Radiation Therapy Technology Advances and Mitigation of Subsequent Neoplasms in Childhood Cancer Survivors
Stokkevåg, Camilla Hanquist; Journy, Neige; Vogelius, Ivan R.; Howell, Rebecca M.; Hodgson, David; Bentzen, Søren M.
Journal article, Peer reviewed
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Date
2024Metadata
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- Department of Physics and Technology [2244]
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Original version
International Journal of Radiation Oncology, Biology, Physics. 2024, 119 (2), 681-696. 10.1016/j.ijrobp.2024.01.206Abstract
Purpose
In this Pediatric Normal Tissue Effects in the Clinic (PENTEC) vision paper, challenges and opportunities in the assessment of subsequent neoplasms (SNs) from radiation therapy (RT) are presented and discussed in the context of technology advancement.
Methods and Materials
The paper discusses the current knowledge of SN risks associated with historic, contemporary, and future RT technologies. Opportunities for research and SN mitigation strategies in pediatric patients with cancer are reviewed.
Results
Present experience with radiation carcinogenesis is from populations exposed during widely different scenarios. Knowledge gaps exist within clinical cohorts and follow-up; dose-response and volume effects; dose-rate and fractionation effects; radiation quality and proton/particle therapy; age considerations; susceptibility of specific tissues; and risks related to genetic predisposition. The biological mechanisms associated with local and patient-level risks are largely unknown.
Conclusions
Future cancer care is expected to involve several available RT technologies, necessitating evidence and strategies to assess the performance of competing treatments. It is essential to maximize the utilization of existing follow-up while planning for prospective data collection, including standardized registration of individual treatment information with linkage across patient databases.