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Targeting survivin as a potential new treatment for chondrosarcoma of bone
Y de Jong1, J G van Oosterwijk1, A B Kruisselbrink1
1Department of Pathology, Leiden University Medical Center, Leiden, The Netherlands.
Abstract:
Chondrosarcomas are malignant cartilage-forming bone tumors, which are intrinsically resistant to chemo- and radiotherapy, leaving surgical removal as the only curative treatment option. Therefore, our aim was to identify genes involved in chondrosarcoma cell survival that could serve as a target for therapy. siRNA screening for 51 apoptosis-related genes in JJ012 chondrosarcoma cells identified BIRC5, encoding survivin, as essential for chondrosarcoma survival. Using immunohistochemistry, nuclear as well as cytoplasmic survivin expression was analyzed in 207 chondrosarcomas of different subtypes. Nuclear survivin has been implicated in cell-cycle regulation while cytoplasmic localization is important for its anti-apoptotic function. RT-PCR was performed to determine expression of the most common survivin isoforms. Sensitivity to YM155, a survivin inhibitor currently in phase I/II clinical trial for other tumors, was examined in 10 chondrosarcoma cell lines using viability assay, apoptosis assay and cell-cycle analysis. Survivin expression was found in all chondrosarcoma patient samples. Higher expression of nuclear and cytoplasmic survivin was observed with increasing histological grade in central chondrosarcomas. Inhibition of survivin using YM155 showed that especially TP53 mutant cell lines were sensitive, but no caspase 3/7 or PARP cleavage was observed. Rather, YM155 treatment resulted in a block in S phase in two out of three chondrosarcoma cell lines, indicating that survivin is more involved in cell-cycle regulation than in apoptosis. Thus, survivin is important for chondrosarcoma survival and chondrosarcoma patients might benefit from survivin inhibition using YM155, for which TP53 mutational status can serve as a predictive biomarker.
Insights
Survivin (BIRC5) is crucial for chondrosarcoma survival and may be a therapeutic target. Inhibition with YM155 shows promise, with TP53 mutation status predicting patient response.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Chondrosarcomas are malignant bone tumors resistant to conventional therapies.
- Surgical resection is the primary treatment, highlighting the need for novel therapeutic targets.
- Survivin (BIRC5) is a key protein involved in cell survival and proliferation.
Purpose of the Study:
- To identify genes critical for chondrosarcoma cell survival.
- To evaluate survivin as a potential therapeutic target in chondrosarcoma.
- To assess the efficacy of the survivin inhibitor YM155 in chondrosarcoma models.
Main Methods:
- siRNA screening of apoptosis-related genes in chondrosarcoma cells.
- Immunohistochemical analysis of survivin expression in patient samples.
- RT-PCR for survivin isoforms and cell-based assays (viability, apoptosis, cell cycle) with YM155 treatment.
Main Results:
- Survivin (BIRC5) was identified as essential for chondrosarcoma cell survival.
- Survivin expression, both nuclear and cytoplasmic, correlated with higher tumor grade.
- YM155 inhibited chondrosarcoma cell viability, primarily by inducing S-phase cell cycle arrest, particularly in TP53-mutant lines.
Conclusions:
- Survivin plays a significant role in chondrosarcoma cell-cycle regulation and survival.
- Survivin inhibition with YM155 presents a potential therapeutic strategy for chondrosarcoma.
- TP53 mutational status may serve as a predictive biomarker for YM155 treatment response.
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