Abstract 4370863: Superoxide Regulates Sex-Dependent Upper Body Irradiation-Induced Cardiopulmonary Injury

J Jason Dierdorff (University of Iowa, Iowa City, Iowa, United States) K Kranti Mapuskar (University of Iowa, Iowa City, Iowa, United States) K Kyle Current (University of Iowa, Iowa City, Iowa, United States) C Casey Pulliam (University of Iowa, Iowa City, Iowa, United States) J Jin-Young Yoon R Robert Beardsley (Galera Therapeutics Inc, Malvern, Pennsylvania, United States) B Bryan Allen B Barry London

Abstract

Introduction: Upper body irradiation (UBI) is a clinically relevant modality for thoracic cancer treatment. Ionizing radiation (IR)-induced pathophysiological effects are directly correlated with the radiation dose, with past studies indicating distinct patterns of radiosensitivity between male and female patients. Although chronic cardiopulmonary complications constitute a dose-limiting toxicity in thoracic cancer treatments, the underlying mechanisms involving mitochondrial oxidative phosphorylation (OXPHOS) dysfunction and sex-related response heterogeneity remain understudied. Hypothesis: Sex-specific chronic differences in overall survival are mediated through mitochondrial OXPHOS impairment in cardiac and pulmonary tissues. Approach: 10-12 week-old C57BL/6J male and female mice were exposed to 10 and 12Gy UBI using an Xstrahl Small Animal Radiation Research Platform (SARRP) and followed for 9 months. Animals were treated with the superoxide dismutase (SOD) mimic, GC4761 at 10mg/kg or placebo starting the day of UBI, daily for a week following UBI, and once weekly thereafter until euthanasia. Pulmonary function using whole-body plethysmography was assessed at baseline, 3, 6, and 9 months. Overall survival was assessed using Kaplan-Meier curves. Heart weight (HW), lung weight (LW), body weight (BW), and histology were assessed at euthanasia. Cardiac and lung tissues were assessed for differences in OXPHOS activities using biochemical assays. Results: Our investigations revealed three fundamental findings: (1) Female mice treated with 10Gy UBI demonstrate increased mortality compared to their male counterparts. (2) Comprehensive pulmonary assessment via whole-body plethysmography demonstrates profound respiratory dysfunction 6 months following 12Gy UBI accompanied by profound differences in mitochondrial electron transport chain dysregulation. (3) Treatment with GC4761 significantly improves overall survival in both male (p=0.05) (n=5/group) and female (p=0.008) (n=7/group) mice following 12Gy UBI, indicating broad-spectrum radioprotective efficacy. Conclusion(s): These findings establish sex-specific UBI-induced differences in radiosensitivity and identify mitochondrial OXPHOS complexes as a mechanism underlying chronic radiation pneumonitis. The efficacy of GC4761 supports the role of oxidative stress as a critical molecular target for radiation countermeasure development, with significant translational implications for thoracic radiotherapy outcomes.

Article Details

Journal Circulation
Volume / Issue Vol. 152, Issue Suppl_3
Published November 04, 2025
ISSN 0009-7322
Publisher Lippincott Williams & Wilkins

Journal Info

Circulation

Lippincott Williams & Wilkins

ISSN: 0009-7322 Health Sciences

Authors (8)

J

Jason Dierdorff

University of Iowa, Iowa City, Iowa, United States

K

Kranti Mapuskar

University of Iowa, Iowa City, Iowa, United States

K

Kyle Current

University of Iowa, Iowa City, Iowa, United States

C

Casey Pulliam

University of Iowa, Iowa City, Iowa, United States

J

Jin-Young Yoon

R

Robert Beardsley

Galera Therapeutics Inc, Malvern, Pennsylvania, United States

B

Bryan Allen

B

Barry London