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.

Abstract

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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