HDAC inhibition in glioblastoma monitored by hyperpolarized 13 C MRSI

Marina Radoul1, Chloé Najac1, Pavithra Viswanath1

  • 1Department of Radiology and Biomedical Imaging, University of California San Francisco, San Francisco, CA, USA.

NMR in Biomedicine
|December 19, 2018
PubMed

Insights

Hyperpolarized 13 C MRSI can detect histone deacetylase (HDAC) inhibition in glioblastoma (GBM) models. A decrease in hyperpolarized lactate production indicates a positive response to HDAC inhibitors like vorinostat.

Area of Science:

  • Oncology
  • Biochemistry
  • Medical Imaging

Background:

  • Vorinostat is a histone deacetylase (HDAC) inhibitor investigated for glioblastoma (GBM) treatment.
  • Histone deacetylase inhibition affects cell proliferation and apoptosis in solid tumors.
  • Developing non-invasive biomarkers for treatment response is crucial for GBM management.

Purpose of the Study:

  • To evaluate hyperpolarized 13 C Magnetic Resonance Spectroscopy (MRS) and Magnetic Resonance Spectroscopic Imaging (MRSI) for detecting HDAC inhibition in GBM.
  • To correlate metabolic changes detected by MRSI with molecular markers of HDAC inhibition.

Main Methods:

  • Utilized U87 GBM cells in a bioreactor system with and without vorinostat.
  • Assessed real-time metabolic changes using hyperpolarized 13 C MRS.
  • Performed in vivo 13 C MRSI studies on orthotopic U87 GBM tumors in mice.
  • Analyzed expression of lactate dehydrogenase (LDH) and monocarboxylate transporters (MCTs).

Main Results:

  • Vorinostat treatment significantly decreased the ratio of hyperpolarized [1-13 C]lactate to [1-13 C]pyruvate ([1-13 C]Lac/Pyr) by 40% in cell studies and 52% in vivo.
  • A reduction in intracellular lactate levels, linked to increased MCT1 and MCT4 expression, explained the decreased lactate production.
  • These metabolic changes correlated with increased MCT1 and MCT4 expression in HDAC-inhibited GBM models.

Conclusions:

  • Hyperpolarized 13 C MRSI can detect metabolic alterations indicative of HDAC inhibition in GBM.
  • The decrease in hyperpolarized lactate production serves as a potential non-invasive biomarker for response to HDAC inhibitors.
  • This imaging technique may aid in monitoring treatment efficacy in GBM patients.

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