Abstract
Background/Aim: Our understanding of cancer risk from neutron exposure is limited. We aimed to reveal the characteristics of mammary carcinomas induced by neutrons. Materials and Methods: Mammary carcinomas obtained from female Sprague-Dawley rats irradiated at 7 weeks of age with 0.97 Gy neutrons or 4 Gy γ-rays and from non-irradiated rats were classified into luminal and non-luminal subtypes by immunohistochemistry. Their mutational landscapes were determined by whole-exome sequencing. Results: Neutrons significantly raised the incidence of luminal mammary carcinomas over the non-luminal subtype. Somatic mutations were identified in cancer genes involved in several signalling pathways, including Keap1/Nrf2, Pi3k/Akt and Wnt/β-catenin. Focal copy-number losses involving cancer genes were observed mainly in carcinomas from the irradiated rats. Conclusion: Neutrons increase the incidence of luminal mammary carcinomas, probably through gene mutations similar to those found in human breast cancers, and focal copy-number losses including cancer genes that are characteristics of radiation-induced mammary carcinomas.
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MORIYAMA, H., DAINO, K., ISHIKAWA, A., IMAOKA, T., NISHIMURA, M., NISHIMURA, Y., … KAKINUMA, S. (2021). Exome of radiation-induced rat mammary carcinoma shows copy-number losses and mutations in human-relevant cancer genes. Anticancer Research, 41(1), 55–70. https://doi.org/10.21873/anticanres.14751
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