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Synergistic Sensitization of High-Grade Serous Ovarian Cancer Cells Lacking Caspase-8 Expression to Chemotherapeutics
Khayal Gasimli1, Monika Raab1, Ranadip Mandal1
1Department of Gynecology, University Hospital Frankfurt am Main, 60590 Frankfurt am Main, Germany.
Abstract:
Ovarian cancer is one of the most lethal gynecological cancers worldwide, with approximately 70% of cases diagnosed in advanced stages. This late diagnosis results from the absence of early warning symptoms and is associated with an unfavorable prognosis. A standard treatment entails a combination of primary chemotherapy with platinum and taxane agents. Tumor recurrence following first-line chemotherapy with Carboplatin and Paclitaxel is detected in 80% of advanced ovarian cancer patients, with disease relapse occurring within 2 years of initial treatment. Platinum-resistant ovarian cancer is one of the biggest challenges in treating patients. Second-line treatments involve PARP or VEGF inhibitors. Identifying novel biomarkers and resistance mechanisms is critical to overcoming resistance, developing newer treatment strategies, and improving patient survival. In this study, we have determined that low Caspase-8 expression in ovarian cancer patients leads to poor prognosis. High-Grade Serous Ovarian Cancer (HGSOC) cells lacking Caspase-8 expression showed an altered composition of the RNA Polymerase II-containing transcriptional elongation complex leading to increased transcriptional activity. Caspase-8 knockout cells display increased BRD4 expression and CDK9 activity and reduced sensitivities to Carboplatin and Paclitaxel. Based on our work, we are proposing three potential therapeutic approaches to treat advanced ovarian cancer patients who exhibit low Caspase-8 expression and resistance to Carboplatin and/or Paclitaxel-combinations of (1) Carboplatin with small-molecule BRD4 inhibitors; (2) Paclitaxel with small-molecule BRD4 inhibitors, and (3) small-molecule BRD4 and CDK9 inhibitors. In addition, we are also proposing two predictive markers of chemoresistance-BRD4 and pCDK9.
Insights
Low Caspase-8 expression in ovarian cancer predicts poor prognosis and chemoresistance. Targeting BRD4 and CDK9 may overcome resistance to standard chemotherapy, improving patient survival.
Area of Science:
- Oncology
- Molecular Biology
- Genomics
Background:
- Ovarian cancer is a lethal gynecological malignancy with late diagnosis and poor prognosis.
- Standard treatments like Carboplatin and Paclitaxel often lead to tumor recurrence and platinum resistance.
- Identifying novel biomarkers and resistance mechanisms is crucial for improving patient outcomes.
Purpose of the Study:
- To investigate the role of Caspase-8 expression in ovarian cancer prognosis and chemoresistance.
- To explore the molecular mechanisms underlying chemoresistance in ovarian cancer.
- To propose novel therapeutic strategies and predictive markers for advanced ovarian cancer.
Main Methods:
- Analysis of Caspase-8 expression in ovarian cancer patients.
- Investigating the effects of Caspase-8 deficiency on transcriptional activity and gene expression in High-Grade Serous Ovarian Cancer (HGSOC) cells.
- Assessing the sensitivity of Caspase-8 knockout cells to Carboplatin and Paclitaxel.
Main Results:
- Low Caspase-8 expression is associated with poor prognosis in ovarian cancer patients.
- Caspase-8 deficient HGSOC cells exhibit increased transcriptional activity due to altered RNA Polymerase II complex.
- Caspase-8 knockout cells show increased BRD4 expression, elevated CDK9 activity, and reduced sensitivity to Carboplatin and Paclitaxel.
Conclusions:
- Caspase-8 deficiency contributes to chemoresistance in ovarian cancer by upregulating BRD4 and CDK9.
- Combinations of Carboplatin or Paclitaxel with BRD4 inhibitors, or dual BRD4 and CDK9 inhibition, are potential therapeutic strategies for low Caspase-8 expressing ovarian cancer.
- BRD4 and pCDK9 are proposed as predictive markers for chemotherapy resistance.
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