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Stereotactic Radiosurgery for Gynecologic Cancer
Published on: April 17, 2012
Quantitative Chemotherapeutic Profiling of Gynecologic Cancer Cell Lines Using Approved Drugs and Bioactive Compounds
Kirill Gorshkov1, Ni Sima2, Wei Sun1
1National Center for Advancing Translational Sciences, National Institutes of Health, 9800 Medical Center Drive, Bethesda, MD 20892, USA.
Abstract:
Heterogeneous response to chemotherapy is a major issue for the treatment of cancer. For most gynecologic cancers including ovarian, cervical, and placental, the list of available small molecule therapies is relatively small compared to options for other cancers. While overall cancer mortality rates have decreased in the United States as early diagnoses and cancer therapies have become more effective, ovarian cancer still has low survival rates due to the lack of effective treatment options, drug resistance, and late diagnosis. To understand chemotherapeutic diversity in gynecologic cancers, we have screened 7914 approved drugs and bioactive compounds in 11 gynecologic cancer cell lines to profile their chemotherapeutic sensitivity. We identified two HDAC inhibitors, mocetinostat and entinostat, as pan-gynecologic cancer suppressors with IC50 values within an order of magnitude of their human plasma concentrations. In addition, many active compounds identified, including the non-anticancer drugs and other compounds, diversely inhibited the growth of three gynecologic cancer cell groups and individual cancer cell lines. These newly identified compounds are valuable for further studies of new therapeutics development, synergistic drug combinations, and new target identification for gynecologic cancers. The results also provide a rationale for the personalized chemotherapeutic testing of anticancer drugs in treatment of gynecologic cancer.
Insights
Researchers screened 7914 compounds against gynecologic cancers. Two HDAC inhibitors, mocetinostat and entinostat, showed promise as broad-spectrum cancer suppressors, aiding new therapeutic development.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Heterogeneous response to chemotherapy poses a significant challenge in cancer treatment.
- Gynecologic cancers have limited small molecule therapy options, contributing to low survival rates for ovarian cancer.
- Drug resistance and late diagnosis further complicate effective treatment strategies.
Purpose of the Study:
- To profile the chemotherapeutic sensitivity of gynecologic cancers.
- To identify novel compounds and drug targets for gynecologic malignancies.
- To explore the potential for personalized chemotherapeutic approaches.
Main Methods:
- Screening of 7914 approved drugs and bioactive compounds.
- Utilizing 11 gynecologic cancer cell lines for sensitivity profiling.
- Determining IC50 values for identified compounds.
Main Results:
- Identified mocetinostat and entinostat (HDAC inhibitors) as pan-gynecologic cancer suppressors.
- Achieved IC50 values within an order of magnitude of human plasma concentrations for these inhibitors.
- Discovered diverse inhibitory effects of various compounds, including non-anticancer drugs, on gynecologic cancer cell growth.
Conclusions:
- Mocetinostat and entinostat are promising candidates for further development against gynecologic cancers.
- Newly identified compounds offer potential for new therapeutics, synergistic combinations, and target identification.
- Results support personalized chemotherapeutic testing for gynecologic cancer patients.
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