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Radiation Research|May 27, 2015
Ciprofloxacin Therapy Results in Mitigation of ATP Loss after Irradiation Combined with Wound Trauma: Preservation of Pyruvate Dehydrogenase and Inhibition of Pyruvate Dehydrogenase Kinase 1Joshua M Swift, Joan T Smith, Juliann G KiangRadiation Research|April 22, 2015
Hemorrhage trauma increases radiation-induced trabecular bone loss and marrow cell depletion in miceJoshua M Swift, Joan T Smith, Juliann G KiangMolecular and Cellular Biochemistry|December 17, 2003
NaCN-induced chemical hypoxia is associated with altered gene expressionJuliann G Kiang, Vishal G Warke, George C TsokosAdaptive Medicine|October 7, 2021
Radiation Combined Injury: DNA Damage, Apoptosis, and AutophagyJuliann G Kiang, Bradley R Garrison, Nikolai V GorbunovRadiation Research|August 28, 2009
Geldanamycin analog 17-DMAG inhibits iNOS and caspases in gamma-irradiated human T cellsJuliann G Kiang, Joan T Smith, Neil G AgravanteCell & Bioscience|April 11, 2018
Ghrelin therapy mitigates bone marrow injury and splenocytopenia by sustaining circulating G-CSF and KC increases after irradiation combined with woundJuliann G Kiang, Marsha N Anderson, Joan T SmithMolecular Pharmacology|December 15, 2007
Inhibition of inducible nitric-oxide synthase protects human T cells from hypoxia-induced apoptosisJuliann G Kiang, Sandeep Krishnan, Xinyue Lu, et al.Journal of Biomedical Optics|January 11, 2007
Lycopene is more potent than beta carotene in the neutralization of singlet oxygen: role of energy transfer probed by ultrafast Raman spectroscopyKong-Thon Tsen, Shaw-Wei D Tsen, Juliann G KiangMolecular and Cellular Biochemistry|May 8, 2014
Ciprofloxacin as a potential radio-sensitizer to tumor cells and a radio-protectant for normal cells: differential effects on γ-H2AX formation, p53 phosphorylation, Bcl-2 production, and cell deathJuliann G Kiang, Bradley R Garrison, Joan T Smith, et al.Journal of Investigative Medicine : the Official Publication of the American Federation for Clinical Research|January 30, 2002
External bioenergy increases intracellular free calcium concentration and reduces cellular response to heat stressJuliann G Kiang, Diane Marotta, Mietek Wirkus, et al.Pageof 9