well as increased β-galactosidase activity. This suggests that the cells eventually entered senescence. In conclusion, our data identify here AOH as an inducer of both autophagy and senescence. These effects are suggested to be to be linked to AOH-induced DSB (via a reported effect on topoisomerase activity), resulting in an activation of p53 and the Sestrin2-AMPK-mTOR-S6K signaling pathway.
Insights
The mycotoxin alternariol (AOH) triggers cellular autophagy and senescence in macrophages. These findings link AOH exposure to cellular stress responses and potential aging pathways.
Area of Science:
- Cell Biology
- Toxicology
- Molecular Biology
Background:
- Mycotoxin alternariol (AOH) is a common contaminant in food.
- AOH induces cellular stress, including DNA damage and cell cycle arrest.
- Cellular stress is frequently linked to autophagy, a cellular degradation process.
Purpose of the Study:
- To investigate whether AOH induces autophagy in macrophages.
- To explore the molecular mechanisms underlying AOH-induced cellular responses.
- To determine if AOH exposure leads to cellular senescence.
Main Methods:
- RAW264.7 macrophage model was used.
- Autophagy was assessed by measuring acidic vacuoles, LC3 marker expression, and protein degradation.
- Cellular senescence was evaluated through morphological changes and β-galactosidase activity.
- Signaling pathways (AMPK, mTOR, S6K, p53) and ultrastructure (TEM) were analyzed.
Main Results:
- AOH significantly increased markers of autophagy, including acidic vacuoles and LC3 puncta.
- Biochemical assays confirmed enhanced autophagic activity.
- AOH modulated key signaling pathways involved in autophagy (Sestrin2, AMPK, mTOR, S6K).
- Transmission electron microscopy revealed autophagosomes, autolysosomes, and lamellar bodies.
- Prolonged AOH exposure induced cellular senescence markers.
Conclusions:
- AOH is identified as an inducer of both autophagy and senescence in macrophages.
- These effects are potentially mediated by AOH-induced DNA double-strand breaks (DSBs).
- The Sestrin2-AMPK-mTOR-S6K pathway, activated by p53, is implicated in AOH's cellular effects.
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