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Updated: Jun 15, 2026

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Published on: January 28, 2014
Update on the cytogenetics and molecular genetics of chordoma
Lidia Larizza1, Pietro Mortini, Paola Riva
1Department of Biology and Genetics for Medical Sciences, University of Milan, Italy. lidia.larizza@unimi.it.
Abstract:
Chordoma is a rare mesenchymal tumour of complex biology for which only histologic and immunohistochemical criteria have been defined, but no biomarkers predicting the clinical outcome and response to treatment have yet been recognised. We herein review the interdisciplinary information achieved by epidemiologists, neurosurgeons and basic scientists on chordoma, usually a sporadic tumour, which also includes a small fraction of familial cases. Main focus is on the current knowledge of the genetic alterations which might pinpoint candidate genes and molecular mechanisms shared by sporadic and familiar chordomas. Due to the scarcity of the investigated tumour specimens and the multiple chromosome abnormalities found in tumours with aberrant karyotypes, conventional cytogenetics and Fluorescence In Situ Hybridization failed to detect recurrent chordoma-specific chromosomal rearrangements. Genome-wide approaches such as Comparative Genomic Hybridization (CGH) are yet at an initial stage of application and should be implemented using BAC arrays either genome-wide or targeting selected genomic regions, disclosed by Loss of Heterozygosity (LOH) studies. An LOH region was shown by a systematic study on a consistent number of chordomas to encompass 1p36, a genomic interval where a candidate gene was suggested to reside. Despite the rarity of multiplex families with chordoma impaired linkage studies, a chordoma locus could be mapped to chromosome 7q33 by positive lod score in three independent families. The role in chordomagenesis of the Tuberous Sclerosis Complex (TSC) genes has been proved, but the extent of involvement of TSC1 and TSC2 oncosuppressors in chordoma remains to be assessed. In spite of the scarce knowledge on the genetics and molecular biology of chordoma, recent initiation of clinical trials using molecular-targeted therapy, should validate new molecular targets and predict the efficacy of a given therapy. Comparative genetic and biomolecular studies should enhance the molecular taxonomy of chordoma which might have a prognostic significance and better orient the therapeutic options.
Insights
Chordoma, a rare tumor, lacks biomarkers for predicting outcomes. Research is exploring genetic alterations, including LOH on 1p36 and a locus on 7q33, to identify therapeutic targets and improve treatment strategies.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Chordoma is a rare mesenchymal tumor with undefined biomarkers for clinical outcome and treatment response.
- Understanding chordoma's complex biology requires integrating epidemiological, surgical, and basic science insights.
- Both sporadic and familial cases of chordoma are recognized, necessitating research into shared genetic mechanisms.
Purpose of the Study:
- To review current knowledge on genetic alterations in chordoma, identifying potential candidate genes and molecular pathways.
- To explore the utility of advanced genomic approaches like Comparative Genomic Hybridization (CGH) and Loss of Heterozygosity (LOH) studies.
- To summarize findings from linkage studies in familial chordoma cases and investigate the role of Tuberous Sclerosis Complex (TSC) genes.
Main Methods:
- Review of interdisciplinary information from epidemiologists, neurosurgeons, and basic scientists.
- Analysis of genetic alterations using conventional cytogenetics, Fluorescence In Situ Hybridization (FISH), and Genome-wide approaches (CGH).
- Loss of Heterozygosity (LOH) studies and linkage analysis in familial chordoma cases.
Main Results:
- Conventional cytogenetics and FISH have not identified recurrent chordoma-specific chromosomal rearrangements.
- LOH studies identified a critical region at 1p36, suggesting a candidate gene.
- Linkage analysis mapped a chordoma locus to chromosome 7q33 in three independent families.
- The involvement of Tuberous Sclerosis Complex (TSC) genes in chordomagenesis is suggested, though the extent requires further assessment.
Conclusions:
- Despite challenges due to limited specimen availability and complex chromosomal abnormalities, genetic research is advancing chordoma understanding.
- Identification of LOH regions and familial loci provides crucial insights into chordoma's genetic landscape.
- Ongoing research and clinical trials targeting molecular pathways hold promise for improved diagnostics and therapeutics for chordoma.
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