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Updated: Aug 19, 2025

Establishment of a Primary Culture of Patient-derived Soft Tissue Sarcoma
Published on: April 11, 2018
Genomic alterations and clinical outcomes in patients with dedifferentiated liposarcoma
Megan H Jagosky1, Colin J Anderson2, James T Symanowski3
1Department of Solid Tumor Oncology, Levine Cancer Institute, Carolinas Medical Center, Atrium Health, Charlotte, North Carolina, USA.
Purpose:
Patients with unresectable dedifferentiated liposarcoma (DDLPS) have poor overall outcomes. Few genomic alterations have been identified with limited therapeutic options.
Experimental Design:
Patients treated at Levine Cancer Institute with DDLPS were identified. Next generation sequencing (NGS), immunohistochemistry (IHC), and fluorescence in situ hybridization (FISH) testing were performed on tumor tissue collected at diagnosis or recurrence/progression. Confirmation of genomic alterations was performed by orthologous methods and correlated with clinical outcomes. Univariate Cox regression was used to identify genomic alterations associated with clinical outcomes.
Results:
Thirty-eight DDLPS patients with adequate tissue for genomic profiling and clinical data were identified. Patient characteristics included: median age at diagnosis (66 years), race (84.2% Caucasian), and median follow-up time for the entire cohort was 12.1 years with a range from approximately 3.5 months to 14.1 years. Genes involved in cell cycle regulation, including MDM2 (74%) CDK4 (65%), and CDKN2A (23%), were amplified along with WNT/Notch pathway markers: HMGA2, LGR5, MCL1, and CALR (19%-29%). While common gene mutations were identified, PDE4DIP and FOXO3 were also mutated in 47% and 34% of patients, respectively, neither of which have been previously reported. FOXO3 was associated with improved overall survival (OS) (HR 0.37; p = 0.043) along with MAML2 (HR 0.30; p = 0.040). Mutations that portended worse prognosis included RECQL4 (disease-specific survival HR 4.67; p = 0.007), MN1 (OS HR = 3.38; p = 0.013), NOTCH1 (OS HR 2.28, p = 0.086), and CNTRL (OS HR 2.42; p = 0.090).
Conclusions:
This is one of the largest retrospective reports analyzing genomic aberrations in relation to clinical outcomes for patients with DDLPS. Our results suggest therapies targeting abnormalities should be explored and confirmation of prognostic markers is needed. Dedifferentiated liposarcoma is one of the most common subtypes of soft tissue sarcoma yet little is known of its molecular aberrations and possible impact on outcomes. The work presented here is an evaluation of genetic abnormalities among a population of patients with dedifferentiated liposarcoma and how they corresponded with survival and risk of metastases. There were notable gene mutations and amplifications commonly found, some of which had interesting prognostic implications.
Insights
Genomic profiling of dedifferentiated liposarcoma (DDLPS) revealed novel mutations. FOXO3 mutations correlate with improved overall survival, while RECQL4 mutations indicate a worse prognosis in DDLPS patients.
Area of Science:
- Oncology
- Genomics
- Molecular Biology
Background:
- Dedifferentiated liposarcoma (DDLPS) is a rare soft tissue sarcoma with limited therapeutic options and poor patient outcomes.
- Understanding the molecular landscape of DDLPS is crucial for developing targeted therapies and improving patient survival.
Purpose of the Study:
- To identify and analyze genomic alterations in a cohort of patients with unresectable dedifferentiated liposarcoma.
- To correlate identified genomic aberrations with clinical outcomes, including overall survival and risk of metastasis.
Main Methods:
- Retrospective analysis of 38 DDLPS patients treated at Levine Cancer Institute.
- Comprehensive genomic profiling using next-generation sequencing (NGS), immunohistochemistry (IHC), and fluorescence in situ hybridization (FISH).
- Univariate Cox regression analysis to assess the association between genomic alterations and clinical outcomes.
Main Results:
- Commonly amplified genes included MDM2 (74%), CDK4 (65%), and CDKN2A (23%).
- Novel mutations in PDE4DIP (47%) and FOXO3 (34%) were identified.
- FOXO3 and MAML2 mutations were associated with improved overall survival (OS), while RECQL4, MN1, NOTCH1, and CNTRL mutations indicated a worse prognosis.
Conclusions:
- This study provides one of the largest analyses of genomic aberrations in DDLPS and their correlation with clinical outcomes.
- The findings highlight the prognostic significance of specific genetic alterations, such as FOXO3 and RECQL4.
- Further research is warranted to explore targeted therapies based on these genomic findings and to validate prognostic markers.

