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Role of Ferulic Acid in the Amelioration of Ionizing Radiation Induced Inflammation: A Murine Model
Authors:Ujjal Das  Krishnendu Manna  Mahuya Sinha  Sanjukta Datta  Dipesh Kr Das  Anindita Chakraborty  Mahua Ghosh  Krishna Das Saha  Sanjit Dey
Affiliation:1. Department of Physiology, Centre for Nanoscience and Nanotechnology and Centre with Potential for Excellence in Particular Area (CPEPA), University of Calcutta, Kolkata, West Bengal, India.; 2. Department of Chemical Technology, University of Calcutta, Kolkata, West Bengal, India.; 3. Department of Radiation Biology, UGC-DAE CSR Center Kolkata, Kolkata, West Bengal, India.; 4. Cancer Biology & Inflammatory Disorder Division, IICB, Kolkata, West Bengal, India.; ENEA, Italy,
Abstract:Ionizing radiation is responsible for oxidative stress by generating reactive oxygen species (ROS), which alters the cellular redox potential. This change activates several redox sensitive enzymes which are crucial in activating signaling pathways at molecular level and can lead to oxidative stress induced inflammation. Therefore, the present study was intended to assess the anti-inflammatory role of ferulic acid (FA), a plant flavonoid, against radiation-induced oxidative stress with a novel mechanistic viewpoint. FA was administered (50 mg/kg body wt) to Swiss albino mice for five consecutive days prior to exposing them to a single dose of 10 Gy 60Co γ-irradiation. The dose of FA was optimized from the survival experiment and 50 mg/kg body wt dose showed optimum effect. FA significantly ameliorated the radiation induced inflammatory response such as phosphorylation of IKKα/β and IκBα and consequent nuclear translocation of nuclear factor kappa B (NF-κB). FA also prevented the increase of cycloxygenase-2 (Cox-2) protein, inducible nitric oxide synthase-2 (iNOS-2) gene expression, lipid peroxidation in liver and the increase of tumor necrosis factor-alpha (TNF-α) and interleukin-6 (IL-6) in serum. It was observed that exposure to radiation results in decreased activity of superoxide dismutase (SOD), catalase (CAT) and the pool of reduced glutathione (GSH) content. However, FA treatment prior to irradiation increased the activities of the same endogenous antioxidants. Thus, pretreatment with FA offers protection against gamma radiation induced inflammation.
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