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Updated: Jan 29, 2026

Heterotypic Three-dimensional In Vitro Modeling of Stromal-Epithelial Interactions During Ovarian Cancer Initiation and Progression
Published on: August 28, 2012
Novel targeted therapies in epithelial ovarian cancer: from basic research to the clinic
Angiolo Gadducci1, Stefania Cosio2, Andrea Riccardo Genazzani3
1a University of Pisa, Department of Procreative Medicine, Division of Gynecology & Obstetrics, Via Roma 56, Pisa, 56127, Italy. a.gadducci@obgyn.med.unipi.it.
Abstract:
The development of new molecularly targeted therapies represents a high priority for the treatment of epithelial ovarian cancer. P-glycoprotein overexpression has been associated with multidrug resistance, and the use of multidrug resistance modulators, such as valspodar, is being explored in combination with chemotherapy. Human epidermal receptor (HER) family members are attractive targets for biological therapies. The addition of erlotinib or cetuximab to first-line paclitaxel- plus carboplatin-based chemotherapy is feasible and well tolerated. Gefitinib is able to inhibit the proliferation of ovarian clear-cell carcinoma in in vitro and in vivo experimental models. Single-agent trastuzumab has a limited value for recurrent epithelial ovarian cancer owing to the low frequency of HER2 overexpression and the low rate of objective responses among HER2-overexpressing patients. A Gynecologic Oncology Group Phase II trial of the proteasome inhibitor bortezomib in recurrent epithelial ovarian cancer is currently ongoing, and the combination of bortezomib and chemotherapeutic agents should be assessed. The mammalian target of rapamycin (mTOR) plays an important role in stimulating the translation of mRNAs encoding key proteins for cell growth and angiogenesis, and mTOR inhibitors, such as AP-23573 (ARIAD), deserve to be tested in selected epithelial ovarian cancer patients. The addition of intraperitoneal treatment with adenovirus containing human wild-type p53 to standard paclitaxel- plus carboplatin-based chemotherapy failed to improve the clinical outcome of patients with mutated p53 epithelial ovarian cancer. The Gynecologic Oncology Group is conducting a Phase II trial of single-agent bevacizumab (antivascular endothelial growth factor monoclonal antibody) in platinum-resistant disease. In conclusion, emerging drugs for epithelial ovarian cancer include agents designed to overcome chemoresistance, HER-targeting agents, proteasome inhibitors, mTOR inhibitors and angiogenesis inhibitors. A new paradigm of treatment could consist of chemotherapy combined with a biological agent for six cycles, and followed by chronic maintenance therapy with the biological agent alone. Advances in genomics and proteomics will elucidate the molecular mechanisms of ovarian carcinogenesis, which will hopefully lead to individualized molecular medicine in the next years.
Insights
New targeted therapies are emerging for epithelial ovarian cancer, including agents to overcome resistance and target HER family receptors. Future treatments may combine chemotherapy with biological agents for improved outcomes.
Area of Science:
- Gynecologic Oncology
- Medical Oncology
- Translational Cancer Research
Background:
- Epithelial ovarian cancer (EOC) treatment faces challenges with multidrug resistance (MDR) and limited targeted options.
- Overexpression of P-glycoprotein is linked to MDR in EOC.
- Human Epidermal Receptor (HER) family members are potential targets for biological therapies.
Purpose of the Study:
- To review emerging molecularly targeted therapies for epithelial ovarian cancer.
- To explore novel agents and combinations for overcoming chemoresistance and improving patient outcomes.
- To discuss the potential of personalized medicine in EOC treatment based on molecular advancements.
Main Methods:
- Review of current and investigational therapies for epithelial ovarian cancer.
- Analysis of agents targeting P-glycoprotein, HER family, proteasome, mTOR, and angiogenesis.
- Evaluation of combination therapies including chemotherapy and biological agents.
Main Results:
- Addition of erlotinib or cetuximab to chemotherapy is feasible.
- Gefitinib shows efficacy in preclinical models of ovarian clear-cell carcinoma.
- Trastuzumab has limited value due to low HER2 overexpression frequency.
- Bortezomib and mTOR inhibitors (e.g., AP-23573) are under investigation.
- Bevacizumab is being studied in platinum-resistant EOC.
- Gene therapy with p53 showed no improvement in mutated p53 EOC.
Conclusions:
- Emerging drugs for EOC include chemoresistance modulators, HER-targeting agents, proteasome inhibitors, mTOR inhibitors, and angiogenesis inhibitors.
- A potential new treatment paradigm involves combining chemotherapy with biological agents, followed by maintenance therapy.
- Genomic and proteomic advances are expected to drive individualized molecular medicine for EOC.
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