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Targeting Cyclin-Dependent Kinases in Synovial Sarcoma: Palbociclib as a Potential Treatment for Synovial Sarcoma
Myrella Vlenterie1, Melissa H S Hillebrandt-Roeffen2, Esther W M Schaars2
1Department of Medical Oncology, Radboud University Medical Center, Nijmegen, The Netherlands. myrella.vlenterie@radboudumc.nl.
Background:
In synovial sarcomas alterations in the cyclin D1-CDK4/6-Rb axis have been described. Also, β-catenin, a cyclin D1 regulator, is often overexpressed. Additionally, studies have shown that the t(X;18) translocation influences tumor behavior partly through cyclin D1 activation. We investigated how alterations in the cyclin D1-CDK4/6-Rb axis impact prognosis and studied effects of targeting this axis with the CDK4/6 inhibitor palbociclib.
Methods:
Synovial sarcoma samples (n = 43) were immunohistochemically stained for β-catenin, cyclin D1, p16, p21, p27, Rb, and phospho-Rb. Fluorescent in situ hybridization (FISH) was performed to detect CCND1 amplification or translocation. In 4 synovial sarcoma cell lines sensitivity to palbociclib was investigated using cell viability assays, and effects on the sensitive cell lines were evaluated on protein level and by cell cycle arrest.
Results:
Expression of nuclear phospho-Rb and nuclear β-catenin in the patient samples was associated with poor survival. FISH showed a sporadic translocation of CCND1 in a subset of tumors. An 8-fold CCND1 amplification was found in 1 cell line, but not in the patient samples investigated. Palbociclib effectively inhibited Rb-phosphorylation in 3 cell lines, resulting in an induction of a G1 arrest and proliferation block.
Conclusions:
In this series nuclear phospho-Rb and nuclear β-catenin expression were negative prognostic factors. In vitro data suggest that palbociclib may be a potential treatment for a subset of synovial sarcoma patients. Whether this effect can be enhanced by combination treatment deserves further preclinical investigations.
Insights
Nuclear phospho-Rb and β-catenin expression indicate poor prognosis in synovial sarcoma. The CDK4/6 inhibitor palbociclib shows potential for treating a subset of patients by blocking cell proliferation.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Alterations in the cyclin D1-CDK4/6-Rb pathway are implicated in synovial sarcoma.
- Overexpression of β-catenin, a cyclin D1 regulator, is common.
- The t(X;18) translocation may influence tumor behavior via cyclin D1 activation.
Purpose of the Study:
- To investigate the prognostic impact of the cyclin D1-CDK4/6-Rb axis in synovial sarcoma.
- To evaluate the efficacy of the CDK4/6 inhibitor palbociclib in synovial sarcoma.
Main Methods:
- Immunohistochemical staining of 43 synovial sarcoma samples for key proteins (β-catenin, cyclin D1, Rb, etc.).
- Fluorescent in situ hybridization (FISH) to detect CCND1 alterations.
- In vitro sensitivity assays of palbociclib in synovial sarcoma cell lines.
Main Results:
- Nuclear phospho-Rb and nuclear β-catenin expression correlated with poor survival.
- FISH detected CCND1 translocations in a subset of tumors.
- Palbociclib inhibited Rb-phosphorylation, induced G1 cell cycle arrest, and blocked proliferation in sensitive cell lines.
Conclusions:
- Nuclear phospho-Rb and β-catenin are negative prognostic factors in synovial sarcoma.
- Palbociclib demonstrates potential as a targeted therapy for a subset of patients.
- Further preclinical studies are warranted to explore combination treatments.
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