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Vorinostat Treatment of Gastric Cancer Cells Leads to ROS-Induced Cell Inhibition and a Complex Pattern of Molecular
Leoni Lorenz1, Tamara Zenz1, Denys Oliinyk2,3,4
1Clinical Pharmacology, Rudolf-Boehm-Institute for Pharmacology and Toxicology, Medical Faculty, Leipzig University, 04107 Leipzig, Germany.
Abstract:
Histone deacetylase inhibitors (HDACi) show high antineoplastic potential in preclinical studies in various solid tumors, including gastric carcinoma; however, their use in clinical studies has not yet yielded convincing efficacies. Thus, further studies on cellular/molecular effects of HDACi are needed, for improving clinical efficacy and identifying suitable combination partners. Here, we investigated the role of oxidative stress in gastric cancer cells upon treatment with HDACi. A particular focus was laid on the role of the Nrf2 pathway, which can mediate resistance to cell-inhibitory effects of reactive oxidative species (ROS). Using fluorescence-based ROS sensors, oxidative stress was measured in human gastric cancer cell lines. Activation of the Nrf2 pathway was monitored in luciferase reporter assays as well as by mRNA and proteomic expression analyses of Nrf2 regulators and Nrf2-induced genes. Furthermore, the effects of ROS scavenger N-acetyl-L-cysteine (NAC) and Nrf2-knockdown on HDACi-dependent antiproliferative effects were investigated in colorimetric formazan-based and clonogenic survival assays. HDACi treatment led to increased oxidative stress levels and consequently, treatment with NAC reduced cytotoxicity of HDACi. In addition, vorinostat treatment stimulated expression of a luciferase reporter under the control of an antioxidative response element, indicating activation of the Nrf2 system. This Nrf2 activation was only partially reversible by treatment with NAC, suggesting ROS independent pathways to contribute to HDACi-promoted Nrf2 activation. In line with its cytoprotective role, Nrf2 knockdown led to a sensitization against HDACi. Accordingly, the expression of antioxidant and detoxifying Nrf2 target genes was upregulated upon HDACi treatment. In conclusion, oxidative stress induction upon HDAC inhibition contributes to the antitumor effects of HDAC inhibitors, and activation of Nrf2 represents a potentially important adaptive response of gastric cancer cells in this context.
Insights
Histone deacetylase inhibitors (HDACi) induce oxidative stress in gastric cancer cells, contributing to their antitumor effects. The Nrf2 pathway activates as a protective response, influencing treatment efficacy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Histone deacetylase inhibitors (HDACi) show preclinical promise against gastric cancer but lack clinical efficacy.
- Understanding HDACi's cellular and molecular effects is crucial for improving patient outcomes and identifying combination therapies.
Purpose of the Study:
- To investigate the role of oxidative stress in gastric cancer cells treated with HDACi.
- To elucidate the involvement of the Nrf2 pathway in mediating resistance to HDACi-induced reactive oxidative species (ROS).
Main Methods:
- Measurement of oxidative stress using fluorescence-based ROS sensors in gastric cancer cell lines.
- Monitoring Nrf2 pathway activation via luciferase reporter assays, mRNA, and proteomic analyses.
- Assessing the impact of N-acetyl-L-cysteine (NAC) and Nrf2-knockdown on HDACi-induced antiproliferative effects.
Main Results:
- HDACi treatment increased oxidative stress; NAC reduced HDACi-induced cytotoxicity.
- Vorinostat activated the Nrf2 system, with partial ROS-independent pathways involved.
- Nrf2-knockdown sensitized cells to HDACi, and antioxidant/detoxifying genes were upregulated.
Conclusions:
- Oxidative stress induced by HDAC inhibition contributes to the antitumor activity of HDACi in gastric cancer.
- Nrf2 activation is a significant adaptive response in gastric cancer cells during HDAC inhibition, impacting treatment efficacy.
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