Joshua S. Alwood
Oak Ridge National Laboratory
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Publication
Featured researches published by Joshua S. Alwood.
American Journal of Physiology-lung Cellular and Molecular Physiology | 2015
Melpo Christofidou-Solomidou; Ralph A. Pietrofesa; Evguenia Arguiri; Kelly S. Schweitzer; Evgeny Berdyshev; Maureen McCarthy; Astrid Corbitt; Joshua S. Alwood; Yongjia Yu; Ruth K. Globus; Charalambos Solomides; Robert L. Ullrich; Irina Petrache
Despite considerable progress in identifying health risks to crewmembers related to exposure to galactic/cosmic rays and solar particle events (SPE) during space travel, its long-term effects on the pulmonary system are unknown. We used a murine risk projection model to investigate the impact of exposure to space-relevant radiation (SR) on the lung. C3H mice were exposed to (137)Cs gamma rays, protons (acute, low-dose exposure mimicking the 1972 SPE), 600 MeV/u (56)Fe ions, or 350 MeV/u (28)Si ions at the NASA Space Radiation Laboratory at Brookhaven National Laboratory. Animals were irradiated at the age of 2.5 mo and evaluated 23.5 mo postirradiation, at 26 mo of age. Compared with age-matched nonirradiated mice, SR exposures led to significant air space enlargement and dose-dependent decreased systemic oxygenation levels. These were associated with late mild lung inflammation and prominent cellular injury, with significant oxidative stress and apoptosis (caspase-3 activation) in the lung parenchyma. SR, especially high-energy (56)Fe or (28)Si ions markedly decreased sphingosine-1-phosphate levels and Akt- and p38 MAPK phosphorylation, depleted anti-senescence sirtuin-1 and increased biochemical markers of autophagy. Exposure to SR caused dose-dependent, pronounced late lung pathological sequelae consistent with alveolar simplification and cellular signaling of increased injury and decreased repair. The associated systemic hypoxemia suggested that this previously uncharacterized space radiation-associated lung injury was functionally significant, indicating that further studies are needed to define the risk and to develop appropriate lung-protective countermeasures for manned deep space missions.
Archive | 2018
Ann-Sofie Schreurs; Candice Tahimic; Joshua S. Alwood
Archive | 2017
Eric Moyer; Yuli Talyansky; Ryan Scott; Joseph S. Tash; Lane Christenson; Joshua S. Alwood; April E. Ronca
Archive | 2017
Masahiro Terada; Candice Tahimic; Marianne B. Sowa; Ann-Sofie Schreurs; Yasaman Shirazi-Fard; Joshua S. Alwood; Ruth K. Globus
Archive | 2017
Aimee Johnson; Ryan Scott; April E. Ronca; Tana M. Hoban-Higgins; Charles A. Fuller; Joshua S. Alwood
Archive | 2017
Candice Tahimic; Moniece Lowe; Sonette Steczina; Samantha Torres; Masahiro Terada; Ann-Sofie Schreurs; April E. Ronca; Joshua S. Alwood; Ruth K. Globus
Archive | 2017
Masahiro Terada; Ann-Sofie Schreurs; Yasaman Shirazi-Fard; Joshua S. Alwood; Candice Tahimic; Marianne B. Sowa; Ruth K. Globus
Archive | 2017
Julia Adams; Samantha Torres; Ann-Sofie Schreurs; Joshua S. Alwood; Yasaman Shirazi-Fard; Candice Tahimic; Ruth K. Globus
Archive | 2016
Ruth K. Globus; Ann-Sofie Schreurs; Yasaman Shirazi-Fard; Masahiro Terada; Joshua S. Alwood; Bernard P. Halloran; Candice Tahimic
Archive | 2016
Nicholas J. Thomas; Catherine Y. Choi; Joshua S. Alwood