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MRSI-based molecular imaging of therapy response to temozolomide in preclinical glioblastoma using source analysis

  • T. Delgado-Goñi
  • , S. Ortega-Martorell
  • , M. Ciezka
  • , Ivan Olier
  • , A. P. Candiota
  • , M. Julià-Sapé
  • , F. Fernández
  • , M. Pumarola
  • , P. J. Lisboa
  • , C. Arús*
  • *Corresponding author for this work
  • Liverpool John Moores University
  • Universitat Autonoma de Barcelona
  • The Institute of Cancer Research (University of London)
  • The Royal Marsden NHS Foundation Trust

Research output: Contribution to journalArticlepeer-review

Abstract

Characterization of glioblastoma (GB) response to treatment is a key factor for improving patients' survival and prognosis. MRI and magnetic resonance spectroscopic imaging (MRSI) provide morphologic and metabolic profiles of GB but usually fail to produce unequivocal biomarkers of response. The purpose of this work is to provide proof of concept of the ability of a semi-supervised signal source extraction methodology to produce images with robust recognition of response to temozolomide (TMZ) in a preclinical GB model. A total of 38 female C57BL/6 mice were used in this study. The semi-supervised methodology extracted the required sources from a training set consisting of MRSI grids from eight GL261 GBs treated with TMZ, and six control untreated GBs. Three different sources (normal brain parenchyma, actively proliferating GB and GB responding to treatment) were extracted and used for calculating nosologic maps representing the spatial response to treatment. These results were validated with an independent test set (7 control and 17 treated cases) and correlated with histopathology. Major differences between the responder and non-responder sources were mainly related to the resonances of mobile lipids (MLs) and polyunsaturated fatty acids in MLs (0.9, 1.3 and 2.8ppm). Responding tumors showed significantly lower mitotic (3.3±2.9 versus 14.1±4.2 mitoses/field) and proliferation rates (29.8±10.3 versus 57.8±5.4%) than control untreated cases. The methodology described in this work is able to produce nosological images of response to TMZ in GL261 preclinical GBs and suitably correlates with the histopathological analysis of tumors. A similar strategy could be devised for monitoring response to treatment in patients.

Original languageEnglish
Pages (from-to)732-743
Number of pages12
JournalNMR in Biomedicine
Volume29
Issue number6
Early online date8 Apr 2016
DOIs
Publication statusPublished - 19 May 2016

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • Glioblastoma
  • Magnetic resonance spectroscopic imaging
  • Response detection
  • Source methodology
  • Temozolomide

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