Related Experiment Video
Updated: Oct 22, 2025

Ovarian Cancer Patient-Derived Organoid Models for Pre-Clinical Drug Testing
Published on: September 15, 2023
Utilizing Patient-Derived Epithelial Ovarian Cancer Tumor Organoids to Predict Carboplatin Resistance
Justin W Gorski1, Zhuwei Zhang2, J Robert McCorkle3
1Division of Gynecologic Oncology, Department of Obstetrics & Gynecology, University of Kentucky Chandler Medical Center, 800 Rose Street, Lexington, KY 40536-0263, USA.
Abstract:
The development of patient-derived tumor organoids (TOs) from an epithelial ovarian cancer tumor obtained at the time of primary or interval debulking surgery has the potential to play an important role in precision medicine. Here, we utilized TOs to test front-line chemotherapy sensitivity and to investigate genomic drivers of carboplatin resistance. We developed six high-grade, serous epithelial ovarian cancer tumor organoid lines from tissue obtained during debulking surgery (two neoadjuvant-carboplatin-exposed and four chemo-naïve). Each organoid line was screened for sensitivity to carboplatin at four different doses (100, 10, 1, and 0.1 µM). Cell viability curves and resultant EC50 values were determined. One organoid line, UK1254, was predicted to be resistant to carboplatin based on its EC50 value (50.2 µM) being above clinically achievable Cmax. UK1254 had a significantly shorter PFS than the rest of the subjects (p = 0.0253) and was treated as a platinum-resistant recurrence. Subsequent gene expression analysis revealed extensively interconnected, differentially expressed pathways related to NF-kB, cellular differentiation (PRDM6 activation), and the linkage of B-cell receptor signaling to the PI3K-Akt signaling pathway (PI3KAP1 activation). This study demonstrates that patient-derived tumor organoids can be developed from patients at the time of primary or interval debulking surgery and may be used to predict clinical platinum sensitivity status or to investigate drivers of carboplatin resistance.
Insights
Patient-derived tumor organoids (TOs) from ovarian cancer can predict chemotherapy response. This study used TOs to identify carboplatin resistance mechanisms and potential therapeutic targets.
Area of Science:
- Oncology
- Genomics
- Precision Medicine
Background:
- Epithelial ovarian cancer (EOC) treatment relies on chemotherapy.
- Patient-derived tumor organoids (TOs) offer a promising model for personalized medicine.
- Understanding carboplatin resistance is crucial for improving EOC patient outcomes.
Purpose of the Study:
- To develop and utilize EOC TOs for assessing front-line chemotherapy sensitivity.
- To investigate the genomic drivers of carboplatin resistance using TOs.
- To correlate TOs' carboplatin sensitivity with clinical platinum sensitivity status.
Main Methods:
- Six high-grade serous EOC TO lines were established from debulking surgery specimens.
- TOs were screened for carboplatin sensitivity across four different concentrations.
- Cell viability and EC50 values were determined; gene expression analysis was performed on a resistant line.
Main Results:
- One TO line (UK1254) exhibited predicted carboplatin resistance (EC50 = 50.2 µM).
- UK1254 showed significantly shorter progression-free survival (PFS) compared to other subjects.
- Gene expression analysis revealed altered NF-kB, PRDM6, and PI3KAP1 signaling pathways.
Conclusions:
- Patient-derived TOs can be successfully developed from EOC surgical specimens.
- TOs can predict clinical platinum sensitivity and aid in investigating carboplatin resistance.
- This approach supports the role of TOs in advancing precision medicine for ovarian cancer.

