Production of hyperpolarized [1,4-13C2]malate from [1,4-13C2]fumarate is a marker of cell necrosis and treatment response in tumors

  1. Ferdia A. Gallaghera,b,c,
  2. Mikko I. Kettunena,b,
  3. De-En Hua,b,
  4. Pernille R. Jensend,
  5. René in ‘t Zandtd,
  6. Magnus Karlssond,
  7. Anna Gisselssond,
  8. Sarah K. Nelsona,b,
  9. Timothy H. Witneya,b,
  10. Sarah E. Bohndieka,b,
  11. Georg Hanssond,
  12. Torben Peitersend,
  13. Mathilde H. Lerched and
  14. Kevin M. Brindlea,b,1
  1. aCancer Research United Kingdom, Cambridge Research Institute, Li Ka Shing Centre, Robinson Way, Cambridge CB2 0RE, United Kingdom;
  2. bDepartment of Biochemistry, University of Cambridge, Tennis Court Road, Cambridge CB2 1GA, United Kingdom;
  3. cDepartment of Radiology, University of Cambridge, Addenbrooke's Hospital, Hills Road, Cambridge CB2 0QQ, United Kingdom; and
  4. dImagnia AB, Box 8225, SE-200 41 Malmö, Sweden
  1. Communicated by Robert G. Shulman, Yale University, New Haven, CT, October 8, 2009 (received for review July 1, 2009)

Abstract

Dynamic nuclear polarization of 13C-labeled cell substrates has been shown to massively increase their sensitivity to detection in NMR experiments. The sensitivity gain is sufficiently large that if these polarized molecules are injected intravenously, their spatial distribution and subsequent conversion into other cell metabolites can be imaged. We have used this method to image the conversion of fumarate to malate in a murine lymphoma tumor in vivo after i.v. injection of hyperpolarized [1,4-13C2]fumarate. In isolated lymphoma cells, the rate of labeled malate production was unaffected by coadministration of succinate, which competes with fumarate for transport into the cell. There was, however, a correlation with the percentage of cells that had lost plasma membrane integrity, suggesting that the production of labeled malate from fumarate is a sensitive marker of cellular necrosis. Twenty-four hours after treating implanted lymphoma tumors with etoposide, at which point there were significant levels of tumor cell necrosis, there was a 2.4-fold increase in hyperpolarized [1,4-13C2]malate production compared with the untreated tumors. Therefore, the formation of hyperpolarized 13C-labeled malate from [1,4-13C2]fumarate appears to be a sensitive marker of tumor cell death in vivo and could be used to detect the early response of tumors to treatment. Given that fumarate is an endogenous molecule, this technique has the potential to be used clinically.

Footnotes

  • 1To whom correspondence should be addressed. E-mail: kmb1001{at}cam.ac.uk
  • Author contributions: F.A.G., M.I.K., D.-E.H., P.R.J., R.i.t.Z., M.K., A.G., G.H., T.P., M.H.L., and K.M.B. designed research; F.A.G., M.I.K., D.-E.H., P.R.J., R.i.t.Z., M.K., A.G., S.K.N., T.H.W., S.E.B., G.H., T.P., and M.H.L. performed research; F.A.G., M.I.K., R.i.t.Z., and K.M.B. analyzed data; and F.A.G., M.I.K., and K.M.B. wrote the paper.

  • Conflict of interest statement: Grant funding was provided by GE Healthcare.

  • * Lerche M, Experimental Nuclear Magnetic Resonance Conference, March 14–19, 2008, Pacific Grove, CA.

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