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Characterization of Metabolic, Diffusion, and Perfusion Properties in GBM: Contrast-Enhancing versus Non-Enhancing Tumor

Authors :
Annette M. Molinaro
Joanna J. Phillips
Janine M. Lupo
Stojan Maleschlijski
Susan M. Chang
Ritu Roy
Adam Autry
Sarah J. Nelson
Soonmee Cha
Source :
Translational oncology, vol 10, iss 6, Translational Oncology, Vol 10, Iss 6, Pp 895-903 (2017), Translational Oncology
Publication Year :
2017
Publisher :
eScholarship, University of California, 2017.

Abstract

BACKGROUND: Although the contrast-enhancing (CE) lesion on T 1 -weighted MR images is widely used as a surrogate for glioblastoma (GBM), there are also non-enhancing regions of infiltrative tumor within the T 2 -weighted lesion, which elude radiologic detection. Because non-enhancing GBM (Enh−) challenges clinical patient management as latent disease, this study sought to characterize ex vivo metabolic profiles from Enh− and CE GBM (Enh+) samples, alongside histological and in vivo MR parameters, to assist in defining criteria for estimating total tumor burden. Methods: Fifty-six patients with newly diagnosed GBM received a multi-parametric pre-surgical MR examination. Targets for obtaining image-guided tissue samples were defined based on in vivo parameters that were suspicious for tumor. The actual location from where tissue samples were obtained was recorded, and half of each sample was analyzed for histopathology while the other half was scanned using HR-MAS spectroscopy. Results: The Enh+ and Enh− tumor samples demonstrated comparable mitotic activity, but also significant heterogeneity in microvascular morphology. Ex vivo spectroscopic parameters indicated similar levels of total choline and N -acetylaspartate between these contrast-based radiographic subtypes of GBM, and characteristic differences in the levels of myo-inositol, creatine/phosphocreatine, and phosphoethanolamine. Analysis of in vivo parameters at the sample locations were consistent with histological and ex vivo metabolic data. CONCLUSIONS: The similarity between ex vivo levels of choline and NAA, and between in vivo levels of choline, NAA and nADC in Enh+ and Enh− tumor, indicate that these parameters can be used in defining non-invasive metrics of total tumor burden for patients with GBM.

Details

Database :
OpenAIRE
Journal :
Translational oncology, vol 10, iss 6, Translational Oncology, Vol 10, Iss 6, Pp 895-903 (2017), Translational Oncology
Accession number :
edsair.doi.dedup.....e136a24cf20c567dc42064d419bf6d91