Interrogation of IDH1 Status in Gliomas by Fourier Transform Infrared Spectroscopy

Mutations in the isocitrate dehydrogenase 1 ( ) gene are found in a high proportion of diffuse gliomas. The presence of the mutation is a valuable diagnostic, prognostic and predictive biomarker for the management of patients with glial tumours. Techniques involving vibrational spectroscopy, e.g., F...

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Veröffentlicht in:Cancers 2020-12, Vol.12 (12), p.3682
Hauptverfasser: Cameron, James M, Conn, Justin J A, Rinaldi, Christopher, Sala, Alexandra, Brennan, Paul M, Jenkinson, Michael D, Caldwell, Helen, Cinque, Gianfelice, Syed, Khaja, Butler, Holly J, Hegarty, Mark G, Palmer, David S, Baker, Matthew J
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Sprache:eng
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Zusammenfassung:Mutations in the isocitrate dehydrogenase 1 ( ) gene are found in a high proportion of diffuse gliomas. The presence of the mutation is a valuable diagnostic, prognostic and predictive biomarker for the management of patients with glial tumours. Techniques involving vibrational spectroscopy, e.g., Fourier transform infrared (FTIR) spectroscopy, have previously demonstrated analytical capabilities for cancer detection, and have the potential to contribute to diagnostics. The implementation of FTIR microspectroscopy during surgical biopsy could present a fast, label-free method for molecular genetic classification. For example, the rapid determination of status in a patient with a glioma diagnosis could inform intra-operative decision-making between alternative surgical strategies. In this study, we utilized synchrotron-based FTIR microanalysis to probe tissue microarray sections from 79 glioma patients, and distinguished the positive class ( -mutated) from the -wildtype glioma, with a sensitivity and specificity of 82.4% and 83.4%, respectively. We also examined the ability of attenuated total reflection (ATR)-FTIR spectroscopy in detecting the biomolecular events and global epigenetic and metabolic changes associated with mutations in the enzyme, in blood serum samples collected from an additional 72 brain tumour patients. Centrifugal filtration enhanced the diagnostic ability of the classification models, with balanced accuracies up to ~69%. Identification of the molecular status from blood serum prior to biopsy could further direct some patients to alternative treatment strategies.
ISSN:2072-6694
2072-6694
DOI:10.3390/cancers12123682