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Published on: August 2, 2024
Cisplatin-induced WWP1-eccDNA expression contributes to ovarian cancer resistance
Chenyang Lu1, Li Han2,3, Xiaojuan Guo2,3
1College of Basic Medicine and Forensic Medicine, Henan University of Science and Technology, China.
Background:
Multidrug resistance remains a major obstacle in the treatment of ovarian cancer (OC) patients. Recent research has underscored the critical role of extrachromosomal circular DNA (eccDNA) in tumor initiation and progression. However, there is limited comprehensive understanding of the role eccDNA plays in tumor resistance.
Objectives:
This study investigates the involvement of WWP1-eccDNA in the resistance mechanisms of OC.
Material And Methods:
Human OC cells (SKOV3 and cisplatin-resistant SKOV3/DDP) were cultured and high-throughput sequencing was performed, leading to the identification of eccDNA in SKOV3/DDP cells. Female BALB/cA-nu nude mice with SKOV3 and SKOV3/DDP xenografts received cisplatin (5.5 mg/kg), hydroxyurea (50 mg/kg) or saline for 14 days, followed by tumor weight assessment. Digital droplet polymerase chain reaction (ddPCR) and real-time quantitative polymerase chain reaction (qPCR) were used to quantify WWP1-eccDNA, evaluating their sensitivity and accuracy. Linear DNA removal and BsmI digestion were tested to improve eccDNA detection.
Results:
WWP1-eccDNA was among the top upregulated eccDNA in SKOV3/DDP cells. Both cisplatin and hydroxyurea reduced tumor growth in mice, with cisplatin showing limited efficacy in resistant tumors. The ddPCR outperformed RT-qPCR in sensitivity, and linear DNA removal improved WWP1-eccDNA detection. WWP1-eccDNA levels were significantly elevated in SKOV3/DDP tumors. Treatment with cisplatin further increased its expression, whereas hydroxyurea led to a reduction in WWP1-eccDNA levels.
Conclusions:
WWP1-eccDNA is critical in OC resistance, with cisplatin treatment increasing WWP1-eccDNA levels, contributing to resistance. The ddPCR proves to be a superior method for eccDNA detection.
Insights
WWP1-eccDNA plays a key role in ovarian cancer (OC) drug resistance. Cisplatin treatment increases WWP1-eccDNA, worsening resistance, while hydroxyurea decreases it, offering a potential therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Multidrug resistance is a significant challenge in ovarian cancer (OC) treatment.
- Extrachromosomal circular DNA (eccDNA) is implicated in tumor initiation and progression.
- The specific role of eccDNA in tumor resistance, particularly in OC, requires further elucidation.
Purpose of the Study:
- To investigate the involvement of WWP1-eccDNA in ovarian cancer resistance mechanisms.
- To assess the impact of cisplatin and hydroxyurea on WWP1-eccDNA levels and tumor growth.
- To compare the efficacy of digital droplet polymerase chain reaction (ddPCR) and real-time quantitative polymerase chain reaction (RT-qPCR) for eccDNA detection.
Main Methods:
- Cultured human OC cell lines (SKOV3 and SKOV3/DDP) and performed high-throughput sequencing.
- Utilized xenograft models in nude mice treated with cisplatin or hydroxyurea.
- Quantified WWP1-eccDNA using ddPCR and RT-qPCR, optimizing detection methods.
Main Results:
- WWP1-eccDNA was significantly upregulated in cisplatin-resistant SKOV3/DDP cells and tumors.
- Cisplatin treatment increased WWP1-eccDNA levels, correlating with limited efficacy in resistant tumors.
- Hydroxyurea treatment reduced tumor growth and decreased WWP1-eccDNA levels.
- ddPCR demonstrated superior sensitivity for eccDNA detection compared to RT-qPCR.
Conclusions:
- WWP1-eccDNA is a critical factor in mediating ovarian cancer drug resistance.
- Cisplatin exacerbates resistance by increasing WWP1-eccDNA, while hydroxyurea shows potential by reducing it.
- ddPCR is a highly sensitive and accurate method for detecting and quantifying eccDNA in cancer research.
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