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Updated: Jun 1, 2026

Testing Targeted Therapies in Cancer using Structural DNA Alteration Analysis and Patient-Derived Xenografts
Published on: July 25, 2020
Molecular targeted therapy in ovarian cancer: what is on the horizon?
Roshni Kalachand1, Bryan T Hennessy, Maurie Markman
1Department of Medical Oncology, Beaumont Hospital, Dublin, Ireland. roshnikalachand@physicians.ie
Abstract:
Over the past two decades, empirical optimization of cytotoxic chemotherapy combinations and surgical debulking procedures have improved outcomes and survival in epithelial ovarian cancer. Yet, this disease remains the fifth leading cause of cancer-related deaths in the US, as cure rates seem to have reached a plateau at approximately 20% with conventional chemotherapy. Novel high-throughput genomic and proteomic analyses have improved the molecular understanding of ovarian carcinogenesis, thereby providing a vast array of new potential drug targets with complex signalling interactions. In order to yield the most significant impact on disease outcome, it is necessary to carefully select, and subsequently target, the driving molecular pathway(s) within a tumour or tumour subtype, which are most likely to correspond to high-frequency mutations and genomic aberrations. The identification of biomarkers predictive of response to targeted therapy is essential to avoid poor responses to potentially useful drugs in unselected trial populations. With some promising, albeit early, phase III data on the angiogenesis inhibitor bevacizumab, exciting new opportunities lie ahead with the ultimate goal of personalizing therapies to individual tumour profiles.
Insights
Epithelial ovarian cancer outcomes have plateaued with conventional chemotherapy. Personalized therapies targeting specific molecular pathways and biomarkers show promise for improving patient survival.
Area of Science:
- Oncology
- Genomics
- Molecular Biology
Background:
- Epithelial ovarian cancer (EOC) outcomes have plateaued despite advances in chemotherapy and surgery.
- Conventional treatments achieve only a 20% cure rate, highlighting the need for novel therapeutic strategies.
Purpose of the Study:
- To explore the potential of targeted therapies in epithelial ovarian cancer.
- To emphasize the importance of molecular understanding and biomarker identification for personalized treatment.
Main Methods:
- Review of genomic and proteomic analyses in ovarian carcinogenesis.
- Analysis of potential drug targets and molecular pathways.
- Evaluation of biomarker predictive value for targeted therapy response.
Main Results:
- Genomic and proteomic studies offer new insights into ovarian cancer development.
- Targeting specific molecular pathways holds promise for improved treatment efficacy.
- Biomarker identification is crucial for patient selection in targeted therapy trials.
Conclusions:
- Personalized therapy based on individual tumor profiles is the future of ovarian cancer treatment.
- Targeted therapies, such as angiogenesis inhibitors, represent a promising avenue.
- Further research is needed to translate molecular insights into effective clinical strategies.
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