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Identification of BET Inhibitors (BETi) Against Solitary Fibrous Tumor (SFT) Through High-Throughput Screening (HTS)
Abstract:
Cancers, especially fusion oncoprotein (FO)-driven hematological cancers and sarcomas, often develop from a low number of key mutations. Solitary Fibrous Tumor (SFT) is a rare mesenchymal tumor driven by the NAB2-STAT6 oncofusion gene. Currently, the treatment options for SFT remain limited, with anti-angiogenic drugs providing only partial responses and an average survival of two years. To address this challenge, we constructed SFT cell models harboring specific NAB2-STAT6 fusion transcripts using the CRISPR (Clustered Regularly Interspaced Short Palindromic Repeats) technology. High-throughput drug screens demonstrated that the BET inhibitor Mivebresib can differentially reduce proliferation in SFT cell models. Subsequently, BET inhibitors Mivebresib and BMS-986158 efficiently reduced tumor growth in an SFT patient-derived xenograft (PDX) animal model. Furthermore, our data showed that NAB2-STAT6 fusions may lead to higher levels of DNA damage in SFTs. Consequently, combining BET inhibitors with PARP (Poly (ADP-ribose) polymerase) or ATR inhibitors significantly enhanced anti-proliferative effects in SFT cells. Taken together, our study established BET inhibitors Mivebresib and BMS-986158 as promising anti-SFT agents.
Insights
BET inhibitors Mivebresib and BMS-986158 show promise for treating Solitary Fibrous Tumors (SFT). These drugs effectively reduced tumor growth in models, offering new hope for this rare cancer with limited treatment options.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Solitary Fibrous Tumor (SFT) is a rare cancer driven by the NAB2-STAT6 oncofusion.
- Current SFT treatments, like anti-angiogenic drugs, offer limited efficacy and poor survival rates.
Purpose of the Study:
- To investigate novel therapeutic strategies for SFT.
- To evaluate the efficacy of BET inhibitors in preclinical SFT models.
Main Methods:
- CRISPR technology was used to create SFT cell models with NAB2-STAT6 fusions.
- High-throughput drug screening identified BET inhibitors.
- Efficacy was tested in SFT cell lines and a patient-derived xenograft (PDX) model.
- Combination therapies with PARP or ATR inhibitors were explored.
Main Results:
- The BET inhibitor Mivebresib reduced proliferation in SFT cell models.
- Mivebresib and BMS-986158 significantly inhibited tumor growth in an SFT PDX model.
- NAB2-STAT6 fusions may increase DNA damage in SFT.
- Combining BET inhibitors with PARP or ATR inhibitors enhanced anti-proliferative effects.
Conclusions:
- BET inhibitors Mivebresib and BMS-986158 are potential therapeutic agents for SFT.
- Targeting DNA damage pathways alongside BET inhibition may improve SFT treatment outcomes.
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