Abstract
Purpose Radiation is a common mode of cancer therapy whose outcome is often limited because of normal tissue toxicity. We have shown previously that the accumulation of radiation-induced late reactive oxygen species (ROS) precedes cell death, suggesting that metabolic oxidative stress could regulate cellular radiation response. The purpose of this study was to investigate whether selenoprotein P (SEPP1), a major supplier of selenium to tissues and an antioxidant, regulates late ROS accumulation and toxicity in irradiated normal human fibroblasts (NHFs). Methods and Materials Flow cytometry analysis of cell viability, cell cycle phase distribution, and dihydroethidium oxidation, along with clonogenic assays, were used to measure oxidative stress and toxicity. Human antioxidant mechanisms array and quantitative real-time polymerase chain reaction assays were used to measure gene expression during late ROS accumulation in irradiated NHFs. Sodium selenite addition and SEPP1 overexpression were used to determine the causality of SEPP1 regulating late ROS accumulation and toxicity in irradiated NHFs. Results Irradiated NHFs showed late ROS accumulation (4.5-fold increase from control; P
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CITATION STYLE
Eckers, J. C., Kalen, A. L., Xiao, W., Sarsour, E. H., & Goswami, P. C. (2013). Selenoprotein P inhibits radiation-induced late reactive oxygen species accumulation and normal cell injury. International Journal of Radiation Oncology Biology Physics, 87(3), 619–625. https://doi.org/10.1016/j.ijrobp.2013.06.2063
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