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Updated: Feb 28, 2026

Evaluating the Effectiveness of Cancer Drug Sensitization In Vitro and In Vivo
Published on: February 6, 2015
Chemosensitivity of BRCA1-Mutated Ovarian Cancer Cells and Established Cytotoxic Agents
Caroline van Haaften1, Jaap van Eendenburg, Arnoud Boot
1*Department of Gynecology, †Department of Pathology, Leiden University Medical Center; and ‡Department of Gynecology, Medical Center Haaglanden, The Hague, The Netherlands.
Objective:
Serous adenocarcinomas that arise in patients with inherited mutations in the tumor suppressor genes BRCA1 and BRCA2 are initially well treatable with platinum/paclitaxel. For recurrent disease in patients with BRCA1 or BRCA2 mutations, olaparib treatment is available. To study additional therapeutic regimens, a better understanding of the cellular and molecular mechanisms of the tumors in in vitro models is important.
Methods/Materials:
From a high-grade serous ovarian tumor of a BRCA1 mutation carrier, we established 3 distinct cell line subclones, OVCA-TR3.1, -2, and -3. Immunohistochemical characterization, flow cytometric analyses, chemosensitivity, and somatic mutation profiling were performed.
Results:
The cell lines expressed AE1/AE3, Pax8, WT-1, OC125, estrogen receptor (ER), and p53, comparable to the primary tumor. Synergism could be shown in the combination treatment eremophila-1-(10)-11(13)-dien-12,8β-olide (EPD), with cisplatin, whereas combination with olaparib did not show synergism. Eremophila-1-(10)-11(13)-dien-12,8β-olide, a sesquiterpene lactone, is a novel chemotherapeutic agent. The inherited BRCA1 c.2989_2990dupAA mutation was confirmed in the cell lines. Loss of heterozygosity of BRCA1 was detected in each cell line, as well as a homozygous TP53 c.722C>A mutation. Flow cytometry showed that all cell lines had a distinct DNA index.
Conclusions:
Three new isogenic ovarian cancer cell lines were developed from a patient with a germ line BRCA1 mutation. Chemosensitivity profiling of the cell lines showed high tolerance for olaparib. Treatment with EPD proved synergistic with cisplatin. The effects of EPD will be further investigated for future clinical efficacy.
Insights
New ovarian cancer cell lines from BRCA1 mutation carriers show promise for novel therapies. Eremophila-1-(10)-11(13)-dien-12,8β-olide combined with cisplatin demonstrates synergistic effects, offering potential new treatment options beyond olaparib.
Area of Science:
- Oncology
- Genetics
- Pharmacology
Background:
- Serous adenocarcinomas in BRCA1/BRCA2 mutation carriers are initially responsive to platinum/paclitaxel.
- Recurrent disease in these patients can be treated with olaparib.
- In vitro models are crucial for understanding tumor mechanisms and developing new therapeutic strategies.
Observation:
- Three distinct isogenic cell line subclones (OVCA-TR3.1, -2, -3) were established from a high-grade serous ovarian tumor of a BRCA1 mutation carrier.
- Cell lines confirmed the inherited BRCA1 mutation and exhibited loss of heterozygosity and a homozygous TP53 mutation.
- Immunohistochemistry and flow cytometry characterized the cell lines, showing similarity to the primary tumor.
Findings:
- Chemosensitivity profiling revealed high tolerance to olaparib in the established cell lines.
- A novel sesquiterpene lactone, eremophila-1-(10)-11(13)-dien-12,8β-olide (EPD), demonstrated synergistic effects when combined with cisplatin.
- Combination treatment with EPD and olaparib did not show synergism.
Implications:
- These new cell lines provide valuable tools for studying BRCA-mutated ovarian cancer.
- The synergistic activity of EPD with cisplatin suggests a potential new therapeutic strategy.
- Further investigation of EPD is warranted to assess its clinical efficacy in ovarian cancer treatment.
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