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High-Throughput Screening of Myxoid Liposarcoma Cell Lines: Survivin Is Essential for Tumor Growth
Marieke A de Graaff1, Shruti Malu2, Irma Guardiola2
1Department of Pathology, Leiden University Medical Center, Leiden, the Netherlands.
Abstract:
Myxoid liposarcoma (MLS) is a soft tissue sarcoma characterized by a recurrent t(12;16) translocation. Although tumors are initially radio- and chemosensitive, the management of inoperable or metastatic MLS can be challenging. Therefore, our aim was to identify novel targets for systemic therapy. We performed an in vitro high-throughput drug screen using three MLS cell lines (402091, 1765092, DL-221), which were treated with 273 different drugs at four different concentrations. Cell lines and tissue microarrays were used for validation. As expected, all cell lines revealed a strong growth inhibition to conventional chemotherapeutic agents, such as anthracyclines and taxanes. A good response was observed to compounds interfering with Src and the mTOR pathway, which are known to be affected in these tumors. Moreover, BIRC5 was important for MLS survival because a strong inhibitory effect was seen at low concentration using the survivin inhibitor YM155, and siRNA for BIRC5 decreased cell viability. Immunohistochemistry revealed abundant expression of survivin restricted to the nucleus in all 32 tested primary tumor specimens. Inhibition of survivin in 402-91 and 1765-92 by YM155 increased the percentage S-phase but did not induce apoptosis, which warrants further investigation before application in the treatment of metastatic MLS. Thus, using a 273-compound drug screen, we confirmed previously identified targets (mTOR, Src) in MLS and demonstrate survivin as essential for MLS survival.
Insights
A high-throughput drug screen identified survivin as essential for myxoid liposarcoma (MLS) survival, offering a potential new target for systemic therapy in advanced cases.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Myxoid liposarcoma (MLS) is a soft tissue sarcoma with a characteristic t(12;16) translocation.
- While initially responsive to treatment, managing inoperable or metastatic MLS remains challenging.
- Novel therapeutic targets are needed for systemic therapy in advanced MLS.
Purpose of the Study:
- To identify novel therapeutic targets for systemic therapy in myxoid liposarcoma.
- To evaluate the efficacy of various compounds against MLS cell lines.
- To investigate the role of survivin (BIRC5) in MLS survival.
Main Methods:
- In vitro high-throughput drug screening of 273 compounds across three MLS cell lines at four concentrations.
- Validation using cell lines and tissue microarrays.
- Immunohistochemistry for survivin expression in primary tumor specimens and siRNA-mediated knockdown of BIRC5.
Main Results:
- MLS cell lines showed sensitivity to conventional chemotherapeutics (anthracyclines, taxanes).
- Compounds targeting Src and mTOR pathways demonstrated efficacy.
- Survivin inhibition via YM155 and BIRC5 siRNA significantly reduced cell viability.
- Abundant nuclear survivin expression was observed in primary MLS tumors.
Conclusions:
- Previously identified targets (mTOR, Src) were confirmed in MLS.
- Survivin (BIRC5) is essential for MLS cell survival.
- Survivin inhibition warrants further investigation for metastatic MLS treatment, despite not inducing apoptosis in initial tests.
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