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Hyperpolarized 13C spectroscopic imaging informs on hypoxia-inducible factor-1 and Myc activity downstream of platelet-derived growth factor receptor

  • Hagit Dafni
  • , Peder E.Z. Larson
  • , Simon Hu
  • , Hikari A.I. Yoshihara
  • , Christopher S. Ward
  • , Humsa S. Venkatesh
  • , Chunsheng Wang
  • , Xiaoliang Zhang
  • , Daniel B. Vigneron
  • , Sabrina M. Ronen
  • University of California at San Francisco

Research output: Contribution to journalArticlepeer-review

70 Scopus citations

Abstract

The recent development of hyperpolarized 13C magnetic resonance spectroscopic imaging provides a novel method for in vivo metabolic imaging with potential applications for detection of cancer and response to treatment. Chemotherapy-induced apoptosis was shown to decrease the flux of hyperpolarized 13C label from pyruvate to lactate due to depletion of NADH, the coenzyme of lactate dehydrogenase. In contrast, we show here that in PC-3MM2 tumors, inhibition of platelet-derived growth factor receptor with imatinib reduces the conversion of hyperpolarized pyruvate to lactate by lowering the expression of lactate dehydrogenase itself. This was accompanied by reduced expression of vascular endothelial growth factor and glutaminase, and is likely mediated by reduced expression of their transcriptional factors hypoxia-inducible factor-1 and c-Myc. Our results indicate that hyperpolarized 13C MRSI could potentially detect the molecular effect of various cell signaling inhibitors, thus providing a radiation-free method to predict tumor response.

Original languageEnglish
Pages (from-to)7400-7410
Number of pages11
JournalCancer Research
Volume70
Issue number19
DOIs
StatePublished - Oct 1 2010

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