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Updated: May 12, 2026

A 5-mC Dot Blot Assay Quantifying the DNA Methylation Level of Chondrocyte Dedifferentiation In Vitro
Published on: May 17, 2017
Chordoma characterization of significant changes of the DNA methylation pattern
Beate Rinner1, Andreas Weinhaeusel, Birgit Lohberger
1Center for Medical Research, Medical University Graz, Graz, Austria. beate.rinner@medunigraz.at
Abstract:
Chordomas are rare mesenchymal tumors occurring exclusively in the midline from clivus to sacrum. Early tumor detection is extremely important as these tumors are resistant to chemotherapy and irradiation. Despite continuous research efforts surgical excision remains the main treatment option. Because of the often challenging anatomic location early detection is important to enable complete tumor resection and to reduce the high incidence of local recurrences. The aim of this study was to explore whether DNA methylation, a well known epigenetic marker, may play a role in chordoma development and if hypermethylation of specific CpG islands may serve as potential biomarkers correlated with SNP analyses in chordoma. The study was performed on tumor samples from ten chordoma patients. We found significant genomic instability by Affymetrix 6.0. It was interesting to see that all chordomas showed a loss of 3q26.32 (PIK 3CA) and 3q27.3 (BCL6) thus underlining the potential importance of the PI3K pathway in chordoma development. By using the AITCpG360 methylation assay we elucidated 20 genes which were hyper/hypomethylated compared to normal blood. The most promising candidates were nine hyper/hypomethylated genes C3, XIST, TACSTD2, FMR1, HIC1, RARB, DLEC1, KL, and RASSF1. In summary, we have shown that chordomas are characterized by a significant genomic instability and furthermore we demonstrated a characteristic DNA methylation pattern. These findings add new insights into chordoma development, diagnosis and potential new treatment options.
Insights
This study reveals significant genomic instability and a distinct DNA methylation pattern in chordoma tumors. These findings offer new insights into chordoma development and potential diagnostic biomarkers.
Area of Science:
- Oncology
- Epigenetics
- Genomics
Background:
- Chordomas are rare midline tumors resistant to conventional therapies.
- Early detection is crucial for complete surgical resection and reducing recurrence.
- Understanding chordoma development may reveal new therapeutic targets.
Purpose of the Study:
- To investigate the role of DNA methylation in chordoma development.
- To identify potential DNA methylation biomarkers for chordoma diagnosis.
- To explore genomic alterations in chordoma.
Main Methods:
- Analysis of tumor samples from ten chordoma patients.
- Genomic instability assessment using Affymetrix 6.0.
- DNA methylation profiling using the AITCpG360 assay.
Main Results:
- Significant genomic instability observed in all chordoma samples.
- Consistent loss of 3q26.32 (PIK 3CA) and 3q27.3 (BCL6) identified.
- A characteristic DNA methylation pattern involving 20 genes, with nine promising candidates, was elucidated.
Conclusions:
- Chordomas exhibit significant genomic instability and a unique DNA methylation profile.
- Identified methylation patterns may serve as diagnostic biomarkers.
- Findings contribute to understanding chordoma pathogenesis and potential treatment strategies.
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