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A High-Content Screen for C/EBPα Expression Identifies Novel Therapeutic Agents in Dedifferentiated Liposarcoma
Christina V Angeles1, Ana Velez1, Jordan Rios1
1Sarcoma Biology Laboratory, Department of Surgery, Memorial Sloan Kettering Cancer Center, New York, New York.
Purpose:
Dedifferentiated liposarcoma (DDLS), one of the most common and aggressive sarcomas, infrequently responds to chemotherapy. DDLS survival and growth depend on underexpression of C/EBPα, a tumor suppressor and transcriptional regulator controlling adipogenesis. We sought to screen and prioritize candidate drugs that increase C/EBPα expression and may therefore serve as differentiation-based therapies for DDLS.
Experimental Design:
We screened known bioactive compounds for the ability to restore C/EBPα expression and inhibit proliferation selectively in two DDLS cell lines but not in normal adipose-derived stem cells (ASC). Selected hits' activity was validated, and the mechanism of the most potent, SN-38, was investigated. The in vivo efficacy of irinotecan, the prodrug of SN-38, was evaluated in DDLS xenograft models.
Results:
Of 3,119 compounds, screen criteria were met by 19. Validation experiments confirmed the DDLS selectivity of deguelin, emetine, and SN-38 and showed that they induce apoptosis in DDLS cells. SN-38 had the lowest IC50 (approximately 10 nmol/L), and its pro-apoptotic effects were countered by knockdown of CEBPA but not of TP53. Irinotecan significantly inhibited tumor growth at well-tolerated doses, induced nuclear expression of C/EBPα, and inhibited HIF1α expression in DDLS patient-derived and cancer cell line xenograft models. In contrast, doxorubicin, the most common treatment for nonresectable DDLS, reduced tumor growth by 30% to 50% at a dose that caused weight loss.
Conclusions:
This high-content screen revealed potential treatments for DDLS. These include irinotecan, which induces apoptosis of DDLS cells in a C/EBPα-dependent, p53-independent manner, and should be clinically evaluated in patients with advanced DDLS.
Insights
This study screened drugs to treat dedifferentiated liposarcoma (DDLS). Irinotecan, a C/EBPα-dependent therapy, effectively inhibited DDLS tumor growth and warrants clinical evaluation.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Dedifferentiated liposarcoma (DDLS) is an aggressive sarcoma with limited chemotherapy response.
- DDLS growth is linked to reduced C/EBPα, a tumor suppressor that regulates adipogenesis.
- Targeting C/EBPα offers a potential differentiation-based therapeutic strategy for DDLS.
Purpose of the Study:
- To screen and identify compounds that restore C/EBPα expression in DDLS.
- To prioritize drug candidates for differentiation-based DDLS therapy.
- To evaluate the efficacy and mechanism of novel DDLS treatments.
Main Methods:
- Screened 3,119 bioactive compounds for selective C/EBPα induction and DDLS cell proliferation inhibition.
- Validated drug candidates, including SN-38 and its prodrug irinotecan.
- Assessed in vivo efficacy of irinotecan in DDLS xenograft models.
Main Results:
- Nineteen compounds met screening criteria; deguelin, emetine, and SN-38 showed DDLS selectivity and induced apoptosis.
- SN-38 demonstrated potent activity (IC50 ~10 nmol/L) and its effects were C/EBPα-dependent.
- Irinotecan significantly inhibited DDLS tumor growth in vivo, upregulating C/EBPα and downregulating HIF1α.
Conclusions:
- High-content screening identified potential DDLS treatments.
- Irinotecan induces C/EBPα-dependent apoptosis in DDLS cells.
- Irinotecan warrants clinical evaluation for advanced DDLS patients.
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