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Updated: Jan 31, 2026

Hyperpolarized 13C Metabolic Magnetic Resonance Spectroscopy and Imaging
Published on: December 30, 2016
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.
Abstract:
Vorinostat is a histone deacetylase (HDAC) inhibitor that inhibits cell proliferation and induces apoptosis in solid tumors, and is in clinical trials for the treatment of glioblastoma (GBM). The goal of this study was to assess whether hyperpolarized 13 C MRS and magnetic resonance spectroscopic imaging (MRSI) can detect HDAC inhibition in GBM models. First, we confirmed HDAC inhibition in U87 GBM cells and evaluated real-time dynamic metabolic changes using a bioreactor system with live vorinostat-treated or control cells. We found a significant 40% decrease in the 13 C MRS-detectable ratio of hyperpolarized [1-13 C]lactate to hyperpolarized [1-13 C]pyruvate, [1-13 C]Lac/Pyr, and a 37% decrease in the pseudo-rate constant, kPL , for hyperpolarized [1-13 C]lactate production, in vorinostat-treated cells compared with controls. To understand the underlying mechanism for this finding, we assessed the expression and activity of lactate dehydrogenase (LDH) (which catalyzes the pyruvate to lactate conversion), its associated cofactor nicotinamide adenine dinucleotide, the expression of monocarboxylate transporters (MCTs) MCT1 and MCT4 (which shuttle pyruvate and lactate in and out of the cell) and intracellular lactate levels. We found that the most likely explanation for our finding that hyperpolarized lactate is reduced in treated cells is a 30% reduction in intracellular lactate levels that occurs as a result of increased expression of both MCT1 and MCT4 in vorinostat-treated cells. In vivo 13 C MRSI studies of orthotopic tumors in mice also showed a significant 52% decrease in hyperpolarized [1-13 C]Lac/Pyr when comparing vorinostat-treated U87 GBM tumors with controls, and, as in the cell studies, this metabolic finding was associated with increased MCT1 and MCT4 expression in HDAC-inhibited tumors. Thus, the 13 C MRSI-detectable decrease in hyperpolarized [1-13 C]lactate production could serve as a biomarker of response to HDAC inhibitors.
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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