The goal of this project is to study the interaction of radiotherapy and molecularly targeted agents. This project focuses on expanding drugs that show synergy in vitro to the in vivo setting, with the goal of translation to the clinic. This is a translational project. We begin in the laboratory testing drugs in combination with radiotherapy in vitro. Once in vitro sensitivity is comfirmed then we do in vivo work with sc or ic animal models. If a drug is shown to sensitize tumor cells to radiation then we bring it to the clinic.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Investigator-Initiated Intramural Research Projects (ZIA)
Project #
1ZIASC010373-16
Application #
9344126
Study Section
Project Start
Project End
Budget Start
Budget End
Support Year
16
Fiscal Year
2016
Total Cost
Indirect Cost
Name
Clinical Sciences
Department
Type
DUNS #
City
State
Country
Zip Code
Ho, Winson S; Sizdahkhani, Saman; Hao, Shuyu et al. (2018) LB-100, a novel Protein Phosphatase 2A (PP2A) inhibitor, sensitizes malignant meningioma cells to the therapeutic effects of radiation. Cancer Lett 415:217-226
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Tandle, Anita; Camphausen, Kevin (2016) Mitotic Protein Kinase 1: Role in Spindle Assembly Checkpoint Revisited. J Cancer Clin Trials 1:
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Maachani, Uday Bhanu; Kramp, Tamalee; Hanson, Ryan et al. (2015) Targeting MPS1 Enhances Radiosensitization of Human Glioblastoma by Modulating DNA Repair Proteins. Mol Cancer Res 13:852-62
Gordon, Ira K; Lu, Jie; Graves, Christian A et al. (2015) Protein Phosphatase 2A Inhibition with LB100 Enhances Radiation-Induced Mitotic Catastrophe and Tumor Growth Delay in Glioblastoma. Mol Cancer Ther 14:1540-1547

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