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Updated: Jul 17, 2026

Identification of Intracellular Signaling Events Induced in Viable Cells by Interaction with Neighboring Cells Undergoing Apoptotic Cell Death
Published on: December 27, 2016
The peroxisome proliferator BR931 kills FaO cells by p53-dependent apoptosis
Gabriella Simbula1, Monica Pibiri, Laura Sanna
1Department of Toxicology, Unit of Oncology and Molecular Pathology, Via Porcell 4, 09124 Cagliari, Italy. gmledda@unica.it
Abstract:
Although suppression of apoptosis has been implicated as a mechanism for the hepatocarcinogenicity of peroxisome proliferators (PPs), they can also induce cell death in rat AH130 and human HepG2 hepatoma cells. To study how PPs induce cell death and to characterize the molecular events involved, we administered the hypolipidemic BR931, a peroxisome proliferator, to rat hepatoma FaO cells. Treatment with increasing concentrations of BR931 (0.015 to 0.6 mM) reduced cell viability in a dose- and time-dependent manner, associated with DNA fragmentation and morphological changes characteristic of apoptosis. BR931 also caused phosphorylation of p53 within 3 hours, translocation of the pro-apoptotic Bax protein to mitochondria, release of cytochrome-c into the cytosol, and activation of caspase-9 and -3. These results indicated that BR931 activated the intrinsic caspase cascade. Pretreatment with three different antioxidants, N-acetylcysteine, Vitamin C and Trolox, reduced apoptosis, suggesting that reactive oxygen species (ROS) plays a role in BR931-induced apoptosis. In support of this hypothesis, BR931 produced increased levels of 8-hydroxy-deoxy-guanosine, a marker of DNA oxidative damage. Antioxidants prevented the p53 phosphorylation, up-regulation of Bax and BR931-induced apoptosis. These results suggest that BR931 can increase generation of ROS, leading to DNA damage and p53 phosphorylation, which, in turn, induces the activation of Bax, release of cytochrome-c from mitochondria and activation of caspases, culminating in cell death.
Insights
Peroxisome proliferators like BR931 induce cell death in liver cells through apoptosis. This process involves reactive oxygen species (ROS) and the intrinsic caspase cascade, leading to DNA damage and cell death.
Area of Science:
- Hepatocarcinogenicity
- Apoptosis
- Cellular toxicology
Background:
- Peroxisome proliferators (PPs) are linked to hepatocarcinogenicity, but their role in inducing cell death is complex.
- While some PPs suppress apoptosis, others can trigger cell death in hepatoma cells.
Purpose of the Study:
- To investigate the mechanisms by which PPs induce cell death.
- To characterize the molecular events involved in BR931-induced apoptosis in rat hepatoma FaO cells.
Main Methods:
- Treatment of FaO cells with varying concentrations of BR931.
- Assessment of cell viability, DNA fragmentation, and morphological changes.
- Analysis of p53 phosphorylation, Bax translocation, cytochrome-c release, and caspase activation.
- Evaluation of the role of reactive oxygen species (ROS) using antioxidants.
Main Results:
- BR931 reduced cell viability in a dose- and time-dependent manner, inducing apoptosis.
- BR931 activated the intrinsic caspase cascade via p53 phosphorylation, Bax translocation, and cytochrome-c release.
- Antioxidants reduced BR931-induced apoptosis, indicating a role for ROS and DNA oxidative damage.
Conclusions:
- BR931 induces apoptosis in hepatoma cells through ROS generation, DNA damage, and activation of the intrinsic caspase pathway.
- This study elucidates a key mechanism of PP-induced cell death, relevant to understanding liver cancer development.
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