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Post-Irradiation Treatment with a Superoxide Dismutase Mimic, MnTnHex-2-PyP5+, Mitigates Radiation Injury in the Lungs of Non-Human Primates after Whole-Thorax Exposure to Ionizing Radiation.

Publication ,  Journal Article
Cline, JM; Dugan, G; Bourland, JD; Perry, DL; Stitzel, JD; Weaver, AA; Jiang, C; Tovmasyan, A; Owzar, K; Spasojevic, I; Batinic-Haberle, I ...
Published in: Antioxidants (Basel)
March 7, 2018

Radiation injury to the lung is the result of acute and chronic free radical formation, and there are currently few effective means of mitigating such injury. Studies in rodents indicate that superoxide dismutase mimetics may be effective in this regard; however, studies in humans or large animals are lacking. We hypothesized that post-exposure treatment with the lipophilic mitochondrial superoxide dismutase mimetic, MnTnHex-2-PyP5+ (hexyl), would reduce radiation-induced pneumonitis and fibrosis in the lungs of nonhuman primates. Rhesus monkeys (Macaca mulatta) received 10 Gy whole thorax irradiation, 10 Gy + hexyl treatment, sham irradiation, or sham irradiation + hexyl. Hexyl was given twice daily, subcutaneously, at 0.05 mg/kg, for 2 months. Animals were monitored daily, and respiratory rates, pulse oximetry, hematology and serum chemistry panels were performed weekly. Computed tomography scans were performed at 0, 2, and 4 months after irradiation. Supportive fluid therapy, corticosteroids, analgesics, and antibiotics were given as needed. All animals were humanely euthanized 4.5 months after irradiation, and pathologic assessments were made. Multifocal, progressive lung lesions were seen at 2 and 4 months in both irradiated groups. Hexyl treatment delayed the onset of radiation-induced lung lesions, reduced elevations of respiratory rate, and reduced pathologic increases in lung weight. No adverse effects of hexyl treatment were found. These results demonstrate (1) development of a nonhuman primate model of radiation-induced lung injury, (2) a significant mitigating effect of hexyl treatment on lung pathology in this model, and (3) no evidence for toxicity of hexyl at the dose studied.

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Published In

Antioxidants (Basel)

DOI

ISSN

2076-3921

Publication Date

March 7, 2018

Volume

7

Issue

3

Location

Switzerland

Related Subject Headings

  • 3214 Pharmacology and pharmaceutical sciences
  • 3205 Medical biochemistry and metabolomics
  • 3101 Biochemistry and cell biology
 

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Cline, J. M., Dugan, G., Bourland, J. D., Perry, D. L., Stitzel, J. D., Weaver, A. A., … Vujaskovic, Z. (2018). Post-Irradiation Treatment with a Superoxide Dismutase Mimic, MnTnHex-2-PyP5+, Mitigates Radiation Injury in the Lungs of Non-Human Primates after Whole-Thorax Exposure to Ionizing Radiation. Antioxidants (Basel), 7(3). https://doi.org/10.3390/antiox7030040
Cline, John Mark, Greg Dugan, John Daniel Bourland, Donna L. Perry, Joel D. Stitzel, Ashley A. Weaver, Chen Jiang, et al. “Post-Irradiation Treatment with a Superoxide Dismutase Mimic, MnTnHex-2-PyP5+, Mitigates Radiation Injury in the Lungs of Non-Human Primates after Whole-Thorax Exposure to Ionizing Radiation.Antioxidants (Basel) 7, no. 3 (March 7, 2018). https://doi.org/10.3390/antiox7030040.
Cline JM, Dugan G, Bourland JD, Perry DL, Stitzel JD, Weaver AA, Jiang C, Tovmasyan A, Owzar K, Spasojevic I, Batinic-Haberle I, Vujaskovic Z. Post-Irradiation Treatment with a Superoxide Dismutase Mimic, MnTnHex-2-PyP5+, Mitigates Radiation Injury in the Lungs of Non-Human Primates after Whole-Thorax Exposure to Ionizing Radiation. Antioxidants (Basel). 2018 Mar 7;7(3).

Published In

Antioxidants (Basel)

DOI

ISSN

2076-3921

Publication Date

March 7, 2018

Volume

7

Issue

3

Location

Switzerland

Related Subject Headings

  • 3214 Pharmacology and pharmaceutical sciences
  • 3205 Medical biochemistry and metabolomics
  • 3101 Biochemistry and cell biology