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Metabolic Profiling of IDH Mutation and Malignant Progression in Infiltrating Glioma
by
Olson, Marram P.
, Phillips, Joanna J.
, Jalbert, Llewellyn E.
, Ronen, Sabrina M.
, Molinaro, Annette M.
, Williams, Aurelia
, Kurhanewicz, John
, Neill, Evan
, Elkhaled, Adam
, Berger, Mitchel S.
, Crane, Jason C.
, Chang, Susan M.
, Nelson, Sarah J.
in
13/51
/ 140/131
/ 59
/ 59/57
/ 631/67/2321
/ 639/166/985
/ Astrocytoma
/ Biopsy
/ Brain cancer
/ Brain Neoplasms - diagnosis
/ Brain Neoplasms - genetics
/ Brain Neoplasms - metabolism
/ Brain Neoplasms - therapy
/ Brain tumors
/ Choline
/ Decision making
/ Disease Progression
/ Female
/ Genotypes
/ Glioblastoma
/ Glioma
/ Glioma - diagnosis
/ Glioma - genetics
/ Glioma - metabolism
/ Glioma - therapy
/ Glutathione
/ Humanities and Social Sciences
/ Humans
/ Isocitrate dehydrogenase
/ Isocitrate Dehydrogenase - genetics
/ Male
/ Metabolism
/ Metabolites
/ Metabolome
/ Metabolomics - methods
/ multidisciplinary
/ Mutation
/ Neoplasm Grading
/ Neoplasm Staging
/ Oligodendroglioma
/ Science
/ Spectroscopy
/ Vein & artery diseases
/ γ-Aminobutyric acid
2017
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Metabolic Profiling of IDH Mutation and Malignant Progression in Infiltrating Glioma
by
Olson, Marram P.
, Phillips, Joanna J.
, Jalbert, Llewellyn E.
, Ronen, Sabrina M.
, Molinaro, Annette M.
, Williams, Aurelia
, Kurhanewicz, John
, Neill, Evan
, Elkhaled, Adam
, Berger, Mitchel S.
, Crane, Jason C.
, Chang, Susan M.
, Nelson, Sarah J.
in
13/51
/ 140/131
/ 59
/ 59/57
/ 631/67/2321
/ 639/166/985
/ Astrocytoma
/ Biopsy
/ Brain cancer
/ Brain Neoplasms - diagnosis
/ Brain Neoplasms - genetics
/ Brain Neoplasms - metabolism
/ Brain Neoplasms - therapy
/ Brain tumors
/ Choline
/ Decision making
/ Disease Progression
/ Female
/ Genotypes
/ Glioblastoma
/ Glioma
/ Glioma - diagnosis
/ Glioma - genetics
/ Glioma - metabolism
/ Glioma - therapy
/ Glutathione
/ Humanities and Social Sciences
/ Humans
/ Isocitrate dehydrogenase
/ Isocitrate Dehydrogenase - genetics
/ Male
/ Metabolism
/ Metabolites
/ Metabolome
/ Metabolomics - methods
/ multidisciplinary
/ Mutation
/ Neoplasm Grading
/ Neoplasm Staging
/ Oligodendroglioma
/ Science
/ Spectroscopy
/ Vein & artery diseases
/ γ-Aminobutyric acid
2017
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Metabolic Profiling of IDH Mutation and Malignant Progression in Infiltrating Glioma
by
Olson, Marram P.
, Phillips, Joanna J.
, Jalbert, Llewellyn E.
, Ronen, Sabrina M.
, Molinaro, Annette M.
, Williams, Aurelia
, Kurhanewicz, John
, Neill, Evan
, Elkhaled, Adam
, Berger, Mitchel S.
, Crane, Jason C.
, Chang, Susan M.
, Nelson, Sarah J.
in
13/51
/ 140/131
/ 59
/ 59/57
/ 631/67/2321
/ 639/166/985
/ Astrocytoma
/ Biopsy
/ Brain cancer
/ Brain Neoplasms - diagnosis
/ Brain Neoplasms - genetics
/ Brain Neoplasms - metabolism
/ Brain Neoplasms - therapy
/ Brain tumors
/ Choline
/ Decision making
/ Disease Progression
/ Female
/ Genotypes
/ Glioblastoma
/ Glioma
/ Glioma - diagnosis
/ Glioma - genetics
/ Glioma - metabolism
/ Glioma - therapy
/ Glutathione
/ Humanities and Social Sciences
/ Humans
/ Isocitrate dehydrogenase
/ Isocitrate Dehydrogenase - genetics
/ Male
/ Metabolism
/ Metabolites
/ Metabolome
/ Metabolomics - methods
/ multidisciplinary
/ Mutation
/ Neoplasm Grading
/ Neoplasm Staging
/ Oligodendroglioma
/ Science
/ Spectroscopy
/ Vein & artery diseases
/ γ-Aminobutyric acid
2017
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Metabolic Profiling of IDH Mutation and Malignant Progression in Infiltrating Glioma
Journal Article
Metabolic Profiling of IDH Mutation and Malignant Progression in Infiltrating Glioma
2017
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Overview
Infiltrating low grade gliomas (LGGs) are heterogeneous in their behavior and the strategies used for clinical management are highly variable. A key factor in clinical decision-making is that patients with mutations in the
isocitrate dehydrogenase 1
and
2 (IDH1/2
) oncogenes are more likely to have a favorable outcome and be sensitive to treatment. Because of their relatively long overall median survival, more aggressive treatments are typically reserved for patients that have undergone malignant progression (MP) to an anaplastic glioma or secondary glioblastoma (GBM). In the current study,
ex vivo
metabolic profiles of image-guided tissue samples obtained from patients with newly diagnosed and recurrent LGG were investigated using proton high-resolution magic angle spinning spectroscopy (
1
H HR-MAS). Distinct spectral profiles were observed for lesions with
IDH-
mutated genotypes, between astrocytoma and oligodendroglioma histologies, as well as for tumors that had undergone MP. Levels of 2-hydroxyglutarate (2HG) were correlated with increased mitotic activity, axonal disruption, vascular neoplasia, and with several brain metabolites including the choline species, glutamate, glutathione, and GABA. The information obtained in this study may be used to develop strategies for
in vivo
characterization of infiltrative glioma, in order to improve disease stratification and to assist in monitoring response to therapy.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
/ 140/131
/ 59
/ 59/57
/ Biopsy
/ Brain Neoplasms - metabolism
/ Choline
/ Female
/ Glioma
/ Humanities and Social Sciences
/ Humans
/ Isocitrate Dehydrogenase - genetics
/ Male
/ Mutation
/ Science
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