Hypoxia-targeted radiotherapy dose painting for head and neck cancer using 18F-FMISO PET: A biological modeling study

Authors

  • Joe H. Chang Radiation Oncology Centre, Austin Health, Victoria, Australia; University of Melbourne, Victoria, Australia
  • Morikatsu Wada Radiation Oncology Centre, Austin Health, Victoria, Australia
  • Nigel J. Anderson Radiation Oncology Centre, Austin Health, Victoria, Australia
  • Daryl Lim Joon Radiation Oncology Centre, Austin Health, Victoria, Australia; University of Melbourne, Victoria, Australia
  • Sze Ting Lee University of Melbourne, Victoria, Australia;Centre for PET, Austin Health, Victoria, Australia; Ludwig Institute for Cancer Research, Victoria, Australia
  • Sylvia J. Gong Centre for PET, Austin Health, Victoria, Australia
  • Dishan H. Gunawardana Centre for PET, Austin Health, Victoria, Australia
  • John Sachinidis Centre for PET, Austin Health, Victoria, Australia
  • Graeme O’Keefe Centre for PET, Austin Health, Victoria, Australia
  • Hui K. Gan Ludwig Institute for Cancer Research, Victoria, Australia; Joint Austin-Ludwig Medical Oncology Unit, Austin Health, Victoria, Australia
  • Vincent Khoo Radiation Oncology Centre, Austin Health, Victoria, Australia; University of Melbourne, Victoria, Australia; Department of Clinical Oncology, Royal Marsden Hospital Trust and Institute of Cancer Research, London, UK
  • Andrew M. Scott University of Melbourne, Victoria, Australia; Centre for PET, Austin Health, Victoria, Australia; Ludwig Institute for Cancer Research, Victoria, Australia

DOI:

https://doi.org/10.3109/0284186X.2012.759273

Abstract

Background. This study investigates the use of 18F-fluoromisonidazole (FMISO) PET-guided radiotherapy dose painting for potentially overcoming the radioresistant effects of hypoxia in head and neck squamous cell carcinoma (HNSCC). Material and methods. The study cohort consisted of eight patients with HNSCC who were planned for definitive radiotherapy. Hypoxic subvolumes were automatically generated on pre-radiotherapy FMISO PET scans. Three radiotherapy plans were generated for each patient: a standard (STD) radiotherapy plan to a dose of 70 Gy, a uniform dose escalation (UDE) plan to the standard target volumes to a dose of 84 Gy, and a hypoxia dose-painted (HDP) plan with dose escalation only to the hypoxic subvolume to 84 Gy. Plans were compared based on tumor control probability (TCP), normal tissue complication probability (NTCP), and uncomplicated tumor control probability (UTCP). Results. The mean TCP increased from 73% with STD plans to 95% with the use of UDE plans (p < 0.001) and to 93% with HDP plans (p < 0.001). The mean parotid NTCP increased from 26% to 44% with the use of UDE plans (p = 0.003), and the mean mandible NTCP increased from 2% to 27% with the use of UDE plans (p = 0.001). There were no statistically significant differences between any of the NTCPs between the STD plans and HDP plans. The mean UTCP increased from 48% with STD plans to 66% with HDP plans (p = 0.016) and dropped to 37% with UDE plans (p = 0.138). Conclusion. Hypoxia-targeted radiotherapy dose painting for head and neck cancer using FMISO PET is technically feasible, increases the TCP without increasing the NTCP, and increases the UTCP. This approach is superior to uniform dose escalation.

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Published

2013-11-01

How to Cite

Chang, J. H., Wada, M., Anderson, N. J., Lim Joon, D., Ting Lee, S., Gong, S. J., … Scott, A. M. (2013). Hypoxia-targeted radiotherapy dose painting for head and neck cancer using 18F-FMISO PET: A biological modeling study. Acta Oncologica, 52(8), 1723–1729. https://doi.org/10.3109/0284186X.2012.759273