English

Beyond two-stage models for lung carcinogenesis in the Mayak workers: Implications for Plutonium risk

Tissues and Organs 2015-05-29 v1 Populations and Evolution

Abstract

Mechanistic multi-stage models are used to analyze lung-cancer mortality after Plutonium exposure in the Mayak-workers cohort, with follow-up until 2008. Besides the established two-stage model with clonal expansion, models with three mutation stages as well as a model with two distinct pathways to cancer are studied. The results suggest that three-stage models offer an improved description of the data. The best-fitting models point to a mechanism where radiation increases the rate of clonal expansion. This is interpreted in terms of changes in cell-cycle control mediated by bystander signaling or repopulation following cell killing. No statistical evidence for a two-pathway model is found. To elucidate the implications of the different models for radiation risk, several exposure scenarios are studied. Models with a radiation effect at an early stage show a delayed response and a pronounced drop-off with older ages at exposure. Moreover, the dose-response relationship is strongly nonlinear for all three-stage models, revealing a marked increase above a critical dose.

Keywords

Cite

@article{arxiv.1504.07006,
  title  = {Beyond two-stage models for lung carcinogenesis in the Mayak workers: Implications for Plutonium risk},
  author = {Sascha Zöllner and Mikhail E. Sokolnikov and Markus Eidemüller},
  journal= {arXiv preprint arXiv:1504.07006},
  year   = {2015}
}
R2 v1 2026-06-22T09:23:13.635Z