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Clinical usefulness of 2-hydroxyglutarate as a biomarker in IDH-mutant chondrosarcoma
Makoto Nakagawa1,2,3, Masayuki Yamaguchi4, Makoto Endo2
1Department of Musculoskeletal Oncology and Rehabilitation, National Cancer Center Hospital, Tokyo, Japan.
Background:
Chondrosarcoma is a common form of malignant bone tumor with limited treatment options. Approximately half of chondrosarcomas harbor gain-of-function mutations in isocitrate dehydrogenase (IDH), and mutant IDH produces 2-hydroxyglutarate (2-HG), which is an oncometabolite that contributes to malignant transformation. Therefore, inhibiting 2-HG production is a novel and promising treatment for advanced chondrosarcoma. 2-HG is also expected to be a useful biomarker for the diagnosis and treatment of IDH-mutant tumors. However, few studies have confirmed this using chondrosarcoma clinical specimens. Non-invasive monitoring of 2-HG levels is useful to infer that mutant IDH inhibitors reach therapeutic targets and to confirm their therapeutic efficacy in clinical practice.
Methods:
To evaluate the clinical utility of 2-HG as a surrogate biomarker for diagnosis and therapeutic efficacy, we measured intra-tumor and serum levels of 2-HG using frozen tissues and peripheral blood from patients with chondrosarcoma. We also developed a non-invasive method to detect intra-tumor 2-HG signals in vivo using magnetic resonance spectroscopy (MRS).
Results:
Both intratumoral and serum 2-HG levels were significantly elevated in IDH-mutant tumors, and these levels correlated with decreased survival. Furthermore, we detected intratumoral 2-HG peaks using MR spectroscopy in a xenograft model of IDH-mutant chondrosarcoma, and observed that 2-HG peak signals disappeared after administering an inhibitor of mutant IDH1.
Conclusions:
Our findings suggest that both intratumoral and serum 2-HG levels represent potentially useful biomarkers for IDH-mutant tumors and that the 2-HG signal in MR spectra has potential value as a non-invasive biomarker. Taken together, these findings may positively impact the clinical development of mutant IDH inhibitors for the treatment of advanced chondrosarcoma.
Insights
Elevated 2-hydroxyglutarate (2-HG) in IDH-mutant chondrosarcoma indicates poor survival. Non-invasive magnetic resonance spectroscopy can detect 2-HG, aiding diagnosis and monitoring treatment response.
Area of Science:
- Oncology
- Biochemistry
- Medical Imaging
Background:
- Chondrosarcoma, a common bone cancer, has limited treatment options.
- Mutations in isocitrate dehydrogenase (IDH) lead to 2-hydroxyglutarate (2-HG) production, an oncometabolite driving cancer progression.
- Targeting 2-HG is a promising therapeutic strategy for advanced chondrosarcoma.
Purpose of the Study:
- To assess the clinical utility of 2-HG as a biomarker for diagnosing IDH-mutant chondrosarcoma.
- To evaluate 2-HG levels as an indicator of therapeutic efficacy for mutant IDH inhibitors.
- To develop a non-invasive method for detecting intra-tumor 2-HG.
Main Methods:
- Measured intra-tumor and serum 2-HG levels in chondrosarcoma patients.
- Utilized frozen tissues and peripheral blood samples for 2-HG quantification.
- Developed and applied magnetic resonance spectroscopy (MRS) for in vivo detection of intra-tumor 2-HG.
Main Results:
- Significantly elevated intra-tumor and serum 2-HG levels were observed in IDH-mutant chondrosarcoma.
- Higher 2-HG levels correlated with decreased patient survival.
- MRS successfully detected intra-tumor 2-HG signals in a xenograft model, which diminished after mutant IDH inhibitor treatment.
Conclusions:
- Intra-tumor and serum 2-HG levels are potential biomarkers for IDH-mutant tumors.
- MR spectroscopy detection of 2-HG shows promise as a non-invasive biomarker.
- These findings support the clinical development of mutant IDH inhibitors for chondrosarcoma treatment.
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