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January 22, 2026Biology of Reproduction0 citations

Irradiation with a Mixed Heavy Ion Beam Induces Ovarian Follicle Loss and Dose-Dependent Mixed Ovarian Tumor Development

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KPKathleen N. Leon ParadaGLGregory LawsonPCPolly Y. Chang

Key Points

  • This research aims to investigate the effects of heavy ion beam exposure on ovarian follicle health and tumor development in female mice.
  • Exposed female mice to simulated galactic cosmic rays using a mixed heavy ion beam of Fe, Si, and Ti ions.
  • Conducted sham-irradiation as a control.
  • Ovaries were removed 16 months post-exposure for analysis.
  • Assessed tumor prevalence and follicle health using histological techniques.
  • Observed follicle depletion and dose-dependent increase in mixed ovarian tumors with varying irradiation dosages.
  • Hyperplasia of the ovarian surface observed in 13%, 59%, and 22% of mice in the 0, 30, and 60 cGy groups, respectively.
  • Mixed heavy ion exposure reduced lipid peroxidation, fibrosis, and inflammation at the highest dose compared to the lowest.

Abstract

Abstract Over 25% of active NASA astronauts are women who will be exposed to low daily doses and dose rates of galactic cosmic rays (GCR) in space. We hypothesized that exposing mice to a preliminary simulated GCR mixed heavy ion beam composed of iron, silicon, and titanium ions induces follicle depletion and dose-dependent ovarian tumors. Female mice were exposed to 10, or 20 cGy each of Fe, Si, and Ti ions or sham-irradiation in quick succession within 15 minutes for total doses of 0, 30, or 60 cGy of the three beams. 16 months later, their ovaries were removed. Hyperplasia of the ovarian surface epithelium (OSE) was noted in 13%, 59%, and 22% of the 0, 30, and 60 cGy irradiated mice, respectively. The prevalence of mixed ovarian tumors was 0, 6, and 89%, respectively, in the 0, 30, and 60 cGy groups. Low numbers of Ki67 positive OSE and tumor cells supported a benign tumor phenotype. In a separate study, Si ion irradiation alone at 32 cGy did not induce ovarian tumors in mice; however, the mixed heavy ions at all doses and Si ion irradiation alone reduced the total number of healthy ovarian follicles. Mixed heavy ion exposure reduced lipid peroxidation, fibrosis, inflammation, and lipofuscin accumulation at 60 cGy compared to 0cGy, but elevated inflammation and lipofuscin accumulation at 30 cGy compared to 60 cGy. Preliminary simulated GCR exposure causes ovarian follicle death and tumorigenesis. This study provides insight into space-radiation induced ovarian damage and cancer risk in females.

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Cite This Study

Parada et al. (2026) studied this question.

synapsesocial.com/papers/6971bd4c642b1836717e1ed9https://doi.org/10.1093/biolre/ioag019
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