Rapid detection of IDH mutations in gliomas by intraoperative mass spectrometry

Author:

Hua Wei12345,Zhang Wenpeng6,Brown Hannah7,Wu Junhan6,Fang Xinqi12345,Shahi Mahdiyeh7ORCID,Chen Rong7,Zhang Haoyue6,Jiao Bin3,Wang Nan8,Xu Hao12345,Fu Minjie12345,Wang Xiaowen12345,Zhang Jinsen12345,Zhang Xin12345,Wang Qijun12345,Zhu Wei12345,Ye Dan9,Garcia Diogo Moniz10,Chaichana Kaisorn10,Cooks R. Graham7ORCID,Ouyang Zheng6,Mao Ying12345,Quinones-Hinojosa Alfredo10ORCID

Affiliation:

1. Department of Neurosurgery, Huashan Hospital, Fudan University, Shanghai 200040, China

2. National Center for Neurological Disorders, Shanghai 200040, China

3. Shanghai Key Laboratory of Brain Function Restoration and Neural Regeneration, Shanghai 200040, China

4. Neurosurgical Institute of Fudan University, Shanghai 200040, China

5. Shanghai Clinical Medical Center of Neurosurgery, Shanghai 200040, China

6. State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instrument, Tsinghua University, Beijing 100084, China

7. Department of Chemistry, Purdue University, West Lafayette, IN 47907

8. PurSpecTechnologies, Beijing 100084, China

9. The Molecular and Cell Biology Lab, Institute of Biomedical Sciences, Shanghai Medical College, Fudan University, Shanghai 200232, China

10. Department of Neurosurgery, Mayo Clinic, Jacksonville, FL 32224

Abstract

The development and performance of two mass spectrometry (MS) workflows for the intraoperative diagnosis of isocitrate dehydrogenase (IDH) mutations in glioma is implemented by independent teams at Mayo Clinic, Jacksonville, and Huashan Hospital, Shanghai. The infiltrative nature of gliomas makes rapid diagnosis necessary to guide the extent of surgical resection of central nervous system (CNS) tumors. The combination of tissue biopsy and MS analysis used here satisfies this requirement. The key feature of both described methods is the use of tandem MS to measure the oncometabolite 2-hydroxyglutarate (2HG) relative to endogenous glutamate (Glu) to characterize the presence of mutant tumor. The experiments i) provide IDH mutation status for individual patients and ii) demonstrate a strong correlation of 2HG signals with tumor infiltration. The measured ratio of 2HG to Glu correlates with IDH-mutant (IDH-mut) glioma ( P < 0.0001) in the tumor core data of both teams. Despite using different ionization methods and different mass spectrometers, comparable performance in determining IDH mutations from core tumor biopsies was achieved with sensitivities, specificities, and accuracies all at 100%. None of the 31 patients at Mayo Clinic or the 74 patients at Huashan Hospital were misclassified when analyzing tumor core biopsies. Robustness of the methodology was evaluated by postoperative re-examination of samples. Both teams noted the presence of high concentrations of 2HG at surgical margins, supporting future use of intraoperative MS to monitor for clean surgical margins. The power of MS diagnostics is shown in resolving contradictory clinical features, e.g., in distinguishing gliosis from IDH-mut glioma.

Funder

NIH IMAT

National R&D Program of China

National Natural Science Foundation of China

the Shanghai Development and Reform Commission Major Project

the Shanghai Hospital Development Center Major Special Disease Cohort Database and Biological Sample Database Construction Project

Publisher

Proceedings of the National Academy of Sciences

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