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Updated: Sep 30, 2025

Techniques to Induce and Quantify Cellular Senescence
Published on: May 1, 2017
Olive phenols preserve lamin B1 expression reducing cGAS/STING/NFκB-mediated SASP in ionizing radiation-induced
Elena Frediani1, Francesca Scavone1, Anna Laurenzana1
1Department of Experimental and Clinical Biomedical Sciences, University of Florence, Florence, Italy.
Abstract:
Senescence occurs upon critical telomere shortening, or following DNA damage, oncogenic activation, hypoxia and oxidative stress, overall referred to stress-induced premature senescence (SIPS). In response to DNA damage, senescent cells release cytoplasmic chromatin fragments (CCFs), and express an altered secretome, the senescence-associated secretory phenotype (SASP), which contributes to generate a pro-inflammatory and pro-tumoral extracellular milieu. Polyphenols have gained significant attention owing to their anti-inflammatory and anti-tumour activities. Here, we studied the effect of oleuropein aglycone (OLE) and hydroxytyrosol (HT) on DNA damage, CCF appearance and SASP in a model of irradiation-induced senescence. Neonatal human dermal fibroblasts (NHDFs) were γ-irradiated and incubated with OLE, 5 µM and HT, 1 µM. Cell growth and senescence-associated (SA)-β-Gal-staining were used as senescence markers. DNA damage was evaluated by Comet assay, lamin B1 expression, release of CCFs, cyclic GMP-AMP Synthase (cGAS) activation. IL-6, IL-8, MCP-1 and RANTES were measured by ELISA assay. Our results showed that OLE and HT exerted a protective effect on 8 Gy irradiation-induced senescence, preserving lamin B1 expression and reducing cGAS/STING/NFκB-mediated SASP. The ability of OLE and HT to mitigate DNA damage, senescence status and the related SASP in normal cells can be exploited to improve the efficacy and safety of cancer radiotherapy.
Insights
Oleuropein aglycone (OLE) and hydroxytyrosol (HT) protect normal cells from radiation-induced senescence. These polyphenols reduce DNA damage and the inflammatory senescence-associated secretory phenotype (SASP), potentially improving cancer radiotherapy safety.
Area of Science:
- Cellular Biology
- Molecular Biology
- Oncology
Background:
- Cellular senescence is a response to stress, including DNA damage, leading to a senescence-associated secretory phenotype (SASP).
- SASP promotes inflammation and tumor growth, making it a target for therapeutic intervention.
- Polyphenols like OLE and HT show anti-inflammatory and anti-tumor properties.
Purpose of the Study:
- To investigate the protective effects of OLE and HT against irradiation-induced senescence in normal cells.
- To determine if OLE and HT can mitigate DNA damage, cytoplasmic chromatin fragment (CCF) release, and SASP.
Main Methods:
- Neonatal human dermal fibroblasts (NHDFs) were exposed to gamma irradiation and treated with OLE or HT.
- Senescence was assessed using cell growth and SA-β-Gal staining.
- DNA damage, CCF release, cGAS activation, and SASP components (IL-6, IL-8, MCP-1, RANTES) were measured.
Main Results:
- OLE and HT protected NHDFs from 8 Gy irradiation-induced senescence.
- These compounds preserved lamin B1 expression, a marker of nuclear integrity.
- OLE and HT reduced CCF release and inhibited cGAS/STING/NFκB-mediated SASP.
Conclusions:
- OLE and HT demonstrate protective effects against DNA damage and senescence.
- These polyphenols can mitigate the pro-inflammatory and pro-tumoral SASP.
- OLE and HT may enhance the efficacy and safety of cancer radiotherapy by protecting normal tissues.
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